2025 Q4 -tulosraportti
22 päivää sittenTarjoustasot
TSX Venture Exchange
Määrä
Osto
264 000
Myynti
Määrä
1 682 000
Viimeisimmät kaupat
| Aika | Hinta | Määrä | Ostaja | Myyjä |
|---|---|---|---|---|
| - | - | - | - |
Ylin
0,17VWAP
Alin
0,16VaihtoMäärä
0,2 1 374 325
VWAP
Ylin
0,17Alin
0,16VaihtoMäärä
0,2 1 374 325
Välittäjätilasto
Dataa ei löytynyt
Yhtiötapahtumat
| Seuraava tapahtuma | |
|---|---|
| 2026 Q1 -tulosraportti | 22.1. |
| Menneet tapahtumat | ||
|---|---|---|
| 2025 Q4 -tulosraportti | 18.12.2025 | |
| 2025 Q3 -tulosraportti | 30.7.2025 | |
| 2025 Q2 -tulosraportti | 28.4.2025 | |
| 2025 Q1 -tulosraportti | 29.1.2025 | |
| 2024 Q4 -tulosraportti | 9.12.2024 |
Datan lähde: FactSet
Asiakkaat katsoivat myös
Shareville
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Kirjaudu
- 2 päivää sitten2 päivää sittenAny catalyst or news coming in near future from Scandium?
- 2 päivää sitten2 päivää sittenSuper capacitors: high capacity & stability using Sc doping Conclusion: This work develops a facile co-doping strategy incorporating La and Sc into NiCo-LDHs via one-pot hydrothermal synthesis. La doping optimizes the electronic structure of NiCo-LDH, facilitating Ni3+/Ni4+ transition at higher redox potential and achieving 745.2 C g−1 specific capacity at 1 A g−1. Nevertheless, weaker Lasingle bondO interactions and hexagonal framework distortion limit cycling stability to 50 % retention after 1500 cycles. First-principles calculations reveal that La/Sc co-doping reduces bandgaps and electronic resistance, enabling efficient Ni3+/Ni4+ and Co3+/Co4+ redox processes. Crucially, robust Sc−O bonds act as stabilizing pillar enhancing structural integrity. Experimentally, La/Sc co-doping delivers comprehensive performance improvements. By controlling the appropriate amounts of La and Sc, NiCoSc0.3La0.2-LDH shows the best electrochemical performance, achieving a high specific capacitance of 744.2 C g−1 at 1 A g−1, good rate capability with 83 % capacitance retention at 10 A g−1, and a long cycling lifespan with 82 % capacitance retention after 15,000 cycles, demonstrating the synergistic effect of La and Sc. The assembled ASC achieves the highest energy density of 45.6 Wh kg−1 at a power density of 410 W kg−1, and long-term cycling stability with 100 % capacity retention after 45,000 cycles. This work not only offers a facile and effective co-doping strategy using La and Sc to achieve simultaneous improvements in the capacitance and cycling stability of LDHs, but also elucidates their synergistic effect, which can guide the rational design of co-doping and high-entropy strategies for high-performance LDH electrodes in hybrid supercapacitors. Bin Hu, Wenxuan Hu, Yaxin Chen, Jianwen Shan, Min Zuo, Ziliang Wu, Qiang Zheng, Miao Du, Synergistic doping of La and Sc in nickel-cobalt layered double hydroxides for high capacity and long lifespan supercapacitor, Journal of Energy Storage,Volume 141, Part B,2026,119365,ISSN 2352-152X, https://doi.org/10.1016/j.est.2025.119365. https://www.sciencedirect.com/science/article/pii/S2352152X25040782
- 2.1.2.1.Commercially Mature Superior Lithium Ion Battery - LCO Cathode Coated with Scandium Oxide Sc2O3 coating and Sc gradient doping synergistically enhance high-voltage performance of LiCoO2. Considering the commercial maturity of LCO materials, scalable production is therefore of significant importance for industrial applications. A 50 g batch was assembled into a 203450-type all-soft-pack battery prototype, with the positive electrode composed of either pristine LCO or LCO@Sc2O3-1.5%, and the negative electrode made of graphite, for commercial full-cell testing (Figs. 6a-c and Figure S14). At 1 C (550 mA) and room temperature, the pristine LCO cell retained only 8.6% of its initial capacity after 200 cycles, compared to 79.5% (368.42 mA h) for LCO@Sc2O3-1.5%. The coated cathode also demonstrated superior rate capability from 0.2 C to 4 C, indicating enhanced Li diffusion and cycling stability. Bicheng Yu, Ciqi Yuan, Lanqing Xu, Guiying Zhao, Yongping Zheng, Jiaxin Li, Sc2O3 coating and Sc gradient doping synergistically enhance high-voltage performance of LiCoO2, Journal of Energy Storage,Volume 146,2026,120071, ISSN 2352-152X, https://doi.org/10.1016/j.est.2025.120071 https://www.sciencedirect.com/science/article/pii/S2352152X25047851?via%3Dihub
