易文才副教授

发布时间:2021-12-07文章来源: 浏览次数:

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办公地址:曲阜师范大学实验楼C104室

电子邮件:yiwc@qfnu.edu.cn

个人主页:https://www.researchgate.net/profile/Wencai_Yi

 

教育背景

2013.09-2018.06 吉林大学理论化学研究所 理学博士 导师:刘靖尧教授

2016.12-2017.12 California State University 访问学者 导师:苗茂生教授

2009.09-2013.07 天津师范大学化学院 理学学士 导师:杨华教授

 

工作经历

2021年01月-至今 买nba输赢球赛的网站 副教授

2018年07月-2020年12月 买nba输赢球赛的网站 讲师

 

教学任务

主要承担理工科材料计算物理、半导体物理、大学物理、大学物理实验以及近代物理实验等相关教学工作。

 

研究兴趣

采用第一性原理计算和结构搜索算法,探究低维材料微观晶体结构和电子结构性质。通过结构搜索,挖掘材料微观结构与宏观性质之间的关系,并基于此设计新型低维多功能材料。研究兴趣包含:

1. 高温高压极端物性研究;

2. 新型低维功能器件材料的结构设计与性能评估;

3. 含能材料(叠氮化合物)微观晶体结构和性能评估;

4. 新型孔材料结构搜索算法的开发;

目前已在J. Mater. Chem. A, J. Phys. Chem. Lett, J. Mater. Chem. C,Appl. Surf. Sci.等期刊发表SCI论文60余篇,软件著作权3项,h因子19。欢迎勤奋踏实,有兴趣致力于高压物理与材料科学研究,有物理、化学、材料、计算机等相关背景的同学报考课题组,除学校给予的基本待遇外,还将给予额外优厚生活补助和科研奖励,本课题组鼓励并优先推荐优秀学生与国内外一流科研单位联合培养和继续博士深造。


科研项目

1.2020.01-2022.12,五唑阴离子金属高能化合物常压晶体结构及稳定性的第一性原理研究,国家自然科学青年科学基金项目(21905159),26万,主持,在研。

2.2019.07-2022.06,基于掺杂提高磷烯结构稳定性及气敏性质的理论研究,山东省自然科学博士基金(ZR2019BA010),10万,主持,在研。

3.2018.07-2024.06,新型低维功能半导体材料的结构与物性研究,曲阜师范大学高层次人才引进专项经费(107/614001),20万,主持,在研。

4.2022.04-2023.03,材料模拟软件在DCU上的编译优化及性能测试,中科可控信息产业有限公司(ghfund202202026143),4万,主持,在研。

 

教学项目

1. 2019.09-2021.04,五唑阴离子金属化合物微观晶体结构及稳定性的理论研究,山东省大学生创新计划,指导教师。

 

教学科研奖励

1. 2022年,曲阜师范大学第十五届研究生学术论坛二等奖,姜新港,指导教师。

2. 2022年, 第二届计算纳米科学与新能源材料会议优秀墙报二等奖,姜新港,指导教师。


 

软件著作权

[1] VASP快速使用辅助软件(简称qvasp,原始取得) 2019年04月20日 登记号:2019SR0363124 (商用请联系授权)

[2] 二维孔材料结构搜索软件(简称CHERRY,原始取得) 2021年04月22日 登记号:2021SR0578533

[3] 气敏传感器和催化剂自动筛选软件(简称GSASP,原始取得) 2021年12月02日 登记号:2021SR1970864

 

代表性论文

2021-Now

1. Jiang X., Yang T., Fei G., Yi W. C.* and Liu X. B.* Novel Two-Dimensional ABX3 Dirac Materials: Achieving a High-Speed Strain Sensor via a Self-Doping Effect, J. Phys. Chem. Lett., 2022, 13, 2,676–685.

2. Jiang X., Yang T., Fei G., Yi W. C.* and Liu X. B.* Penta-BeP2 Monolayer: A Superior Sensor for Detecting Toxic Gases in the Air with Excellent Sensitivity, Selectivity, and Reversibility, ACS Appl. Mater. Inter., 2022, 14, 30, 35229–35236.

3. Yang T., Jiang X. G., Yi W. C.*, Cheng X. M.*,  Liu X. B., A g-SiC6 monolayer and its analogs: A new class of tunable dirac cone materials and novel quantum spin hall insulators, Appl. Surf. Sci., 2022, 578:  151986.

4. Yi W. C.*, Jiang X. G., Wang Z. X., Yang T., Yang B. C.  and Liu X. B.*, ABX6 Monolayers: A New Dirac Material Family Containing High Fermi Velocities and Topological Properties, Appl. Surf. Sci., 2021, 570: 151237.

5. Yang T., Jiang X., Yi W. C.*, Cheng X. M.*, Cheng T. X.*, Enhanced Fast Response to Hg0 by Adsorption-Induced Electronic Structure Evolution of Ti2C Nanosheet, Appl. Surf. Sci., 2021, 544, 148925.

6. Lu H. Y.*, Jiao N., Li B. W., Yi W. C.*,  Zhang P.*, Hydrogenated Group IV-V monolayer HAB6: A New Type of Dirac Material Constructed by Isoelectronic Rule, Appl. Surf. Sci., 2021, 554: 149635.

