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Jian-Fang Wu
Jian-Fang Wu
在 hnu.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Gallium-Doped Li7La3Zr2O12 Garnet-Type Electrolytes with High Lithium-Ion Conductivity
JF Wu, EY Chen, Y Yu, L Liu, Y Wu, WK Pang, VK Peterson, X Guo
ACS applied materials & interfaces 9 (2), 1542-1552, 2017
2992017
Ionic conduction in composite polymer electrolytes: case of PEO: Ga-LLZO composites
Z Li, HM Huang, JK Zhu, JF Wu, H Yang, L Wei, X Guo
ACS applied materials & interfaces 11 (1), 784-791, 2018
2652018
Garnet-type fast Li-ion conductors with high ionic conductivities for all-solid-state batteries
JF Wu, WK Pang, VK Peterson, L Wei, X Guo
ACS applied materials & interfaces 9 (14), 12461-12468, 2017
2082017
Controllable synthesis, optical and photocatalytic properties of CuS nanomaterials with hierarchical structures
F Li, J Wu, Q Qin, Z Li, X Huang
Powder Technology 198 (2), 267-274, 2010
1902010
MOF-derived nanoporous multifunctional fillers enhancing the performances of polymer electrolytes for solid-state lithium batteries
JF Wu, X Guo
Journal of materials chemistry A 7 (6), 2653-2659, 2019
1682019
In Situ Formed Shields Enabling Li2CO3-Free Solid Electrolytes: A New Route to Uncover the Intrinsic Lithiophilicity of Garnet Electrolytes for Dendrite-Free Li …
JF Wu, BW Pu, D Wang, SQ Shi, N Zhao, X Guo, X Guo
ACS applied materials & interfaces 11 (1), 898-905, 2018
1592018
Nanostructured metal–organic framework (MOF)derived solid electrolytes realizing fast lithium ion transportation kinetics in solidstate batteries
JF Wu, X Guo
Small 15 (5), 1804413, 2019
1242019
Origin of the low grain boundary conductivity in lithium ion conducting perovskites: Li 3x La 0.67− x TiO 3
JF Wu, X Guo
Physical Chemistry Chemical Physics 19 (8), 5880-5887, 2017
1232017
Facile synthesis of γ-MnOOH micro/nanorods and their conversion to β-MnO2, Mn3O4
F Li, J Wu, Q Qin, Z Li, X Huang
Journal of alloys and compounds 492 (1-2), 339-346, 2010
832010
Inorganic solid electrolytes for allsolidstate sodium batteries: fundamentals and strategies for battery optimization
JF Wu, R Zhang, QF Fu, JS Zhang, XY Zhou, P Gao, CH Xu, J Liu, X Guo
Advanced Functional Materials 31 (13), 2008165, 2021
782021
Oxygen-Containing Functional Groups Regulating the Carbon/Electrolyte Interfacial Properties Toward Enhanced K+ Storage
Y Peng, Z Chen, R Zhang, W Zhou, P Gao, J Wu, H Liu, J Liu, A Hu, ...
Nano-micro letters 13, 1-15, 2021
762021
Synthesis and characterization of ZnO–Ag core–shell nanocomposites with uniform thin silver layers
F Li, Y Yuan, J Luo, Q Qin, J Wu, Z Li, X Huang
Applied surface science 256 (20), 6076-6082, 2010
652010
MicrostructureDependent K+ Storage in Porous Hard Carbon
W Li, R Zhang, Z Chen, B Fan, K Xiao, H Liu, P Gao, J Wu, C Tu, J Liu
Small 17 (21), 2100397, 2021
622021
High performance all-solid-state sodium batteries actualized by polyethylene oxide/Na2Zn2TeO6 composite solid electrolytes
JF Wu, ZY Yu, Q Wang, X Guo
Energy Storage Materials 24, 467-471, 2020
602020
New P2-Type Honeycomb-Layered Sodium-Ion Conductor: Na2Mg2TeO6
Y Li, Z Deng, J Peng, J Gu, E Chen, Y Yu, J Wu, X Li, J Luo, Y Huang, ...
ACS applied materials & interfaces 10 (18), 15760-15766, 2018
532018
Crystallization mechanisms and properties of α-cordierite glass–ceramics from K2O–MgO–Al2O3–SiO2 glasses
L Song, J Wu, Z Li, X Hao, Y Yu
Journal of Non-Crystalline Solids 419, 16-26, 2015
482015
Effect of composition on sinter-crystallization and properties of low temperature co-fired α-cordierite glass–ceramics
Z Li, J Wu, L Song, Y Huang
Journal of the European Ceramic Society 34 (15), 3981-3991, 2014
432014
4.2 V polymer all-solid-state lithium batteries enabled by high-concentration PEO solid electrolytes
Z Xiong, Z Wang, W Zhou, Q Liu, JF Wu, TH Liu, C Xu, J Liu
Energy Storage Materials 57, 171-179, 2023
402023
Sodium-ion conduction in Na2Zn2TeO6 solid electrolytes
JF Wu, Q Wang, X Guo
Journal Of Power Sources 402, 513-518, 2018
402018
Crystallization behavior and properties of K2O–CaO–Al2O3–SiO2 glass-ceramics
J Wu, Z Li, Y Huang, F Li
Ceramics International 39 (7), 7743-7750, 2013
402013
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