- 19.12.202519.12.2025Scandium Canada presents its annual review Montreal, QC – TheNewswire - December 18, 2025 — Scandium Canada Ltd. (TSX-V: SCD) presents its annual review highlighting a pivotal year for the Company, marked by significant technical, industrial, strategic, and social progress, consolidating its position in the development of scandium and aluminum-scandium alloys. Highlights • Update and consolidation of resource estimates • Validation of metallurgical process and key parameters • Launch of Scandium+ division, dedicated to the development of new aluminum-scandium (Al-Sc) alloys • Presentation of Scandium Canada and its Crater Lake project to the Naskapi community of Kawawachikamach • Strategic investment by the Naskapi Nation of Kawawachikamach in Scandium Canada A pivotal year for the future "The past year has been pivotal in advancing several of Scandium Canada's initiatives. We have laid important groundwork both technically and industrially, while strengthening our community roots and our position in the aluminum-scandium alloy value chain. The combination of a world-class asset such as the TG Zone at the Crater Lake Project, North America's largest primary source of scandium, high value-added aluminum-scandium alloys, and strong strategic partnerships puts us in an enviable position to support the transition to lighter, higher-performance, and more sustainable materials. — Guy Bourassa, Chief Executive Officer, Scandium Canada Ltd. Strategic advances Major technical progress at the Crater Lake project The year was marked by decisive technical milestones, including: •The publication of a new mineral resource estimate in accordance with NI 43-101 for the TG zone of the Crater Lake project, confirming the size and potential of the deposit, which remains open in all directions; •The successful completion of a 500 kg metallurgical pilot test, representing a key advance in process validation and technical risk reduction; •Review and improvement of transportation logistics and potential location of a hydrometallurgical plant in the Schefferville area and an access road from the property, for the completion of a pre-feasibility study. These results reinforce the technical credibility of the project and support its progress toward a potential feasibility study. Establishment of the Scandium+ division Scandium Canada has established a new division dedicated to the commercialization of its exclusive and patent-pending aluminum-scandium alloys, with a focus on: •Advancing research and development on aluminum-scandium powders for additive manufacturing (3D printing). •Identifying the most promising markets in collaboration with Productique Québec and the National Research Council of Canada. •Intensifying exchanges with industrial users in strategic sectors such as aerospace, automotive, advanced manufacturing, and 3D printing. These initiatives aim to position Scandium Canada not only as a potential producer of scandium, but also as a key player in the aluminum-scandium alloy value chain. International outreach and economic missions During the fall, the Corporation also strengthened its international visibility and relations by participating in Quebec's economic mission to Asia organized by the Ministry of Natural Resources and Forestry and Investissement Québec, a strategic opportunity to promote Quebec scandium, explore new commercial partnerships, and become part of critical global supply chains. A shared vision for the development of the Crater Lake project Last June, a delegation from Scandium Canada visited the community of Kawawachikamach to present