7. Zhang Z., Du H. Y.*, Yi W. C.*,  Sun Y., Zheng Y., Wu Y., Xu S. Investigation of Ammonia-sensing Mechanism on Polypyrrole Gas Sensor Based on Experimental and Theoretical Evidence. Sensor. Mater., 2021, 33(4), 1443-1454.

8. Cui Y. F., Duan S., Chen X.*, Yang M. M., Yang B. C., Yi W. C.*,  Liu X. B., Prediction of enhanced thermoelectric performance in two-dimensional black phosphorus nanosheets, Vaccum, 2021, 183: 109790.

9. Qi W, Yi W. C. (共一), Jiang W, et al. Interfacial Assembled CeO2–x/Co@ N-Doped Carbon Hollow Nanohybrids for High-Performance Lithium–Sulfur Batteries. ACS Sustain. Chem. Eng., 2021, 9, 43, 14451–14460.

10. Cai X. Y., Yi W. C. (共一),Chen, J., Lu, L. G., Sun B., Ni, Y. X.,Redfern, S. A. T.,Wang, H. Y., Chen, Z. F., Chen, Y. Z.* Novel 2D porous C3N2 framework as promising anode material with ultra-high specific capacity for lithium-ion batterIes, J. Mater. Chem. A 2022, 10(12), 6551-6559.


2019-2020

1. Yi W. C.,Zhao L., Chen X., Liu X.B., Zheng Y. H. and Miao Maosheng.* Packing high-energy together: Binding the power of pentazolate and high-valence metals with strong bonds. Mater. Des.. 2020, 193, 108820.

2. Yi W. C.*, Tang G.*, Chen X., Yang B. C., Liu X. B.*, qvasp: A Flexible Toolkit for VASP Users in Materials Simulations, Comput. Phys. Commun.,  2020, 257, 107535.

3. Yi W. C.*,Chen X., Wang Z. X.,Yang B. C. and Liu X. B.* A novel two-dimensional δ-InP3 monolayer with high stability, tunable bandgap, high carrier mobility, and gas sensing of NO2. J. Mater. Chem. C.2019,7, 7352-7359.

4. Yi, W. C.*, Zhao K, Wang Z, et al. Stabilization of the High-Energy-Density CuN5 Salts under Ambient Conditions by a Ligand Effect. ACS Omega, 2020,5(11), 6221-6227.

5. Yi W. C.*,  Jiang X. G., Yang T., Yang B. C., Liu Zhen* and Liu X. B.*, Crystalline Structures and Energetic Properties of Lithium Pentazolate under Ambient Conditions. ACS Omega, 2020, 5, 38, 24946–24953.

6. Du H. Y.*, Yang W., Yi W. C.*, Sun Y. H., Yu N. S., Wang J. Oxygen-plasma-assisted Enhanced Acetone-sensing Properties of ZnO Nanofibers by Electrospinning, ACS Appl. Mater. Inter., 2020, 12, 20, 23084–23093.

7. Fei G., Duan S., Zhang M., Ren, Z., Cui, Y., Chen, X.*, Liu, Y., Yi W. C.*, Liu, X. B.*, Predicted stable Li5P2 and Li4P at ambient pressure: novel high-performance anodes for lithium-ion batteries, Phys. Chem. Chem. Phys., 2020, 22(34), 19172-19177.

8. Wang Z. X., Yang, T., Yang B. C., Yi W. C.*, Prediction of stable energetic beryllium pentazolate salt under ambient conditions, Crystengcomm, 2020, 22(36), 6057-6062.

9. Ye Y,Yi W. C., (共一) Liu W.,Zhou Y., Xi G. C.* et al. Remarkable Surface-Enhanced Raman Scattering of Highly Crystalline Monolayer Ti3C2 Nanosheets. Sci. China Mater., 2020, 63(5), 794-805.


2013-2018

1. Yi W. C.; Liu W.; Botana J.; Liu J. Y.; Miao M. S., Microporosity as a new property control factor in graphene-like 2D allotropes. J. Mater. Chem. A 2018, 6(22), 10348-10353.

2. Yi W. C.; Liu W.; Botana J.; Zhao L.; Liu Z.; Liu J. Y.; Miao M. S., Honeycomb Boron Allotropes with Dirac Cones: A True Analogue to Graphene. J. Phys. Chem. Lett. 2017, 8 (12), 2647-2653.

3.Yi W. C.; Hu T.; Su T.; Islam R.; Liu J. Y.; Miao M. S., A CNH monolayer: a direct gap 2D semiconductor with anisotropic electronic and optical properties. J. Mater. Chem. C 2017, 5 (33), 8498-8503

4. Yi W. C.; Liu W.; Zhao L.; Islam R.; Miao M. S.; Liu J. Y., Asymmetric passivation of edges: a route to make magnetic graphene nanoribbons. RSC Adv. 2017, 7 (45), 27932-27937.

5. Zhao L., Yi W. C. ;(共一) Botana J.; Gu F. L.; Miao M. S., Nitrophosphorene: A 2D Semiconductor with Both Large Direct Gap and Superior Mobility. J. Phys. Chem. C. 2017, 121(21), 28520–28526


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