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SXRMB |
Peer-Reviewed Article |
Materials |
| Zhang, Difei; Sun, Tianxiao; Jiang, Keren; Zhou, Jigang; Wang, Jian et al. (2024). Deep understanding of LiCoO2 electrode degradation for optimized recycling strategies. Materials Today Chemistry 38, 102080. 10.1016/j.mtchem.2024.102080. |
SGM, SM |
Peer-Reviewed Article |
Materials |
| Zhang, Difei; Sun, Tianxiao; Jiang, Keren; Zhou, Jigang; Wang, Jian et al. (2024). Deep understanding of LiCoO2 electrode degradation for optimized recycling strategies. Materials Today Chemistry 38, 102080. 10.1016/j.mtchem.2024.102080. |
SGM, SM |
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Materials |
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BMIT-ID |
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| Zafar, Zulakha; Zhao, Bin; Javed, Rida; Surulinathan, Arunpandiyan; Long, Xin et al. (2025). Modulating Hydrogen Exchange Capabilities by Heterogenizing Pd Nanoclusters onto Ni3C Multipods for Efficiently Driving the “Formaldehyde-Nitrate” Tandem Electrochemical System. Journal of the American Chemical Society . 10.1021/jacs.5c11608. |
HXMA, VESPERS |
Peer-Reviewed Article |
Materials |
| Zafar, Zulakha; Zhao, Bin; Javed, Rida; Surulinathan, Arunpandiyan; Long, Xin et al. (2025). Modulating Hydrogen Exchange Capabilities by Heterogenizing Pd Nanoclusters onto Ni3C Multipods for Efficiently Driving the “Formaldehyde-Nitrate” Tandem Electrochemical System. Journal of the American Chemical Society . 10.1021/jacs.5c11608. |
HXMA, VESPERS |
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Materials |
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BXDS-WLE |
Peer-Reviewed Article |
Materials |
| Yu, Svena; Bond, Toby; Rahemtulla, Al; Leontowich, Adam F. G.; Thompson, Daphne et al. (2025). In‐Situ Heating X‐Ray Diffraction of LiNi0.6Mn0.3Co0.1O2 and LiNi0.7Mn0.3O2 Made Using the All‐Dry Synthesis Process. Small Methods . 10.1002/smtd.202500632. |
BXDS-WLE |
Peer-Reviewed Article |
Materials |
| Yufei CAO; Zhu Chen; Edward H. Sargent (2024). In situ electrodeposited catalyst promoting co2 and/or co electroreduction to hydrocarbon products in acidic conditions. Patent Number: WO2024184700A1. |
SXRMB |
Patent |
Materials |
| Yuan, Yi; Hu, Yang; Gan, Yi; Dong, Zhiliang; Wang, Yijia et al. (2025). Self-sacrifice of sulfide electrolytes facilitating stable solid-state sodium–sulfur batteries. Energy and Environmental Science . 10.1039/d4ee06171c. |
HXMA, SXRMB |
Peer-Reviewed Article |
Materials |
| Yuan, Yi; Hu, Yang; Gan, Yi; Dong, Zhiliang; Wang, Yijia et al. (2025). Self-sacrifice of sulfide electrolytes facilitating stable solid-state sodium–sulfur batteries. Energy and Environmental Science . 10.1039/d4ee06171c. |
HXMA, SXRMB |
Peer-Reviewed Article |
Materials |
| Yuanjun CHEN; Pengfei OU; Edward H. Sargent (2025). Processes and systems for the electrochemical reduction of carbon monoxide and/or carbon dioxide, cathodes and catalysts used in the same. Patent Number: WO2025012703A1. |
SXRMB |
Patent |
Materials |
| Yuan, Hao; Tiedje, T.; Chen, Jingye; Wang, Hui; Aitchison, Brad et al. (2024). Growth of CdS heterojunctions on Cd0.9Zn0.1Te single crystals with H2S. Journal of Vacuum Science and Technology B 42(1) . 10.1116/6.0003265. |
SGM, SXRMB |
Peer-Reviewed Article |
Materials |
| Yuan, Hao; Tiedje, T.; Chen, Jingye; Wang, Hui; Aitchison, Brad et al. (2024). Growth of CdS heterojunctions on Cd0.9Zn0.1Te single crystals with H2S. Journal of Vacuum Science and Technology B 42(1) . 10.1116/6.0003265. |
SGM, SXRMB |
Peer-Reviewed Article |
Materials |
| Yox, Philip; Teeter, Glenn; Baker, Lucas; Whitney, Drew; Maughan, Annalise E. et al. (2025). Directing Ion Transport and Interfacial Chemistry in Pnictogen-Substituted Thio-LISICONs. ACS Applied Materials and Interfaces . 10.1021/acsami.4c22390. |
BXDS-WHE, BXDS-WLE |
Peer-Reviewed Article |
Materials |