the Crater Lake project and its vision for long-term collaboration with local and Indigenous communities. This meeting provided an opportunity to strengthen dialogue, deepen mutual understanding, and continue discussions on community priorities, expectations, and the potential benefits of the project. Following these discussions, the Naskapi Nation of Kawawachikamach made a strategic investment in Scandium Canada, demonstrating a lasting relationship of trust and a shared vision for the responsible development of the Crater Lake project. Scandium Canada remains committed to working closely with communities, based on respect for the land, ongoing dialogue, and the creation of positive and sustainable long-term benefits. https://www.thenewswire.com/press-releases/1AMqFWX2m-scandium-canada-presents-its-annual-review.html
- 16.12.202516.12.2025Scandium Canada eyes 2026 Crater Lake PFS The next six months will be highly active at Scandium Canada’s (TSX-V:SCD) Crater Lake Project in Qubec, Canada, with the aim of completing a Prefeasibility Study, CEO Guy Bourassa tells Mining.com.au. “In 2026, we aim to transition to a higher level of project maturity, which should be reflected in an increase in our market capitalisation,” Bourassa tells this news service. To achieve this, the CEO says the company intends to publicise the progress of its project, among other things, by the PFS and signing strategic agreements for advancing its aluminium-scandium alloys. “Our strategy is simple and disciplined: strengthen the technical foundation, build strong collaborations, and position Crater Lake as one of the pillars of a future North American scandium supply chain,” Bourassa continues. Ahead of the PFS, Scandium Canada is progressing engineering studies amid engaging in discussions and developing industrial partnerships through Scandium+ which is a dedicated research, development, and commercialisation of innovative scandium uses. Bourassa adds that the company anticipates to potentially also receive government support dedicated to critical minerals development and required infrastructure. “Investors will be able to follow a clear progression towards the next phase of development,” Bourassa says. Scandium Canada’s mission is to solve this problem by developing a reliable and transparent North American source, enabling manufacturers to integrate scandium into their materials on a long-term basis. The company’s Crater Lake Project is considered the largest primary source of scandium in North America. Crater Lake has a resource of 20.9 million tonnes in the indicated category and 16.3 million tonnes in the inferred category. According to Straits Research, the scandium market was valued at US$591.95 million ($906.2 million) in 2024. The market is projected to reach from US$643.45 million by 2025 to US$1.254 billion by 2033, growing at a CAGR of 8.7%. https://mining.com.au/scandium-canada-eyes-2026-crater-lake-pfs/?utm_content=374367732&utm_medium=social&utm_source=linkedin&hss_channel=lcp-20373487
Yllä olevat kommentit ovat peräisin Nordnetin sosiaalisen verkoston Sharevillen käyttäjiltä, eikä niitä ole muokattu eikä Nordnet ole tarkastanut niitä etukäteen. Ne eivät tarkoita, että Nordnet tarjoaisi sijoitusneuvoja tai sijoitussuosituksia. Nordnet ei ota vastuuta kommenteista.
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2025 Q4 -tulosraportti
22 päivää sittenUutiset
Ei uutisia tällä hetkellä
Tämän sivun uutiset ja/tai sijoitussuositukset tai otteet niistä sekä niihin liittyvät linkit ovat mainitun tahon tuottamia ja toimittamia. Nordnet ei ole osallistunut materiaalin laatimiseen, eikä ole tarkistanut sen sisältöä tai tehnyt sisältöön muutoksia. Lue lisää sijoitussuosituksista.
Shareville
Liity keskusteluun SharevillessäShareville on aktiivisten yksityissijoittajien yhteisö, jossa voit seurata muiden asiakkaiden kaupankäyntiä ja omistuksia.
Kirjaudu
- 2 päivää sitten2 päivää sittenAny catalyst or news coming in near future from Scandium?
