錢江鋒,男,博士,武漢大學化學與分子科學學院副教授。
基本介紹
- 中文名:錢江鋒
- 學位/學歷:博士
- 職業:教師
- 專業方向:物理化學、電化學
- 任職院校:武漢大學
個人經歷,研究方向,主講課程,學術成果,
個人經歷
2003.9-2012.6武漢大學化學與分子科學學院,本碩博
2012.7-2015.12武漢大學化學與分子科學學院,講師
2013.9-2015.9美國西北太寒禁榜平洋國家實漏乎膠驗室,博士後背厚束
2016.1-至今武漢大學化學與分子科學學院,副教授,珞珈青年學者
研究方向
新型電化學儲能材料與求民龍腿技術,如鈉離子電池,去套擊敬踏鋰金屬電池等。
主講課程
本科生-物理化學實驗
研究生-電極過程動煉墓民犁力學
學術成果
目前已發表SCI論文80餘篇,其中以通訊作者或第一作者身份發表40篇,包括Nature Commun.,Angew. Chem.,Adv. Energy Mater.,Nano Lett.等,論文共被引用7800餘次,h指數為43.
代表性論文
1.Liu, M.; Zhang, J.; Guo, S.; Wang, B.; Shen, Y.; Ai, X.; Yang, H.;Qian, J.*Chemically Presodiated Hard Carbon Anode with Enhanced Initial Coulombic Efficiency for High Energy Sodium Ion Battery.ACS Appl. Mater. Interfaces2020, doi.10.1021/acsami.0c02230.
2.Guo, F.; Wu, C.; Chen, S; Ai, X. P.; Yang, H.; Zhong, F.;Qian, J.*; Flaky and Dense Lithium Deposition Enabled by a Nanoporous Copper Surface Layer on Lithium Metal Anode.ACS Mater. Lett.,2020,2, 358-366.
3.Shen, Y.;Qian, J.*;Yang, H.;Zhong, F.*;Ai, X.*; Chemically Prelithiated Hard-Carbon Anode for High Power and High Capacity Li-Ion Batteries.Small,2020, 16, e1907602.
4.Guo, F.; Wu, C.; Chen, H.; Zhong, F.; Ai, X.; Yang, H.;Qian, J.*,Dendrite-Free Lithium Deposition by Coating a Lithiophilic Heterogeneous Metal Layer on Lithium Metal Anode. Energy Storage Mater.,2020, 24, 635.
5.Shao, M.; Wang, B.; Liu, M.; Wu, C.; Ke, F.*; Ai, X.; Yang, H.;Qian, J.*,A High-Voltage and Cycle Stable Aqueous Rechargeable Na-Ion Battery Based on Na2Zn3[Fe(CN)6]2-NaTi2(PO4)3Intercalation Chemistry.ACS Appl. Energy Mater.,2019,2, 5809.
6.Shen, Y.; Zhang, J.; Pu, Y.; Wang, H.; Wang, B.;Qian, J.*; Cao, Y.; Zhong, F.*; Ai, X.*; Yang, H., Effective Chemical Prelithiation Strategy for Building a Silicon/Sulfur Li-Ion Battery.ACS Energy Lett.2019, 4, 1717.
7.Xu, L.; Li, H.; Wu, X.; Shao, M.; Liu, S.; Wang, B.; Zhao, G.; Sheng, P.; Chen, X.; Han, Y.; Cao, Y.; Ai, X.;Qian, J.*; Yang, H.Electrochem. Commun.2019,98, 78-81.
8.Shao, M.; Deng, J.; Zhong, F.*; Cao, Y.; Ai, X.;Qian, J.*; Yang, H., An all-vanadium aqueous lithium ion battery with high energy density and long lifespan.Energy Storage Mater.2019,18,92-99.
9.Qian, J.; Wu, C.; Cao, Y.; Ma, Z.; Huang, Y.*; Ai, X.; Yang, H.*, Prussian Blue Cathode Materials for Sodium‐Ion Batteries and Other Ion Batteries.Adv. Energy Mater.2018, 1702619.
10.Wan, G.; Guo, F.; Li, H.; Cao, Y.; Ai, X.;Qian, J.*; Li, Y.; Yang, H.*, Suppression of Dendritic Lithium Growth by In-situ Formation of a Chemically Stable and Mechanically Strong Solid Electrolyte Interphase.ACS Appl. Mater. Interfaces2018,10, 593.
