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Results 11-20 of 33 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2015Ammonia borane confined by nitrogen-containing carbon nanotubes: Enhanced dehydrogenation properties originating from synergetic catalysis and nanoconfinementZhang, L.; Xia, G.; Ge, Y.; Wang, C.; Guo, Z.; Li, X.; Yu, X.
2013A unique sandwich-structured C/Ge/graphene nanocomposite as an anode material for high power lithium ion batteriesLi, D.; Seng, K.H.; Shi, D.; Chen, Z.; Liu, H.K.; Guo, Z.
2013Synthesis of hollow GeO₂ nanostructures, transformation into Ge@C, and lithium storage propertiesLi, L.; Seng, K.H.; Feng, C.; Liu, H.K.; Guo, Z.
2015Hollow carbon spheres with encapsulated germanium as an anode material for lithium ion batteriesLi, D.; Feng, C.; Liu, H.K.; Guo, Z.
2017An all-integrated anode via interlinked chemical bonding between double-shelled–yolk-structured silicon and binder for lithium-ion batteriesLiu, Y.; Tai, Z.; Zhou, T.; Sencadas, V.; Zhang, J.; Zhang, L.; Konstantinov, K.; Guo, Z.; Liu, H.K.
2016A strategy for configuration of an integrated flexible sulfur cathode for high-performance lithium-sulfur batteriesWang, H.; Zhang, W.; Liu, H.; Guo, Z.
2016Ammonium aminodiboranate: a long-sought isomer of diammoniate of diborane and ammonia borane dimerChen, W.; Yu, H.; Wu, G.; He, T.; Li, Z.; Guo, Z.; Liu, H.; Huang, Z.; Chen, P.
2014Preparation and electrochemical properties of high-capacity LiFePO₄-Li₃V₂(PO₄)₃/C composite for lithium-ion batteriesGuo, Y.; Huang, Y.; Jia, D.; Wang, X.; Sharma, N.; Guo, Z.; Tang, X.
2018Boosting the potassium storage performance of alloy-based anode materials via electrolyte salt chemistryZhang, Q.; Mao, J.; Pang, W.K.; Zheng, T.; Sencadas, V.; Chen, Y.; Liu, Y.; Guo, Z.
2014Enhanced sodium-ion battery performance by structural phase transition from two-dimensional hexagonal-SnS₂ to orthorhombic-SnSZhou, T.; Pang, W.K.; Zhang, C.; Yang, J.; Chen, Z.; Liu, H.K.; Guo, Z.