- 2 päivää sitten2 päivää sittenSuper capacitors: high capacity & stability using Sc doping Conclusion: This work develops a facile co-doping strategy incorporating La and Sc into NiCo-LDHs via one-pot hydrothermal synthesis. La doping optimizes the electronic structure of NiCo-LDH, facilitating Ni3+/Ni4+ transition at higher redox potential and achieving 745.2 C g−1 specific capacity at 1 A g−1. Nevertheless, weaker Lasingle bondO interactions and hexagonal framework distortion limit cycling stability to 50 % retention after 1500 cycles. First-principles calculations reveal that La/Sc co-doping reduces bandgaps and electronic resistance, enabling efficient Ni3+/Ni4+ and Co3+/Co4+ redox processes. Crucially, robust Sc−O bonds act as stabilizing pillar enhancing structural integrity. Experimentally, La/Sc co-doping delivers comprehensive performance improvements. By controlling the appropriate amounts of La and Sc, NiCoSc0.3La0.2-LDH shows the best electrochemical performance, achieving a high specific capacitance of 744.2 C g−1 at 1 A g−1, good rate capability with 83 % capacitance retention at 10 A g−1, and a long cycling lifespan with 82 % capacitance retention after 15,000 cycles, demonstrating the synergistic effect of La and Sc. The assembled ASC achieves the highest energy density of 45.6 Wh kg−1 at a power density of 410 W kg−1, and long-term cycling stability with 100 % capacity retention after 45,000 cycles. This work not only offers a facile and effective co-doping strategy using La and Sc to achieve simultaneous improvements in the capacitance and cycling stability of LDHs, but also elucidates their synergistic effect, which can guide the rational design of co-doping and high-entropy strategies for high-performance LDH electrodes in hybrid supercapacitors. Bin Hu, Wenxuan Hu, Yaxin Chen, Jianwen Shan, Min Zuo, Ziliang Wu, Qiang Zheng, Miao Du, Synergistic doping of La and Sc in nickel-cobalt layered double hydroxides for high capacity and long lifespan supercapacitor, Journal of Energy Storage,Volume 141, Part B,2026,119365,ISSN 2352-152X, https://doi.org/10.1016/j.est.2025.119365. https://www.sciencedirect.com/science/article/pii/S2352152X25040782
- 2.1.2.1.Commercially Mature Superior Lithium Ion Battery - LCO Cathode Coated with Scandium Oxide Sc2O3 coating and Sc gradient doping synergistically enhance high-voltage performance of LiCoO2. Considering the commercial maturity of LCO materials, scalable production is therefore of significant importance for industrial applications. A 50 g batch was assembled into a 203450-type all-soft-pack battery prototype, with the positive electrode composed of either pristine LCO or LCO@Sc2O3-1.5%, and the negative electrode made of graphite, for commercial full-cell testing (Figs. 6a-c and Figure S14). At 1 C (550 mA) and room temperature, the pristine LCO cell retained only 8.6% of its initial capacity after 200 cycles, compared to 79.5% (368.42 mA h) for LCO@Sc2O3-1.5%. The coated cathode also demonstrated superior rate capability from 0.2 C to 4 C, indicating enhanced Li diffusion and cycling stability. Bicheng Yu, Ciqi Yuan, Lanqing Xu, Guiying Zhao, Yongping Zheng, Jiaxin Li, Sc2O3 coating and Sc gradient doping synergistically enhance high-voltage performance of LiCoO2, Journal of Energy Storage,Volume 146,2026,120071, ISSN 2352-152X, https://doi.org/10.1016/j.est.2025.120071 https://www.sciencedirect.com/science/article/pii/S2352152X25047851?via%3Dihub
- 19.12.202519.12.2025Scandium Canada presents its annual review Montreal, QC – TheNewswire - December 18, 2025 — Scandium Canada Ltd. (TSX-V: SCD) presents its annual review highlighting a pivotal year for the Company, marked by significant technical, industrial, strategic, and social progress, consolidating its position in the development of scandium and aluminum-scandium alloys. Highlights • Update and consolidation of resource estimates • Validation of metallurgical process and key parameters • Launch of Scandium+ division, dedicated to the development of new aluminum-scandium (Al-Sc) alloys • Presentation of Scandium Canada and its Crater Lake project to the Naskapi community of Kawawachikamach • Strategic investment by the Naskapi Nation of Kawawachikamach in Scandium Canada A pivotal year for the future "The past year has been pivotal in advancing several of Scandium Canada's initiatives. We have laid important groundwork both technically and industrially, while strengthening our community roots and our position in the aluminum-scandium alloy value chain. The combination of a world-class asset such as the TG Zone at the Crater Lake Project, North America's largest primary source of scandium, high value-added aluminum-scandium alloys, and strong strategic partnerships puts us in an enviable position to support the transition to lighter, higher-performance, and more sustainable materials. — Guy Bourassa, Chief Executive Officer, Scandium Canada Ltd. Strategic advances Major technical progress at the Crater Lake project The year was marked by decisive technical milestones, including: •The publication of a new mineral resource estimate in accordance with NI 43-101 for the TG zone of the Crater Lake