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南开大学化学院陈军院士团队牛志强教授课题组招收博士后

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南开大学化学院陈军院士团队牛志强教授课题组招收博士后
导师简介
牛志强,南开大学化学学院研究员,博士研究生导师,入选中组部“青年千人”计划,国家优秀青年科学基金获得者,天津市杰出青年科学基金获得者,南开大学“百名青年学科带头人”;牛志强研究员2010年博士毕业于中国科学院物理研究所(导师:解思深院士),2010年-2014年在新加坡南洋理工大学材料科学与工程学院从事博士后研究(合作导师,陈晓东教授),2014年通过南开大学“人才特区”入职南开大学化学学院,加入南开大学化学学院“微纳结构与高能化学电源”团队(负责人:陈军院士)和先进能源材料化学教育部重点实验室,主要从事碳纳米材料及新能源器件的基础与应用研究。近年来,在碳纳米材料的可控组装、功能化及新型储能器件的设计组装方面取得了一系列创新性研究成果,受到国内外同行广泛关注;在Nature Communications, Chemical Society Reviews,Advanced Materials, Energy & Environmental Science,Nano Letters, Advanced Energy Materials, Advanced Functional Materials,Nano Energy, Energy Storage Materials等国际期刊发表论文70多篇,申请多项国内外发明专利,参与编写三部英文著作章节。牛志强研究员入选国际电化学能源科学院委员会委员,中国电工技术学会超级电容器与储能技术委员会委员,Nature Communications,Advanced Materials,Advanced Energy Materials,Nano Letters,Advanced Functional Materials等国际著名杂志审稿人,牛志强教授研究领域涵盖了化学、材料科学与工程、物理、能源科学等众多学科。研究兴趣包括:
1.新型微纳结构电极材料的设计制备
2.理论计算及力学模拟
3.碳纳米材料宏观体系的构筑与功能化
4.超级电容器、锂电池、锂硫电池、水系电池
5.柔性,可穿戴等新型储能器件
6.3D打印

课题组主页:http://www.niu.nankai.edu.cn/
待遇:
1.按照南开大学大学博士后岗位相关规定执行博士后A档(40万);博士后B档 (25万)。
2.享受天津市给予对博士后每人一次性5万元生活补贴。
3. 支持申请“博新计划”。40万元的博士后日常经费,20万元的博士后科学基金。
4.可根据《南开大学青年教职工周转住房管理暂行办法》相关规定向学校申请周转住房。
5.根据科研成果,课题组还将提供额外的科研奖励。
热忱欢迎来自化学、材料、能源科学、凝聚态物理等领域的优秀博士和硕士加入我们的研究队伍,表现优秀者可推荐国外知名高校交流学习。
申请方式:
1请发送邮件至邮箱zhangqc@ntu.edu.sgzqniu@nankai.edu.cn
联系电话:022-23509149
2.请发送详细的个人简历:包括学习工作经历、主要研究工作、代表性论文等。

