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哈尔滨工业大学化工与化学学院研究生考研导师简介-娄帅锋

本站小编 Free考研网/2019-05-25

基本信息论文著作
个人信息
娄帅锋,男,河南平顶山人。2017年博士毕业于哈尔滨工业大学电化学工程系,主要从事电化学能源存储领域的研究,包括先进化学电源、纳米材料电化学等。硕博期间,作为骨干成员身份参与863课题、民用航天预研项目、国家自然科学基金重点、面上项目等多项国家、省部级课题的研究,以第一作者和通讯作者发表SCI论文13篇,包括Nano Energy、Energy Storage Materials、Chem. Commun.、ACS Appl. Mater. Interfaces、ACS Appl. Energy Mater.、J. Power Sources等期刊,论文被引用270余次。


工作经历
2018.08 - 至今哈尔滨工业大学 化工与化学学院 讲师
2017.10 - 至今哈尔滨工业大学材料科学与工程流动站博士后


教育经历
2012.09 - 2017.07哈尔滨工业大学化学工程与技术工学博士
2016.06 - 2016.12加拿大西安大略大学机械与材料工程系 访学博士生
2010.09 - 2012.07哈尔滨工业大学化学工程与技术工学硕士
2006.09 - 2010.07哈尔滨工程大学化学工程与工艺工学学士



荣誉与奖励
2018. 07哈尔滨工业大学第20届优秀博士学位论文
2017. 07哈尔滨工业大学校优秀博士毕业生
2015. 08第18次全国电化学大会优秀论文奖
2012. 03第1届中聚电池奖学金



论文期刊
2019年发表的SCI论文

(1) P. Fan, T. Mu, S. Lou,* X. Cheng, Y. Gao, C. Du, P. Zuo, Y. Ma, G. Yin,* Amorphous carbon-encapsulated Si nanoparticles loading on MCMB with sandwich structure for lithium ion batteries, Electrochim. Acta, 2019. 306:590-598

(2) T. Mu, P. Zuo, S. Lou,* Q. Pan, H. Zhang, C. Du, Y. Gao, X. Cheng, Y. Ma, H. Huo, G. Yin,* A three-dimensional silicon/nitrogen-doped graphitized carbon composite as high-performance anode material for lithium ion batteries, J. Alloy Compd., 2019. 777: 190-197

(3) Y. Cao , P. Zuo,* S. Lou, Z. Sun, Q. Li, H. Huo, Y. Ma, C. Du, Y. Gao,* G. Yin, A quasi-solid-state Li–S battery with high energy density, superior stability and safety, J. Mater. Chem. A, 2019, 7, 6533-6542

2018年及以前发表的SCI论文

第一作者论文

(1) S. Lou, X. Cheng, Y. Zhao, J. Gao, Q. Li, P. Zuo, C. Du, B. Wang, Y. Gao, Y. Ma, G. Yin*, X. Sun*. Superior Performance of Ordered Macroporous TiNb2O7 Anodes for Lithium Ion Batteries: Understanding from the structural and pseudocapacitive insights on achieving high rate capability. Nano Energy, 2017, 34: 15-25. (ESI高被引论文)

(2) S. Lou, X. Cheng, Y. Ma, J. Gao, Q. Li, Y. Cao, P. Zuo, Y. Gao, C. Du, G. Yin*. Pseudocapacitive Li+ intercalation in porous Ti2Nb10O29 nanospheres enables ultra-fast lithium storage. Energy Storage Mater., 2018, 11: 57-66

(3) S. Lou, Y. Ma, X. Cheng, J. Gao, Y. Gao, C. Du, P. Zuo, G. Yin*. Facile synthesis of nanostructured TiNb2O7 anode materials with superior performance for high-rate lithium ion batteries. Chem. Commun., 2015, 51(97): 17293-17296.

(4) S. Lou, X. Cheng, L. Wang, J. Gao, Y. Ma, Y. Gao, P. Zuo, C. Du, G. Yin*. High-rate capability of three-dimensionally ordered macroporous T-Nb2O5 through Li+ intercalation pseudocapacitance. J. Power Sources, 2017, 361: 80-86.

(5) S. Lou, B. Shen, P. Zuo, Geping Yin*, L. Yang, Y. Ma, X. Cheng, C. Du, Y. Gao, Unravelling the enhanced high-temperature performance of lithium-rich oxide cathode with methyl diphenylphosphinite as electrolyte additive, ChemElectroChem, 2018, 5(12):1569-1575. (Cover Paper)

(6) S. Lou, B. Shen, P. Zuo, Geping Yin*, L. Yang, Y. Ma, X. Cheng, C. Du, Y. Gao. Electrochemical performance degeneration mechanism of LiCoO2 with high state of charge during long-term charge/discharge cycling. RSC Adv., 2015, 5(99): 81235-81242.