project, confirming the size and potential of the deposit, which remains open in all directions; •The successful completion of a 500 kg metallurgical pilot test, representing a key advance in process validation and technical risk reduction; •Review and improvement of transportation logistics and potential location of a hydrometallurgical plant in the Schefferville area and an access road from the property, for the completion of a pre-feasibility study. These results reinforce the technical credibility of the project and support its progress toward a potential feasibility study. Establishment of the Scandium+ division Scandium Canada has established a new division dedicated to the commercialization of its exclusive and patent-pending aluminum-scandium alloys, with a focus on: •Advancing research and development on aluminum-scandium powders for additive manufacturing (3D printing). •Identifying the most promising markets in collaboration with Productique Québec and the National Research Council of Canada. •Intensifying exchanges with industrial users in strategic sectors such as aerospace, automotive, advanced manufacturing, and 3D printing. These initiatives aim to position Scandium Canada not only as a potential producer of scandium, but also as a key player in the aluminum-scandium alloy value chain. International outreach and economic missions During the fall, the Corporation also strengthened its international visibility and relations by participating in Quebec's economic mission to Asia organized by the Ministry of Natural Resources and Forestry and Investissement Québec, a strategic opportunity to promote Quebec scandium, explore new commercial partnerships, and become part of critical global supply chains. A shared vision for the development of the Crater Lake project Last June, a delegation from Scandium Canada visited the community of Kawawachikamach to present the Crater Lake project and its vision for long-term collaboration with local and Indigenous communities. This meeting provided an opportunity to strengthen dialogue, deepen mutual understanding, and continue discussions on community priorities, expectations, and the potential benefits of the project. Following these discussions, the Naskapi Nation of Kawawachikamach made a strategic investment in Scandium Canada, demonstrating a lasting relationship of trust and a shared vision for the responsible development of the Crater Lake project. Scandium Canada remains committed to working closely with communities, based on respect for the land, ongoing dialogue, and the creation of positive and sustainable long-term benefits. https://www.thenewswire.com/press-releases/1AMqFWX2m-scandium-canada-presents-its-annual-review.html
- 16.12.202516.12.2025Scandium Canada eyes 2026 Crater Lake PFS The next six months will be highly active at Scandium Canada’s (TSX-V:SCD) Crater Lake Project in Qubec, Canada, with the aim of completing a Prefeasibility Study, CEO Guy Bourassa tells Mining.com.au. “In 2026, we aim to transition to a higher level of project maturity, which should be reflected in an increase in our market capitalisation,” Bourassa tells this news service. To achieve this, the CEO says the company intends to publicise the progress of its project, among other things, by the PFS and signing strategic agreements for advancing its aluminium-scandium alloys. “Our strategy is simple and disciplined: strengthen the technical foundation, build strong collaborations, and position Crater Lake as one of the pillars of a future North American scandium supply chain,” Bourassa continues. Ahead of the PFS, Scandium Canada is progressing engineering studies amid engaging in discussions and developing industrial partnerships through Scandium+ which is a dedicated research, development, and commercialisation of innovative scandium uses. Bourassa adds that the company anticipates to potentially also receive government support dedicated to critical minerals development and required infrastructure. “Investors will be able to follow a clear progression towards the next phase of development,” Bourassa says. Scandium Canada’s mission is to solve this problem by developing a reliable and transparent North American source, enabling manufacturers to integrate scandium into their materials on a long-term basis. The company’s Crater Lake Project is considered the largest primary source of scandium in North America. Crater Lake has a resource of 20.9 million tonnes in the indicated category and 16.3 million tonnes in the inferred category. According to Straits Research, the scandium market was valued at US$591.95 million ($906.2 million) in 2024. The market is projected to reach from US$643.45 million by 2025 to US$1.254 billion by 2033, growing at a CAGR of 8.7%. https://mining.com.au/scandium-canada-eyes-2026-crater-lake-pfs/?utm_content=374367732&utm_medium=social&utm_source=linkedin&hss_channel=lcp-20373487
Yllä olevat kommentit ovat peräisin Nordnetin sosiaalisen verkoston Sharevillen käyttäjiltä, eikä niitä ole muokattu eikä Nordnet ole tarkastanut niitä etukäteen. Ne eivät tarkoita, että Nordnet tarjoaisi sijoitusneuvoja tai sijoitussuosituksia. Nordnet ei ota vastuuta kommenteista.