近三年发表的文章:
(1) Wan, F.; Zhang, L.; Dai, X.; Wang, X.; Niu, Z.*; Chen, J. Aqueous rechargeable zinc/sodium vanadate batteries with enhanced performance from simultaneous insertion of dual carriers. Nature Communications, 2018,  9, 1656.
(2) Wan, F.; Zhang, Y.; Zhang, L.; Liu, D.; Wang, C.; Song, L.; Niu, Z.*; Chen, J. Reversible Oxygen Redox Chemistry in Aqueous Zinc-Ion Batteries. Angewandte Chemie International Edition, 2019. 58,7062–7067.
(3) Huang, S.; Wan, F.; Bi, S.; Zhu, J.; Niu, Z.*; Chen, J. A Self-Healing Integrated All-in-One Zinc-Ion Battery. Angewandte Chemie International Edition, 2019, 58, 4313.
(4) Wan, F.; Niu, Z.*. Design Strategies of Vanadium-based Aqueous Zinc-Ion Batteries. Angewandte Chemie International Edition, 2019. Accepted.
(5)  Yao, M.; Wang, R.; Zhao, Z.; Liu, Y.; Niu, Z.*; Chen, J. A Flexible All-in-One Lithium-Sulfur Battery. ACS Nano. 2018.
(6) Zhang, L.; Chen, X.; Wan, F.; Niu, Z.*; Wang, Y.*; Zhang, Q.*; Chen, J. Enhanced Electrochemical Kinetics and Polysulfide Traps of Indium Nitride for Highly Stable Lithium-Sulfur Batteries. ACS Nano,2018, 12, 9578.
(7) Wan, F.; Zhang, L.; Wang, X.; Bi, S.; Niu, Z.*; Chen, J. An Aqueous Rechargeable Zinc-Organic Battery with Hybrid Mechanism.  Advanced Functional Materials, 2018, 1804975.
(8) Wang, X.; Wan, F.; Zhang, L.; Zhao, Z.; Niu, Z.*; Chen, J. Large‐Area Reduced Graphene Oxide Composite Films for Flexible Asymmetric Sandwich and Microsized Supercapacitors. Advanced Functional Materials, 2018, 28, 1707247.
(9) Wang, X.; Wang, R.; Zhao, Z.; Bi, S.; Niu, Z.*; Chen, J. Controllable Engineering of Flexible Graphene-based Supercapacitors with Various Architectures. Energy Storage Materials, 2019. Accepted.
(10)  Dai, X.; Wan, F.; Zhang, L.; Cao, H.; Niu, Z.* Freestanding graphene/VO2 composite films for highly stable aqueous Zn-ion batteries with superior rate performance. Energy Storage Materials, 2018.
(11) Han, M.; Wang, X.; Chen, C.; Zou, M.; Niu, Z.*; Yang, Q.-H.; Cao, A.; Song, L.; Chen, J.; Xie, S.  All-solid-state supercapacitors with superior compressive strength and volumetric capacitance. Energy Storage Materials, 2018, 13, 119.
(12) Chen, C.; Cao, J.; Lu, Q.; Wang, X.; Song, L.; Niu, Z*.; Chen, J. Foldable All-Solid-State Supercapacitors Integrated with Photodetectors. Advanced Functional Materials .2017, 27. 1604639.
(13) Chen, C.; Cao, J.; Wang, X.; Lu, Q.; Han, M.; Wang, Q.; Li, H.; Dai, H.; Niu, Z*.; Chen, J.; Xie S, Highly stretchable integrated system for micro-supercapacitor with AC line filtering and UV detector, Nano Energy, 2017, 42, 187.
(14) Lu, Q.; Wang, X.; Cao, J.; Chen, C.; Chen, K.; Zhao, Z.; Niu, Z.*; Chen, J. Freestanding carbon fiber cloth/sulfur composites for flexible room-temperature sodium-sulfur batteries. Energy Storage Materials. 2017, 8, 77.
(15) Liu, L.; Niu, Z.*; Chen, J*. Unconventional supercapacitors from nanocarbon-based electrode materials to device configurations. Chemical Society Reviews. 2016, 45, 4340.
(16) Cao, J.; Chen, C.; Zhao, Q.; Zhang, N.; Lu, Q.; Wang, X.; Niu, Z.*; Chen, J. A Flexible Nanostructured Paper of a Reduced Graphene Oxide-Sulfur Composite for High-Performance Lithium-Sulfur Batteries with Unconventional Configurations. Advanced Materials. 2016, 28, 9629.
(17) Luan, P.; Zhang, N.; Zhou, W*.; Niu, Z.*; Zhang, Q.; Cai, L.; Zhang, X.; Yang, F.; Fan, Q.; Zhou, W.; Xiao, Z.; Gu, X.; Chen, H.; Li, K.; Xiao, S.; Wang, Y.; Liu, H.; Xie, S*. Epidermal Supercapacitor with High Performance. Advanced Functional Materials. 2016, 26, 8178.
(18) Rui, X.; Tang, Y.; Malyi, O. I.; Gusak, A.; Zhang, Y.; Niu, Z.; Tan, H. T.; Persson, C.; Chen, X.; Chen, Z*.; Yan, Q*. Ambient dissolution-recrystallization towards large-scale preparation of V2O5 nanobelts for high-energy battery applications. Nano Energy. 2016, 22, 583. 返回小木虫查看更多

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