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朱建慧 副教授
發布時間: 2017-11-17 08:28:50   作者:本站編輯   來源: 本站原創   瀏覽次數:

朱建慧,女,湖北襄陽人,博士,副教授。2009年獲華中師范大學物理學專業理學學士學位;2014年獲華中師范大學凝聚態物理專業理學博士學位;2013年3月至2015年2月在新加坡南洋理工大學從事研究工作。2015年5月進入西南大學物理科學與技術學院工作,2015年6月通過引進人才特別評聘被評為副教授。主要從事納米材料的設計制備及其電化學儲能(超級電容器、鋰離子電池、鋰硫電池等)機理和電化學傳感器(生物分子傳感器)的研究。迄今發表SCI論文34篇,以第一作者/通訊作者身份在Nat. Commun., Energy & Environ. Sci., Small, ACS Appl. Mater. & Interfaces, Nanoscale等期刊發表SCI論文10篇,論文引用1100余次,H指數為19。

教學方面主要承擔本科生的《光電子學》和《大學物理實驗》。 

 

主持的科研項目:

?  國家自然科學基金項目(11604267),2017.01-2019.12

? 重慶市自然科學基金(cstc2016jcyjA0477),2016.08-2018.07

?  中央高?;究蒲袠I務費(XDJK2016C066),2015.09-2017.12

?  西南大學博士基金(SWU 115029),2016.01-2018.12


近期發表論文如下

1. L.P. Li, J.H. Zhu*, J. Jiang* etc. Metallic Fe nanoparticles trapped in self-adapting nanoreactors: A novel high-capacity anode for aqueous Ni-Fe batteries, Chemical Communications, 2017, 53, 12661-12664.

2.J.H. Zhu, L.P. Li, Z.H. Xiong, Y.Q. Hu, J. Jiang*, Evolution of Useless Iron Rust into Uniform α-Fe2O3 Nanospheres: A Smart Way to Make Sustainable Anodes for Hybrid Ni-Fe Cell Devices, ACS Sustainable Chemistry & Engineering, 2017, 5, 269–276.

3. J. Jiang*, L.P. Li, Y.N. Liu, S.Y. Liu, M.W. Xu, J.H. Zhu*, Uniform implantation of CNTs on total activated carbon surfaces: a smart engineering protocol for commercial supercapacitor applications, Nanotechnology, 2017, 28, 145402.

4.J. Jiang#, J.H. Zhu#, T. Yu etc, Encapsulation of sulfur with thin-layered nickel-based hydroxides for long-cyclic lithium–sulfur cells, Nature Communications, 2015, 6, 8622. (共同一作)

5.        J.H. Zhu, J. Jiang, Z.P. Sun, J.S. Luo, Z.X. Fan, X.T. Huang, H. Zhang, T. Yu, 3D Carbon/Cobalt-Nickel Mixed-Oxide Hybrid Nanostructured Arrays for Asymmetric Supercapacitors, Small, 2014, 10, 2937-2945.

6.J. Jiang#, J.H. Zhu#, W. Ai, Z.X. Fan, X.N. Shen, C.J. Zou, J.P. Liu, H. Zhang and T. Yu, Evolution of disposable bamboo chopsticks into uniform carbon fibers: a smart strategy to fabricate sustainable anodes for Li-ion batteries, Energy & Enviromental Science, 2014, 7, 2670-2679. (共同一作)

7. J.H. Zhu, J. Jiang, W. Ai, Z.X. Fan, X.T. Huang, H. Zhang and T. Yu, Encapsulation of nanoscale metal oxides into an ultra-thin Ni matrix for superior Li-ion batteries: a versatile strategy, Nanoscale, 2014, 6, 12990-13000.

8.J.H. Zhu, J. Jiang, Y.M. Feng, H. Ding, X.T. Huang, Three-dimensional Ni/SnOx/C nanocomposites network for lithium-ion battery anodes with enhanced areal capacity, ACS Applied Materials and Interfaces, 2013, 5, 2634-2640.

9.J.H. Zhu, J. Jiang, J. P. Liu, R.M. Ding, Y.Y. Li, H. Ding, Y.M. Feng, G.M. Wei, X.T. Huang, CNTs-Network Modified Ni Nanostructured Arrays for High Performance Non-enzymatic Glucose Sensors, RSC Advances, 2011, 1, 1020-1025.

10.    J.H. Zhu, J. Jiang, J. P. Liu, R.M. Ding, H. Ding, Y.M. Feng, G.M. Wei, X.T. Huang, Direct synthesis of porous NiO nanowall arrays on conductive substrates for supercapacitor application, Journal of Solid State Chemistry, 2011, 184, 578–583.

11.W. Ai, J. Jiang, J.H. Zhu, Z.X. Fan, Y.L. Wang, H. Zhang, W. Huang , T. Yu, Supramolecular Polymerization Promoted In Situ Fabrication of Nitrogen-Doped Porous Graphene Sheets as Anode Materials for Li-Ion Batteries. Adv. Energy Mater., 2015, doi: 10.1002/aenm.201500559.

12.W. Ai, Z.M. Luo, J. Jiang, J.H. Zhu, Z.Z. Du, Z.X. Fan, L.H. Xie, H. Zhang, W. Huang and T. Yu, Nitrogen and Sulfur Codoped Graphene: Multifunctional Electrode Materials for High-Performance Li-Ion Batteries and Oxygen Reduction Reaction, Advanced Materials, 2014, 26, 6186-6192.

13.J. Jiang, J.H. Zhu, Y.M. Feng, J.P. Liu and X.T. Huang, A novel evolution strategy to fabricate 3D hierarchical interconnected core-shell Ni/MnO2 hybrid for Li-ion batteries, Chemical Communications, 2012, 48, 7471-7473.

14. J. Jiang, J.P. Liu, W.W. Zhou, J.H. Zhu, X.T. Huang, X.Y. Qi, H. Zhang, T. Yu, CNT/Ni hybrid nanostructured arrays: synthesis and applications as high-performance electrode materials for pseudocapacitors, Energy & Enviromental Science, 2011, 4, 5000-5007.

15.J. Jiang, J.H. Zhu, R.M. Ding, Y.Y. Li, F. Wu, J. P. Liu, X. T. Huang, Co–Fe layered double hydroxide nanowall array grown from an alloy substrate and its calcined product as a composite anode for lithium-ion batteries, Journal of Materials Chemistry, 2011, 21, 15969.

16.J. Jiang, J.P. Liu, R.M. Ding, J.H. Zhu, Y.Y. Li, A.Z. Hu, X. Li, X.T. Huang, Large-scale uniform α-Co(OH)2 long nanowires arrays grown on graphite as pseudocapacitor electrodes,  ACS Applied Materials and Interfaces, 2011, 3, 99-103.

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