Tarjoustasot
TSX Venture Exchange
Määrä
Osto
264 000
Myynti
Määrä
1 682 000
Viimeisimmät kaupat
| Aika | Hinta | Määrä | Ostaja | Myyjä |
|---|---|---|---|---|
| - | - | - | - |
Ylin
0,17VWAP
Alin
0,16VaihtoMäärä
0,2 1 374 325
VWAP
Ylin
0,17Alin
0,16VaihtoMäärä
0,2 1 374 325
Välittäjätilasto
Dataa ei löytynyt
Asiakkaat katsoivat myös
Yhtiötapahtumat
| Seuraava tapahtuma | |
|---|---|
| 2026 Q1 -tulosraportti | 22.1. |
| Menneet tapahtumat | ||
|---|---|---|
| 2025 Q4 -tulosraportti | 18.12.2025 | |
| 2025 Q3 -tulosraportti | 30.7.2025 | |
| 2025 Q2 -tulosraportti | 28.4.2025 | |
| 2025 Q1 -tulosraportti | 29.1.2025 | |
| 2024 Q4 -tulosraportti | 9.12.2024 |
Datan lähde: FactSet
2025 Q4 -tulosraportti
22 päivää sittenUutiset
Ei uutisia tällä hetkellä
Tämän sivun uutiset ja/tai sijoitussuositukset tai otteet niistä sekä niihin liittyvät linkit ovat mainitun tahon tuottamia ja toimittamia. Nordnet ei ole osallistunut materiaalin laatimiseen, eikä ole tarkistanut sen sisältöä tai tehnyt sisältöön muutoksia. Lue lisää sijoitussuosituksista.
Yhtiötapahtumat
| Seuraava tapahtuma | |
|---|---|
| 2026 Q1 -tulosraportti | 22.1. |
| Menneet tapahtumat | ||
|---|---|---|
| 2025 Q4 -tulosraportti | 18.12.2025 | |
| 2025 Q3 -tulosraportti | 30.7.2025 | |
| 2025 Q2 -tulosraportti | 28.4.2025 | |
| 2025 Q1 -tulosraportti | 29.1.2025 | |
| 2024 Q4 -tulosraportti | 9.12.2024 |
Datan lähde: FactSet
Shareville
Liity keskusteluun SharevillessäShareville on aktiivisten yksityissijoittajien yhteisö, jossa voit seurata muiden asiakkaiden kaupankäyntiä ja omistuksia.
Kirjaudu
- 2 päivää sitten2 päivää sittenAny catalyst or news coming in near future from Scandium?
