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1.Fast-Charging and Ultrahigh-Capacity Lithium Metal Anode Enabled by Surface Alloying
Xu, TH, Gao, P, Li,
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Xu, TH, Gao, P, Li, PR, Xia, K, Han, N, Deng, J, Li, YG, Lu, J
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ADVANCED ENERGY MATERIALS[1614-6832],
Published 2020,
Volume 10,
Issue 8,
收錄情况:
WOS
SCOPUS
WOS核心合集引用: 71
2023影響因子:
24.4
发表年影響因子:
29.368
2.Promises of Main Group Metal-Based Nanostructured Materials for Electrochemical CO2 Reduction to Formate
Han, N, Ding, P, He,
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Han, N, Ding, P, He, L, Li, YY, Li, YG
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ADVANCED ENERGY MATERIALS[1614-6832],
Published 2020,
Volume 10,
Issue 11,
收錄情况:
WOS
SCOPUS
WOS核心合集引用: 531
2023影響因子:
24.4
发表年影響因子:
29.368
3.Deciphering the Reaction Mechanism of Lithium-Sulfur Batteries by In Situ/Operando Synchrotron-Based Characterization Techniques
Yan, YY, Cheng, C, Z
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Yan, YY, Cheng, C, Zhang, L, Li, YG, Lu, J
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ADVANCED ENERGY MATERIALS[1614-6832],
Published 2019,
Volume 9,
Issue 18,
收錄情况:
WOS
SCOPUS
WOS核心合集引用: 114
2023影響因子:
24.4
发表年影響因子:
25.245
4.Selective CO2 Reduction on 2D Mesoporous Bi Nanosheets
Yang, H, Han, N, Den
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Yang, H, Han, N, Deng, J, Wu, JH, Wang, Y, Hu, YP, Ding, P, Li, YF, Li, YG, Lu, J
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ADVANCED ENERGY MATERIALS[1614-6832],
Published 2018,
Volume 8,
Issue 35,
收錄情况:
WOS
SCOPUS
WOS核心合集引用: 313
2023影響因子:
24.4
发表年影響因子:
24.884
5.Chemical Immobilization and Conversion of Active Polysulfides Directly by Copper Current Collector: A New Approach to Enabling Stable Room-Temperature Li-S and Na-S Batteries
Li, PR, Ma, L, Wu, T
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Li, PR, Ma, L, Wu, TP, Ye, HL, Zhou, JH, Zhao, FP, Han, N, Wang, YY, Wu, YL, Li, YG, Lu, J
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ADVANCED ENERGY MATERIALS[1614-6832],
Published 2018,
Volume 8,
Issue 22,
收錄情况:
WOS
SCOPUS
WOS核心合集引用: 72
2023影響因子:
24.4
发表年影響因子:
24.884
6.Amorphous MoS3 Infiltrated with Carbon Nanotubes as an Advanced Anode Material of Sodium-Ion Batteries with Large Gravimetric, Areal, and Volumetric Capacities
Ye, HL, Wang, L, Den
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Ye, HL, Wang, L, Deng, S, Zeng, XQ, Nie, KQ, Duchesne, PN, Wang, B, Liu, S, Zhou, JH, Zhao, FP, Han, N, Zhang, P, Zhong, J, Sun, XH, Li, YY, Li, YG, Lu, J
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ADVANCED ENERGY MATERIALS[1614-6832],
Published 2017,
Volume 7,
Issue 5,
收錄情况:
WOS
SCOPUS
WOS核心合集引用: 284
2023影響因子:
24.4
发表年影響因子:
21.875