11.Wu, C.;Qian, J.*; Yang, H.*, Recent Progress and Challenges in the Development of Prussian Blue Analogues as New Intercalation Cathode Materials.SCIENCE CHINA Chemistry2017,5, 011.
12.Qian, J.; Adams, B. D.; Zheng, J.; Xu, W.; Henderson, W. A.; Wang, J.; Bowden, M. E.; Xu, S.; Hu, J.; Zhang, J.-G.*, Anode-Free Rechargeable Lithium Metal Batteries.Adv. Funct. Mater.2016,26, 7094.
13.Wu, X.; Wu, C.; Wei, C.; Hu, L.;Qian, J.*; Cao, Y.; Ai, X.; Wang, J.; Yang, H.*, Highly Crystallized Na2CoFe(CN)6with Suppressed Lattice Defects as Superior Cathode Material for Sodium-Ion Batteries.ACS Appl. Mater. Interfaces2016,8, 5393.
14.Wu, X.; Shao, M.; Wu, C.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*, Low defect FeFe(CN)6framework as stable host material for high performance Li-ion batteries.ACS Appl. Mater. Interfaces2016,8, 23706.
15.Deng, W.;Qian, J.*; Cao,Y.; Ai, X., Yang, H.*, Graphene-Wrapped Na2C12H6O4Nanoflowers as High Performance Anodes for Sodium-Ion Batteries.Small2016, 12, 583.
16.Qian, J.; Henderson, W. A.; Xu, W.; Bhattacharya, P.; Engelhard, M.; Borodin, O.; Zhang, J.-G.*, High rate and stable cycling of lithium metal anode.Nature Commun.2015,6, 6362.
17.Qian, J.; Xu, W.; Bhattacharya, P.; Engelhard, M.; Henderson, W. A.; Zhang, Y.; Zhang, J.-G.*, Dendrite-free Li deposition using trace-amounts of water as an electrolyte additive.Nano Energy2015,15, 135.
18.Wu, X.; Luo, Y.; Sun, M.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*, Low-defect Prussian blue nanocubes as high capacity and long life cathodes for aqueous Na-ion batteries.Nano Energy2015,13, 117.
19.Wu, X.; Sun, M.; Guo, S.;Qian, J.*; Liu, Y.; Cao, Y.; Ai, X.; Yang, H.*, Vacancy Free Prussian Blue Nanocrystals with High Capacity and Superior Cyclability for Aqueous Sodium Ion Batteries.ChemNanoMat2015,1, 188-193.
20.Qian, J.*; Xiong, Y.; Cao, Y.; Ai, X.; Yang, H.*, Synergistic Na-storage Reactions in Sn4P3as A High Capacity and Cycle-stable Anode of Na-ion Batteries.Nano Lett.2014,14, 1865.
21.Wu, X.; Sun, M.; Shen,Y.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*; Energetic Aqueous Rechargeable Sodium-Ion Battery Based on Na2CuFe(CN)6–NaTi2(PO4)3Intercalation Chemistry.ChemSusChem2014, 7, 407.
22.Wu, X.; Deng, W.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*; Single-crystal FeFe(CN)6nanoparticles: a high capacity and high rate cathode for Na-ion batteries.J. Mater. Chem. A2013, 1, 10130.
23.Wu, X.; Cao, Y.; Ai, X.;Qian, J.*; Yang, H.*, A low-cost and environmentally benign aqueous rechargeable sodium-ion battery based on NaTi2(PO4)3–Na2NiFe(CN)6intercalation chemistry.Electrochem. Commun.2013, 31, 145.
24.Qian, J.; Wu, X.; Cao, Y.; Ai, X.; Yang, H.*, High Capacity and Rate Capability of Amorphous Phosphorus for Sodium Ion Batteries.Angew. Chem. Int. Ed.2013, 52, 4633.
25.Zhu, L.; Shen, Y.; Sun, M.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*, Self-doped polypyrrole with ionizable sodium sulfonate as a renewable cathode material for sodium ion batteries.Chem. Commun.2013,49, 11370.
26.Deng, W. W.; Liang, X. M.; Wu, X. Y.;Qian, J. F.*; Cao, Y. L.; Ai, X. P.; Feng, J. W.; Yang, H. X.*, A low cost, all-organic Na-ion Battery Based on Polymeric Cathode and Anode.Scientific Reports2013,3, 2671.