(7) S. Lou, H. Zhang, J. Guo, Y. Ma, * C. Li, H. Huo, P. Zuo, G. Yin. A porous N-doped carbon aggregate as sulfur hosts for lithium sulfur batteries. Ionics. 2018.

(8) S. Lou, X. Cheng, Y. Ma, C. Du, Y. Gao, G. Yin*. Nb-Based Oxides as Anode Materials for Lithium Ion Batteries. Prog. Chem., 2015, 27(2/3): 297-309.

(9) X. Wu,1 S. Lou,1 X. Cheng, C. Lin, J. Gao, Y. Ma, P. Zuo, C. Du, Y. Gao, G. Yin. Unravelling the interface layer formation and gas evolution/suppression on a TiNb2O7 anode for lithium ion batteries. ACS Appl. Mater. Interfaces, 2018,10 (32): 27056–27062. (1, Contributed equally to this work.)

通讯作者论文
(10) Q. Pan, S. Lou,* P. Zuo, T. Mu, C. Du, X. Cheng, Y. Ma, Y. Gao, G. Yin*, Towards Promising Turnkey Solution for Next-Generation Lithium Ion Batteries: Scale Preparation, Fading Analysis and Enhanced Performance of Microsized Si/C Composites, ACS Appl. Energy Mater., 2018, 12: 6977-6985

(11) Z. Qian, B. Sun, L. Du, S. Lou,* C. Du, P. Zuo, Y. Ma, X. Cheng, Y. Gao, G. Yin*, Insights into the role of oxygen functional groups and defects in the rechargeable nonaqueous Li–O2 batteries, Electrochim. Acta, 2018, 292: 838-845.

非一作/通讯作者论文

(12) C. Fu, S. Lou, Y. Cao, Y. Ma, C. Du, P. Zuo, X. Cheng, W. Tang, Y. Wu, Y. Gao, H. Huo, G. Yin, Excellent room-temperature performance of lithium metal polymer battery with enhanced interfacial compatibility. Electrochim. Acta, 2018, 283: 1261-1268.

(13) T. Mu, P. Zuo, S. Lou, Q. Pan, Q. Li, C. Du, Y. Gao, X. Cheng, Y. Ma, G. Yin, A two-dimensional nitrogen-rich carbon/silicon composite as high-performance anode material for lithium ion batteries. Chem. Eng. J. 2018, 341: 37-46.

(14) J. Gao, X. Cheng, S. Lou, Y. Ma, P. Zuo, C. Du, Y. Gao, G. Yin*. Self-doping Ti1-xNb2+xO7 anode material for lithium ion battery and its electrochemical performance. J. Alloys Compd., 2017, 728: 534-540.

(15) Y. Cao, Q. Li, S. Lou, Y. Ma, C. Du, Y. Gao, G. Yin. Enhanced electrochemical performance of Li4Ti5O12 through in-situ coating 70Li2S-30P2S5 solid electrolyte for all-solid-state lithium batteries. J. Alloys Compd., 2018, 752:8-13.

(16) Q. Pan, P. Zuo, S. Lou, T. Mu, C. Du, X. Cheng, Y. Ma, Y. Gao, G. Yin *. Micro-sized spherical silicon@carbon@graphene prepared by spray drying as anode material for lithium-ion batteries. J. Alloys Compd., 2017, 723: 434-440.

(17) Q. Li, H. Zhang, S. Lou, L. Wang; Y. Qu; P. Zuo; Y. Ma, X. Cheng; C. Du, Y. Gao *, G. Yin. Pseudocapacitive Li+ intercalation in ZnO/ZnO@C composites enables high-rate lithium-ion storage and stable cyclability. Ceram. Int., 2017, 43(15): 11998-12004.

(18) W. Shi, H. Zhang, X. Zheng, S. Lou, B. Hu, G. Yin, Y. Gao. Two isomorphous coordination polymer-derived metal oxides as high-performance anodes for lithium-ion batteries, New J. Chem., 2017, 41: 6187-6194.

(19) L. Wang, Y. Ma, P. Wang, S. Lou, X. Cheng, P. Zuo, C. Du, Y. Gao, G. Yin, Interface Modifications by Tris (2, 2, 2-trifluoroethyl) Borate for Improving the High-Voltage Performance of LiNi1/3Co1/3Mn1/3O2 Cathode, J. Electrochem. Soc., 2017, 164(9): A1924-A1932.

(20) L. Yang, X. Cheng, Y. Ma, S. Lou, Y. Cui, T. Guan, G. Yin *. Changing of SEI Film and Electrochemical Properties about MCMB Electrodes during Long-Term Charge/Discharge Cycles. J. Electrochem. Soc., 2013, 160(11): A2093-A2099.

(21) L. Yang, X. Cheng, Y. Gao, Y. Ma, P. Zuo, C. Du, Y. Cui, T. Guan, S. Lou, F. Wang, W. Fei, G. Yin *. Lithium deposition on graphite anode during long-term cycles and the effect on capacity loss. RSC Adv., 2014, 4(50): 26335-26341.


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