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张益欣
发布日期:2025年05月08日 浏览次数:

张益欣,校聘教授,硕士生导师。

电子邮箱:yxzhang@kust.edu.cn

办公地址:材料楼629


研究方向:

  (1)热电材料与器件

  (2)天然矿石材料

  (3)纳米功能材料

教育经历:

(1) 2020-09 至 2024-06, 昆明理工大学, 材料物理与化学, 博士

(2) 2016-09 至 2019-06, 昆明理工大学, 材料学, 硕士

(3) 2012-09 至 2016-06, 昆明理工大学, 材料科学与工程, 学士

工作经历:

(1) 2024-9 至 今, 昆明理工大学, 材料科学与工程学院, 校聘教授

科研项目:

(1) 昆明理工大学“双一流”创建联合专项,重点项目,铜基超离子导体材料的有序-无序结构调控与热电性能优化,100万,2024.12-2027.11(主持)

(2) 国家自然科学基金项目(1257042592),面上项目,基于矿石仿生的硫化铜基热电材料性能优化及铜离子长程迁移抑制机理研究,55万,2026.1-2029.12 (参与)

(3) 国家自然科学基金项目(52162029),地区项目,高性能铜硫系热电材料铜离子长程迁移的多尺度抑制机理研究,36.5万,2022.1-2025.12 (参与)

学术成果:【论文与专利】

目前已在Joule、Nat. Commun.、Acta Mater.、Nano Energy、Mater. Today. Phys.、Chem. Eng. J.、J. Materiomics、ACS Appl. Mater. Interfaces、Inorg. Chem.、J. Eur. Ceram. Soc.等期刊以第一作者或通讯作者发表SCI论文20余篇,被引用400余次,获授权发明专利9项。

【近期发表的部分论文】

[1]. Yi-Xin Zhang, Qin-Yuan Huang, Xi Yan, Chong-Yu Wang, Tian-Yu Yang, Zi-Yuan Wang, Yong-Cai Shi, Quan Shan, Jing Feng and Zhen-Hua Ge*, Synergistically optimized electron and phonon transport in high-performance copper sulfides thermoelectric materials via one-pot modulation, Nature Communications, 15, 2736, 2024.(JCR大类分区1区,IF:16.6)

[2]. Zhen-Hua Ge*, Yi-Xin Zhang, Tian-Yu Yang, Dongsheng He, Yu Xiao, Hao Lai, Ying Wang, Jiushuai Deng, Jing-Feng Li, Jing Feng*, Jiaqing He*, Li-Dong Zhao*, Highly Stabilized Thermoelectric Performance in Natural Minerals, Joule, 8, 1, 2024.(共同一作,JCR大类分区1区,IF:39.8)

[3]. Yi-Xin Zhang, Qi-Yong Chen, Jianrui Wang, Tian-Yu Yang, Zi-Yuan Wang, Xing Yang, Ze Li, Chong-Yu Wang, Lili Xi, Jiong Yang, Zhen-Hua Ge, Jing Feng*, Jiaqing He*, Band alignment and Cu+ long-range migration suppression enable excellent and stabilized thermoelectric performance in copper sulfide via endotaxial CsPbBr3 nanoprecipitates, Nano Energy, 150, 111757, 2026.(新锐大类分区1区,IF:17.0)

[4]. Yi-Xin Zhang, Xi Yan, Xing Yang, Lan Yu, Yue-Xing Chen, Ding-Yi Yu, Zulai Li, Zhen-Hua Ge∗, Jiushuai Deng∗, Jing Feng*, Cu ions migration modulation advances thermoelectric performance in copper selenides, Journal of Materials Science & Technology, 248, 189, 2026.(JCR大类分区1区,IF:14.3)

[5]. Yi-Xin Zhang, Qing Lou, Zhen-Hua Ge*, Shi-Wei Gu, Jun-Xuan Yang, Jun Guo, Yu-Ke Zhu, Ying Zhou, Xiao-Hua Yu, Jing Feng*, Jiaqing He*, Excellent thermoelectric properties and stability realized in copper sulfides based composites via complex nanostructuring, Acta Materialia, 233, 117972, 2022.(JCR大类分区1区,IF:9.4)

[6]. Yi-Xin Zhang, Tian-Yu Yang, Zi-Yuan Wang, Jing Feng, Zhen-Hua Ge*, Highly enhanced stability and thermoelectric performance of copper sulfides-based composites by multiphase engineering, Materials Today Physics, 27, 100808, 2022.(JCR小类分区1区,IF:11.5)

[7]. Yi-Xin Zhang, Jing Feng, Zhen-Hua Ge*, Enhanced thermoelectric performance of Cu1.8S via lattice softening, Chemical Engineering Journal, 428, 131153, 2022.(JCR大类分区1区,IF:15.1)

[8]. Yi-Xin Zhang, Tian-Yu Yang, Zhen-Hua Ge*, Jing Feng*, High-performance copper selenide nanocomposites for power generation, Journal of the European Ceramic Society, 43, 5255, 2023.(JCR小类分区1区,IF:5.7)

[9]. Xing Yang, Tian-En Shi, Wang-Qi Bao, Zi-Yuan Wang, Jun Wang, Peng Wu, Yi-Xin Zhang*, Jing Feng, Zhen-Hua Ge*, Ultrahigh average zT realized in polycrystalline SnSe0.95 materials through Sn stabilizing and carrier modulation, Journal of Materiomics, 11, 100880, 2025.(JCR大类分区1区,IF:8.4)

[10]. Chong-Yu Wang, Tian-Yu Yang, Yi-Xin Zhang,* Jing Feng, and Zhen-Hua Ge*, Iodine Doping for the Tunable Phase Structure and Enhanced Thermoelectric Performance in Copper Selenide, Crystal Growth & Design, 25, 1237, 2025. (JCR小类分区1区)

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