27.Qian, J. F.; Zhou, M.; Cao, Y. L.; Ai, X. P.; Yang, H. X.*, Nanosized Na4(FeCN)6/C Composite as a Low-Cost and High-Rate Cathode Material for Sodium-Ion Batteries.Adv. Energy Mater.2012,2, 410.
28.Qian, J. F.; Qiao, D.; Ai, X. P.; Cao, Y. L.; Yang, H. X.*, Reversible 3-Li storage reactions of amorphous phosphorus as high capacity and cycling-stable anodes for Li-ion batteries.Chem. Commun.2012,48, 8931.
29.Qian, J. F.; Chen, Y.; Wu, L.; Cao, Y. L.; Ai, X. P.; Yang, H. X.*, High capacity Na-storage and superior cyclability of nanocomposite Sb/C anode for Na-ion batteries.Chem. Commun.2012,48, 7070.
項目
國家自然科學基金面上項目(21773177)
國家自然科學基金青年項目(21303125)
教育部博士點專項科研基金(20130141120007)
湖北省自然科學基金面上項目(2017CFB614)
武漢大學自主科研資助項目(2042018kf0019)
5.Shao, M.; Wang, B.; Liu, M.; Wu, C.; Ke, F.*; Ai, X.; Yang, H.;Qian, J.*,A High-Voltage and Cycle Stable Aqueous Rechargeable Na-Ion Battery Based on Na2Zn3[Fe(CN)6]2-NaTi2(PO4)3Intercalation Chemistry.ACS Appl. Energy Mater.,2019,2, 5809.
6.Shen, Y.; Zhang, J.; Pu, Y.; Wang, H.; Wang, B.;Qian, J.*; Cao, Y.; Zhong, F.*; Ai, X.*; Yang, H., Effective Chemical Prelithiation Strategy for Building a Silicon/Sulfur Li-Ion Battery.ACS Energy Lett.2019, 4, 1717.
7.Xu, L.; Li, H.; Wu, X.; Shao, M.; Liu, S.; Wang, B.; Zhao, G.; Sheng, P.; Chen, X.; Han, Y.; Cao, Y.; Ai, X.;Qian, J.*; Yang, H.Electrochem. Commun.2019,98, 78-81.
8.Shao, M.; Deng, J.; Zhong, F.*; Cao, Y.; Ai, X.;Qian, J.*; Yang, H., An all-vanadium aqueous lithium ion battery with high energy density and long lifespan.Energy Storage Mater.2019,18,92-99.
9.Qian, J.; Wu, C.; Cao, Y.; Ma, Z.; Huang, Y.*; Ai, X.; Yang, H.*, Prussian Blue Cathode Materials for Sodium‐Ion Batteries and Other Ion Batteries.Adv. Energy Mater.2018, 1702619.
10.Wan, G.; Guo, F.; Li, H.; Cao, Y.; Ai, X.;Qian, J.*; Li, Y.; Yang, H.*, Suppression of Dendritic Lithium Growth by In-situ Formation of a Chemically Stable and Mechanically Strong Solid Electrolyte Interphase.ACS Appl. Mater. Interfaces2018,10, 593.
11.Wu, C.;Qian, J.*; Yang, H.*, Recent Progress and Challenges in the Development of Prussian Blue Analogues as New Intercalation Cathode Materials.SCIENCE CHINA Chemistry2017,5, 011.
12.Qian, J.; Adams, B. D.; Zheng, J.; Xu, W.; Henderson, W. A.; Wang, J.; Bowden, M. E.; Xu, S.; Hu, J.; Zhang, J.-G.*, Anode-Free Rechargeable Lithium Metal Batteries.Adv. Funct. Mater.2016,26, 7094.
13.Wu, X.; Wu, C.; Wei, C.; Hu, L.;Qian, J.*; Cao, Y.; Ai, X.; Wang, J.; Yang, H.*, Highly Crystallized Na2CoFe(CN)6with Suppressed Lattice Defects as Superior Cathode Material for Sodium-Ion Batteries.ACS Appl. Mater. Interfaces2016,8, 5393.
14.Wu, X.; Shao, M.; Wu, C.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*, Low defect FeFe(CN)6framework as stable host material for high performance Li-ion batteries.ACS Appl. Mater. Interfaces2016,8, 23706.