- 2 päivää sitten2 päivää sittenSuper capacitors: high capacity & stability using Sc doping Conclusion: This work develops a facile co-doping strategy incorporating La and Sc into NiCo-LDHs via one-pot hydrothermal synthesis. La doping optimizes the electronic structure of NiCo-LDH, facilitating Ni3+/Ni4+ transition at higher redox potential and achieving 745.2 C g−1 specific capacity at 1 A g−1. Nevertheless, weaker Lasingle bondO interactions and hexagonal framework distortion limit cycling stability to 50 % retention after 1500 cycles. First-principles calculations reveal that La/Sc co-doping reduces bandgaps and electronic resistance, enabling efficient Ni3+/Ni4+ and Co3+/Co4+ redox processes. Crucially, robust Sc−O bonds act as stabilizing pillar enhancing structural integrity. Experimentally, La/Sc co-doping delivers comprehensive performance improvements. By controlling the appropriate amounts of La and Sc, NiCoSc0.3La0.2-LDH shows the best electrochemical performance, achieving a high specific capacitance of 744.2 C g−1 at 1 A g−1, good rate capability with 83 % capacitance retention at 10 A g−1, and a long cycling lifespan with 82 % capacitance retention after 15,000 cycles, demonstrating the synergistic effect of La and Sc. The assembled ASC achieves the highest energy density of 45.6 Wh kg−1 at a power density of 410 W kg−1, and long-term cycling stability with 100 % capacity retention after 45,000 cycles. This work not only offers a facile and effective co-doping strategy using La and Sc to achieve simultaneous improvements in the capacitance and cycling stability of LDHs, but also elucidates their synergistic effect, which can guide the rational design of co-doping and high-entropy strategies for high-performance LDH electrodes in hybrid supercapacitors. Bin Hu, Wenxuan Hu, Yaxin Chen, Jianwen Shan, Min Zuo, Ziliang Wu, Qiang Zheng, Miao Du, Synergistic doping of La and Sc in nickel-cobalt layered double hydroxides for high capacity and long lifespan supercapacitor, Journal of Energy Storage,Volume 141, Part B,2026,119365,ISSN 2352-152X, https://doi.org/10.1016/j.est.2025.119365. https://www.sciencedirect.com/science/article/pii/S2352152X25040782
- 2.1.2.1.Commercially Mature Superior Lithium Ion Battery - LCO Cathode Coated with Scandium Oxide Sc2O3 coating and Sc gradient doping synergistically enhance high-voltage performance of LiCoO2. Considering the commercial maturity of LCO materials, scalable production is therefore of significant importance for industrial applications. A 50 g batch was assembled into a 203450-type all-soft-pack battery prototype, with the positive electrode composed of either pristine LCO or LCO@Sc2O3-1.5%, and the negative electrode made of graphite, for commercial full-cell testing (Figs. 6a-c and Figure S14). At 1 C (550 mA) and room temperature, the pristine LCO cell retained only 8.6% of its initial capacity after 200 cycles, compared to 79.5% (368.42 mA h) for LCO@Sc2O3-1.5%. The coated cathode also demonstrated superior rate capability from 0.2 C to 4 C, indicating enhanced Li diffusion and cycling stability. Bicheng Yu, Ciqi Yuan, Lanqing Xu, Guiying Zhao, Yongping Zheng, Jiaxin Li, Sc2O3 coating and Sc gradient doping synergistically enhance high-voltage performance of LiCoO2, Journal of Energy Storage,Volume 146,2026,120071, ISSN 2352-152X, https://doi.org/10.1016/j.est.2025.120071 https://www.sciencedirect.com/science/article/pii/S2352152X25047851?via%3Dihub
- 19.12.202519.12.2025Scandium Canada presents its annual review Montreal, QC – TheNewswire - December 18, 2025 — Scandium Canada Ltd. (TSX-V: SCD) presents its annual review highlighting a pivotal year for the Company, marked by significant technical, industrial, strategic, and social progress, consolidating its position in the development of scandium and aluminum-scandium alloys. Highlights • Update and consolidation of resource estimates • Validation of metallurgical process and key parameters • Launch of Scandium+ division, dedicated to the development of new aluminum-scandium (Al-Sc) alloys • Presentation of Scandium Canada and its Crater Lake project to the Naskapi community of Kawawachikamach • Strategic investment by the Naskapi Nation of Kawawachikamach in Scandium Canada A pivotal year for the future "The past year has been pivotal in advancing several of Scandium Canada's initiatives. We have laid important groundwork both technically and industrially, while strengthening our community roots and our position in the aluminum-scandium alloy value chain. The combination of a world-class asset such as the TG Zone at the Crater Lake Project, North America's largest primary source of scandium, high value-added aluminum-scandium alloys, and strong strategic partnerships puts us in an enviable position to support the transition to lighter, higher-performance, and more sustainable materials. — Guy Bourassa, Chief Executive Officer, Scandium Canada Ltd. Strategic advances Major technical progress at the Crater Lake project The year was marked by decisive technical milestones, including: •The