周爱军

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副教授
硕士生导师
- 性别:男
- 毕业院校:浙江大学
- 学历:博士研究生毕业
- 学位:工学博士学位
- 在职信息:在职人员
- 所在单位:材料与能源学院
- 入职时间: 2010-04-19
- 办公地点:电子楼343
- 联系方式:017380a2fb91f1354c39bfeda91caf1f4fd3a905f13608b57dc7806a5ebdaa308d93d69ae0e4d12cd35270118b4974e9ec2f265d8bb1fcee54dd003cb11ea86b5f8b8461ee5e2a365c775d6fd760b47e6b5ef7c8edec4012fbe9a6041c5d37e5bc168e72bd9964e124347105ddbf9d77e8fda7e32df71457e25ab1df6b036a8d
- 电子邮箱:54ae194b7e569942ee765a46cf11baed27e067939d1b274b46aa720569d98e0ee3930a226d2ec922b39810775fb09e563772ffddf214c41e6350561fa06c1da156632858adce5914931810ad9dc2ee55e720e3905aee01a95cf2912131461e05ca7b836100130602856b1e315318ef1138d8d23805632d5a2a72b27a616a8d55
访问量:
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[21]
Jingze Li,
Xingquan Liu,
Aijun Zhou,
and Jianwen Li,
Si Nanowire Anode Prepared by Chemical Etching for High Energy Density Lithium-ion Battery (in Chinese).
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[22]
Jingze Li,
Aijun Zhou,
Ying Wang,
Zongling Huang,
Chengxu Mou,
Qijiu Deng,
and Haiquan Zhang,
Surface Structure and High-Rate Performance of Spinel Li4Ti5O12 Coated with N-Doped Carbon as Anode Material for Lithium-Ion Batteries
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[23]
Jingze Li,
Xinbing Zhao,
Hengguan Cui,
Xinyi Dai,
Wei Liu,
Lidong Feng,
and Aijun Zhou*,
Performance evaluation of a silicide-based thermoelectric generator for power generation
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[24]
J. Z. Li,
X. B. Zhao,
H. G. Cui,
X. Y. Dai,
W. Liu,
L. D. Feng,
and A. J. Zhou*,
Sequential Evaporation and Thermoelectric Transport Properties of Bi-Te Thin Films with Controllable Composition Journal of Electronic
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[25]
J.Z. Li,
A.J. Zhou,
Y. Wang,
J. Xu,
L.P. Wang*,
and X.Y. Dai,
Improved Electrochemical Performance of LiCoO2 Electrodes with ZnO Coating by Radio-Frequency Magnetron Sputtering
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[26]
J.Z. Li,
J. Xu,
Y. Wang,
L.D. Feng,
A.J. Zhou*,
and X.Y. Dai,
Molybdenum thin films with low resistivity and superior adhesion deposited by radio-frequency magnetron sputtering at elevated temperature
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[27]
J.Z. Li,
A.J. Zhou,
X.Y. Dai,
J. Xue,
Q.J. Deng,
J.W. Li,
and Zou W.,
Microspherical Na2Ti3O7 prepared by spray-drying method as anode material for sodium-ion battery
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[28]
J.Z. Li,
A.J. Zhou,
Z.L. Huang,
Q.J. Deng,
H.Q. Zhang,
and L.P. Wang,
Superior rate performance of Li4Ti5O12/TiO2/C/CNTs composites viamicroemulsion-assisted method as anodes for lithium ion battery.
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[29]
Jingze Li,
Jingfang Du,
Xiaohui Xu,
Lidong Feng,
Xinyi Dai,
Aijun Zhou,
and Ying Wang,
A Review of Selenization of Metal Precursors for the Deposition of CIGS Thin Film (in Chinese).
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[30]
J.Z. Li,
J.W. Li,
L.D. Feng,
X.Y. Dai,
A.J. Zhou,
and Y. Wang,
Solid-state synthesis of submicron-sized Li4Ti5O12/Li2TiO3 composites with rich grain boundaries for lithium ion batteries
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[31]
J.Z. Li,
A.J. Zhou,
H.Q. Zhang,
L.D. Feng,
X.Y. Dai,
W. Zou,
and Y. Wang,
Solid-state synthesis of graphite carbon-coated Li4Ti5O12 anode for lithium ion batteries
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[32]
J.Z. Li,
X.Q. Liu,
A.J. Zhou,
Q.J. Deng,
and H.Q. Zhang,
Porous Li2C8H4O4 coated with N-doped carbon by using CVD as an anode material for Li-ion batteries.
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[33]
Jingze Li*,
Liping Wang,
Bin Yang,
Jin Xu,
Aijun Zhou*,
and Xinyi Dai,
Superior Electrochemical Performance of LiCoO2 Electrodes Enabled by Conductive Al2O3-doped ZnO Coating via Magnetron Sputtering.
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[34]
Dongyan Xu,
Eckhard Mueller,
Pawel Ziolkowski,
Jingze Li,
Bin Yang,
Wenhua Zhang,
Qiang Fu,
and Aijun Zhou,
Enhancing the Thermoelectric Properties of the Electroplated Bi2Te3 Films by Tuning the Pulse Off-to-on Ratio.
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[35]
Jingze Li,
Aijun Zhou,
Liping Wang,
Wei Zou,
Jing Xue,
and Qijiu Deng,
The electrochemical behaviors of Li2C8H4O6 and its corresponding organic acid C8H6O6 as anodes for Li-ion batteries
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[36]
Jingze Li,
Aijun Zhou,
Mingjuan Zhao,
Qingji Wang,
Liping Wang,
Cong Fan*,
and Weishang Jia,
Extremely Accessible Potassium Nitrate (KNO3) as the Highly Efficient Electrolyte Additive in Lithium Battery.
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[37]
Jingze Li,
Aijun Zhou,
Liping Wang,
Mingjuan Zhao,
Qijiu Deng,
Cong Fan*,
and Jing Xue,
Silver Terephthalate (Ag2C8H4O4) Offering in-situ Formed Metal/Organic Nanocomposite as the Highly Efficient Organic Anode in Li-ion and Na-ion Batteries
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[38]
Jingze Li,
Aijun Zhou,
Liping Wang,
Cong Fan*,
and Jing Xue,
Silver-mediated calcium terephthalate with enhanced electronic conductivity as an organic anode for efficient Li-ion batteries
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[39]
Qiang Zhao,
Jingze Li,
Bin Yang,
Weihang Wang,
and Aijun Zhou*,
Thermal conductivity study of micrometer-thick thermoelectric films by using three-omega methods.
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[40]
Pawel Ziolkowski,
Dongyan Xu,
Chao Wang,
Qiang Zhao,
Jingze Li,
Bin Yang,
Xu Yao,
Weihang Wang,
and Aijun Zhou*,
and Eckhard Mueller, Impact of the film thickness and substrate on the thermopower measurement of thermoelectric films by the potential-Seebeck microprobe (PSM).