15.Deng, W.;Qian, J.*; Cao,Y.; Ai, X., Yang, H.*, Graphene-Wrapped Na2C12H6O4Nanoflowers as High Performance Anodes for Sodium-Ion Batteries.Small2016, 12, 583.
16.Qian, J.; Henderson, W. A.; Xu, W.; Bhattacharya, P.; Engelhard, M.; Borodin, O.; Zhang, J.-G.*, High rate and stable cycling of lithium metal anode.Nature Commun.2015,6, 6362.
17.Qian, J.; Xu, W.; Bhattacharya, P.; Engelhard, M.; Henderson, W. A.; Zhang, Y.; Zhang, J.-G.*, Dendrite-free Li deposition using trace-amounts of water as an electrolyte additive.Nano Energy2015,15, 135.
18.Wu, X.; Luo, Y.; Sun, M.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*, Low-defect Prussian blue nanocubes as high capacity and long life cathodes for aqueous Na-ion batteries.Nano Energy2015,13, 117.
19.Wu, X.; Sun, M.; Guo, S.;Qian, J.*; Liu, Y.; Cao, Y.; Ai, X.; Yang, H.*, Vacancy Free Prussian Blue Nanocrystals with High Capacity and Superior Cyclability for Aqueous Sodium Ion Batteries.ChemNanoMat2015,1, 188-193.
20.Qian, J.*; Xiong, Y.; Cao, Y.; Ai, X.; Yang, H.*, Synergistic Na-storage Reactions in Sn4P3as A High Capacity and Cycle-stable Anode of Na-ion Batteries.Nano Lett.2014,14, 1865.
21.Wu, X.; Sun, M.; Shen,Y.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*; Energetic Aqueous Rechargeable Sodium-Ion Battery Based on Na2CuFe(CN)6–NaTi2(PO4)3Intercalation Chemistry.ChemSusChem2014, 7, 407.
22.Wu, X.; Deng, W.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*; Single-crystal FeFe(CN)6nanoparticles: a high capacity and high rate cathode for Na-ion batteries.J. Mater. Chem. A2013, 1, 10130.
23.Wu, X.; Cao, Y.; Ai, X.;Qian, J.*; Yang, H.*, A low-cost and environmentally benign aqueous rechargeable sodium-ion battery based on NaTi2(PO4)3–Na2NiFe(CN)6intercalation chemistry.Electrochem. Commun.2013, 31, 145.
24.Qian, J.; Wu, X.; Cao, Y.; Ai, X.; Yang, H.*, High Capacity and Rate Capability of Amorphous Phosphorus for Sodium Ion Batteries.Angew. Chem. Int. Ed.2013, 52, 4633.
25.Zhu, L.; Shen, Y.; Sun, M.;Qian, J.*; Cao, Y.; Ai, X.; Yang, H.*, Self-doped polypyrrole with ionizable sodium sulfonate as a renewable cathode material for sodium ion batteries.Chem. Commun.2013,49, 11370.
26.Deng, W. W.; Liang, X. M.; Wu, X. Y.;Qian, J. F.*; Cao, Y. L.; Ai, X. P.; Feng, J. W.; Yang, H. X.*, A low cost, all-organic Na-ion Battery Based on Polymeric Cathode and Anode.Scientific Reports2013,3, 2671.
27.Qian, J. F.; Zhou, M.; Cao, Y. L.; Ai, X. P.; Yang, H. X.*, Nanosized Na4(FeCN)6/C Composite as a Low-Cost and High-Rate Cathode Material for Sodium-Ion Batteries.Adv. Energy Mater.2012,2, 410.
28.Qian, J. F.; Qiao, D.; Ai, X. P.; Cao, Y. L.; Yang, H. X.*, Reversible 3-Li storage reactions of amorphous phosphorus as high capacity and cycling-stable anodes for Li-ion batteries.Chem. Commun.2012,48, 8931.
29.Qian, J. F.; Chen, Y.; Wu, L.; Cao, Y. L.; Ai, X. P.; Yang, H. X.*, High capacity Na-storage and superior cyclability of nanocomposite Sb/C anode for Na-ion batteries.Chem. Commun.2012,48, 7070.
項目
國家自然科學基金面上項目(21773177)
國家自然科學基金青年項目(21303125)
教育部博士點專項科研基金(20130141120007)
湖北省自然科學基金面上項目(2017CFB614)
武漢大學自主科研資助項目(2042018kf0019)