publication of a new mineral resource estimate in accordance with NI 43-101 for the TG zone of the Crater Lake project, confirming the size and potential of the deposit, which remains open in all directions; •The successful completion of a 500 kg metallurgical pilot test, representing a key advance in process validation and technical risk reduction; •Review and improvement of transportation logistics and potential location of a hydrometallurgical plant in the Schefferville area and an access road from the property, for the completion of a pre-feasibility study. These results reinforce the technical credibility of the project and support its progress toward a potential feasibility study. Establishment of the Scandium+ division Scandium Canada has established a new division dedicated to the commercialization of its exclusive and patent-pending aluminum-scandium alloys, with a focus on: •Advancing research and development on aluminum-scandium powders for additive manufacturing (3D printing). •Identifying the most promising markets in collaboration with Productique Québec and the National Research Council of Canada. •Intensifying exchanges with industrial users in strategic sectors such as aerospace, automotive, advanced manufacturing, and 3D printing. These initiatives aim to position Scandium Canada not only as a potential producer of scandium, but also as a key player in the aluminum-scandium alloy value chain. International outreach and economic missions During the fall, the Corporation also strengthened its international visibility and relations by participating in Quebec's economic mission to Asia organized by the Ministry of Natural Resources and Forestry and Investissement Québec, a strategic opportunity to promote Quebec scandium, explore new commercial partnerships, and become part of critical global supply chains. A shared vision for the development of the Crater Lake project Last June, a delegation from Scandium Canada visited the community of Kawawachikamach to present the Crater Lake project and its vision for long-term collaboration with local and Indigenous communities. This meeting provided an opportunity to strengthen dialogue, deepen mutual understanding, and continue discussions on community priorities, expectations, and the potential benefits of the project. Following these discussions, the Naskapi Nation of Kawawachikamach made a strategic investment in Scandium Canada, demonstrating a lasting relationship of trust and a shared vision for the responsible development of the Crater Lake project. Scandium Canada remains committed to working closely with communities, based on respect for the land, ongoing dialogue, and the creation of positive and sustainable long-term benefits. https://www.thenewswire.com/press-releases/1AMqFWX2m-scandium-canada-presents-its-annual-review.html
- 16.12.202516.12.2025Scandium Canada eyes 2026 Crater Lake PFS The next six months will be highly active at Scandium Canada’s (TSX-V:SCD) Crater Lake Project in Qubec, Canada, with the aim of completing a Prefeasibility Study, CEO Guy Bourassa tells Mining.com.au. “In 2026, we aim to transition to a higher level of project maturity, which should be reflected in an increase in our market capitalisation,” Bourassa tells this news service. To achieve this, the CEO says the company intends to publicise the progress of its project, among other things, by the PFS and signing strategic agreements for advancing its aluminium-scandium alloys. “Our strategy is simple and disciplined: strengthen the technical foundation, build strong collaborations, and position Crater Lake as one of the pillars of a future North American scandium supply chain,” Bourassa continues. Ahead of the PFS, Scandium Canada is progressing engineering studies amid engaging in discussions and developing industrial partnerships through Scandium+ which is a dedicated research, development, and commercialisation of innovative scandium uses. Bourassa adds that the company anticipates to potentially also receive government support dedicated to critical minerals development and required infrastructure. “Investors will be able to follow a clear progression towards the next phase of development,” Bourassa says. Scandium Canada’s mission is to solve this problem by developing a reliable and transparent North American source, enabling manufacturers to integrate scandium into their materials on a long-term basis. The company’s Crater Lake Project is considered the largest primary source of scandium in North America. Crater Lake has a resource of 20.9 million tonnes in the indicated category and 16.3 million tonnes in the inferred category. According to Straits Research, the scandium market was valued at US$591.95 million ($906.2 million) in 2024. The market is projected to reach from US$643.45 million by 2025 to US$1.254 billion by 2033, growing at a CAGR of 8.7%. https://mining.com.au/scandium-canada-eyes-2026-crater-lake-pfs/?utm_content=374367732&utm_medium=social&utm_source=linkedin&hss_channel=lcp-20373487
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