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Ping Nie
Ping Nie
Associate Professor, Jilin Normal University
在 nuaa.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Biomass derived carbon for energy storage devices
J Wang, P Nie, B Ding, S Dong, X Hao, H Dou, X Zhang
Journal of materials chemistry a 5 (6), 2411-2428, 2017
7162017
Biomass-derived porous carbon materials with sulfur and nitrogen dual-doping for energy storage
G Xu, J Han, B Ding, P Nie, J Pan, H Dou, H Li, X Zhang
Green chemistry 17 (3), 1668-1674, 2015
6142015
Pseudocapacitive Sodium Storage in Mesoporous Single-Crystal-like TiO2–Graphene Nanocomposite Enables High-Performance Sodium-Ion Capacitors
Z Le, F Liu, P Nie, X Li, X Liu, Z Bian, G Chen, HB Wu, Y Lu
ACS nano 11 (3), 2952-2960, 2017
5862017
Exploring metal organic frameworks for energy storage in batteries and supercapacitors
G Xu, P Nie, H Dou, B Ding, L Li, X Zhang
Materials today 20 (4), 191-209, 2017
4582017
High performance lithium–sulfur batteries: advances and challenges
G Xu, B Ding, J Pan, P Nie, L Shen, X Zhang
Journal of Materials Chemistry A 2 (32), 12662-12676, 2014
3102014
Sulfur embedded in metal organic framework-derived hierarchically porous carbon nanoplates for high performance lithium–sulfur battery
G Xu, B Ding, L Shen, P Nie, J Han, X Zhang
Journal of Materials Chemistry A 1 (14), 4490-4496, 2013
3012013
Prussian blue analogues: a new class of anode materials for lithium ion batteries
P Nie, L Shen, H Luo, B Ding, G Xu, J Wang, X Zhang
Journal of Materials Chemistry A 2 (16), 5852-5857, 2014
2812014
2D MXene/SnS2 composites as high-performance anodes for sodium ion batteries
Y Wu, P Nie, L Wu, H Dou, X Zhang
Chemical Engineering Journal 334, 932-938, 2018
2642018
Encapsulating sulfur into hierarchically ordered porous carbon as a high‐performance cathode for lithium–sulfur batteries
B Ding, C Yuan, L Shen, G Xu, P Nie, X Zhang
Chemistry–A European Journal 19 (3), 1013-1019, 2013
2542013
Pseudocapacitive behaviours of Na 2 Ti 3 O 7@ CNT coaxial nanocables for high-performance sodium-ion capacitors
S Dong, L Shen, H Li, P Nie, Y Zhu, Q Sheng, X Zhang
Journal of Materials Chemistry A 3 (42), 21277-21283, 2015
2112015
Chemically tailoring the nanostructure of graphene nanosheets to confine sulfur for high-performance lithium-sulfur batteries
B Ding, C Yuan, L Shen, G Xu, P Nie, Q Lai, X Zhang
Journal of Materials Chemistry A 1 (4), 1096-1101, 2013
2032013
Porous nitrogen‐doped carbon nanotubes derived from tubular polypyrrole for energy‐storage applications
G Xu, B Ding, P Nie, L Shen, J Wang, X Zhang
Chemistry–A European Journal 19 (37), 12306-12312, 2013
1742013
Graphene Caging Silicon Particles for High Performance Lithium-Ion Batteries
P Nie, Z Le, G Chen, D Liu, X Liu, HB Wu, P Xu, X Li, F Liu, L Chang, ...
Small, DOI: 10.1002/smll.201800635, 2018
1712018
Few-layer MXenes delaminated via high-energy mechanical milling for enhanced sodium-ion batteries performance
Y Wu, P Nie, J Wang, H Dou, X Zhang
ACS applied materials & interfaces 9 (45), 39610-39617, 2017
1702017
Nanosheets assembled layered MoS2/MXene as high performance anode materials for potassium ion batteries
J Li, B Rui, W Wei, P Nie, L Chang, Z Le, M Liu, H Wang, L Wang, ...
Journal of Power Sources 449, 227481, 2020
1692020
Hierarchically porous carbon encapsulating sulfur as a superior cathode material for high performance lithium–sulfur batteries
G Xu, B Ding, P Nie, L Shen, H Dou, X Zhang
ACS applied materials & interfaces 6 (1), 194-199, 2014
1672014
High rate capability and superior cycle stability of a flower-like Sb 2 S 3 anode for high-capacity sodium ion batteries
Y Zhu, P Nie, L Shen, S Dong, Q Sheng, H Li, H Luo, X Zhang
Nanoscale 7 (7), 3309-3315, 2015
1652015
Synthesis of NASICON-type structured NaTi 2 (PO 4) 3–graphene nanocomposite as an anode for aqueous rechargeable Na-ion batteries
G Pang, C Yuan, P Nie, B Ding, J Zhu, X Zhang
Nanoscale 6 (12), 6328-6334, 2014
1632014
Encapsulating sulfur into mesoporous TiO2 host as a high performance cathode for lithium–sulfur battery
B Ding, L Shen, G Xu, P Nie, X Zhang
Electrochimica Acta 107, 78-84, 2013
1562013
TiNb 2 O 7 nanoparticles assembled into hierarchical microspheres as high-rate capability and long-cycle-life anode materials for lithium ion batteries
H Li, L Shen, G Pang, S Fang, H Luo, K Yang, X Zhang
Nanoscale 7 (2), 619-624, 2015
1442015
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