
基本信息:
常征 青年副教授 博士
轮机工程系 能源与动力工程专业
电子邮件-Email:zhengchang@zjou.edu.cn
通讯地址:浙江省舟山市定海区临城街道海大南路1号,文理楼406
个人ky开元与工作简历:
2011.09-2015.06:中原工开元大厅,能源与动力工程,学士
2015.09-2018.06:内蒙古工业大学,动力工程,硕士
2018.09-2022.08:大连理工大学,能源与环境工程,博士
2024.09-2025.06:浙江大学,访问学者
2022.09-至今:浙江海洋大学,船舶与海运开元大厅
研究方向:
1)船用锂电池及固体氧化物燃料电池开发
2)微/纳尺度热输运与能量高效转换机理研究
3)极端环境下海洋地质岩石及深海矿物的物性理论预测
4)海上风能/太阳能光伏/光热综合利用
5)船用氢燃料电池内多尺度热质传递过程、热管理和关键部件的优化设计
主要科研项目:
1)深远海风电-绿氨耦合孤网的能量-物质多尺度演化规律与动态协同机理研究,浙江省自然科学基金委,2026.01.01-2027.12.31,主持,10万;
2)基于二氧化碳加氢的甲醇燃料电池能质转化与利用研究,浙江省ky开元厅,2025.11.01-2027.10.30,主持,1万;
3)基于氢能制备、储运及利用的海岛可再生能源集成系统关键技术研究,浙江省舟山市,2024.01.01-2026.12.31,参与,82万;
4)极端环境下高性能热电材料中导电和导热机制的协同调控研究,国家超级计算天津中心,2023.06-2024.06,主持,30万计算核时;
5)硅基半导体材料中光热电效应的第一性原理研究,硅及先进半导体材料全国重点实验室,2023.10-2025.09,主持,6万;
6)叠层纳米薄膜界面热阻与尺寸效应研究,介科学与工程全国重点实验室,2023.10-2024.12,主要执行人,10万;
7)超高压力条件热输运机理研究,国家自然科学基金委,2018.01-2022.12,参与,337.4万;
8)飞秒、纳米时/空尺度热输运机理研究,国家自然科学基金委,2014.01-2018.12,参与,300万;
9)热电材料热电输运特性的基底效应研究,国家自然科学基金委,2021.01-2024.12,参与,58万;
10)孪晶化优化锂硫电池电极材料热输运和力学性能研究,国家自然科学基金委,2022.01-2025.12,参与,58万;
11)二维材料热输运的反常基底效应研究,国家自然科学基金委,2019.01-2021.12,参与,24万。
代表性论文及专著:
[1] Chang, Zheng; Zhang, Zhongyin; Zhu, Yongchao; Yuan, Kunpeng; Mushtaq, Muhammad; Ma, Jing; Xia, Yi; Deng, Tianqi; Al-Fahdi, Mohammed; Zhang, Xiaoliang; Gao, Yufei; Liu, Hongtao; Lu, Jinshu; Zhu, Jie; Cheng, Guanghua; Tang, Dawei; Zhu, Tiejun; Peng, Hailin. Pressure-induced anisotropic reversal of thermal conductivity and its implication beyond conventional higher-order phonon scattering in non-van der Waals layered Bi2O2Se. Physical Review B 2025, 112 (19), 195204.
[2] Zheng, Jiongzhi#; Chang, Zheng#; Lin, Changpeng; Lin, Chongjia; Zhou, Yanguang; Huang, Baoling; Guo, Ruiqiang; Hautier, Geoffroy. Ineffectiveness of formamidine in suppressing ultralow thermal conductivity in cubic hybrid perovskite FAPbI3. npj Computational Materials 2025, 11 (1), 315.
[3] Ju, Zhuo; Ma, Dengke*; Chang, Zheng*. Strain effect on the particlelike and wavelike mutual coherence contributions to the thermal conductivity of AgTlI2. Physical Review B 2025, 111 (13), 134302.
[4] Ju, Zhuo#; Chang, Zheng#; Xiao, Nian; Qian, Xin; Zhou, Yan; Ma, Dengke. Lattice thermal conductivity of LiNbO3 considering high-order anharmonicity and phonon mutual coherence channel. Physical Review Applied 2025, 24 (2), 024035.
[5] Ma, Jing#; Chang, Zheng#,*; Yang, Lin; Xia, Yi; Jiang, Bo; Zhang, Xiaoliang; Tang, Dawei. Origins of giant anisotropic phonon heat transfer in true‐1D van der Waals material. Advanced Functional Materials 2024, 34 (49), 2409389.
[6] Chang, Zheng; Zheng, Jiongzhi; Ma, Jing; Zhang, Xiaoliang; Gao, Yufei; Tang, Dawei. Temperature-dependent interatomic force constants and phonon coherent resonance contribution in quaternary non-centrosymmetric chalcogenides BaAg2SnSe4. International Journal of Heat and Mass Transfer 2024, 219, 124863.
[7] Chang, Zheng; Yuan, Kunpeng; Sun, Zhehao; Zhang, Xiaoliang*; Gao, Yufei; Qin, Guangzhao; Tang, Dawei*; Ultralow lattice thermal conductivity and dramatically enhanced thermoelectric properties of monolayer InSe induced by an external electric field [J]; Physical Chemistry Chemical Physics, 2021.
[8] Chang, Zheng; Yuan, Kunpeng; Sun, Zhehao; Zhang, Xiaoliang*; Gao, Yufei; Gong, Xiaojing; Tang, Dawei*; First-principles analysis of phonon thermal transport properties of two-dimensional WS2/WSe2 heterostructures [J]; Chinese Physics B, 2021.
[9] Chang, Zheng; Liu, Ke; Sun, Zhehao; Yuan, Kunpeng; Cheng, Shuwen; Zhang, Xiaoliang*; Gao, Yufei; Shen, Chen; Zhang, Hongbin; Wang, Ning; Tang, Dawei*; First-principles investigation on the significant anisotropy and ultrahigh thermoelectric efficiency of a novel two-dimensional Ga2I2S2 at room temperature [J]; International Journal of Extreme Manufacturing, 2021.
[10] Chang, Zheng; Yuan, Kunpeng; Li, Jiale; Sun, Zhehao; Zheng, Jiongzhi; Al-Fahdi, Mohammed; Gao, Yufei; Wei, Bin; Zhang, Xiaoliang*; Hu, Ming; Tang, Dawei*; Anomalous thermal conductivity induced by high dispersive optical phonons in rubidium and cesium halides [J]; ES Energy and Environment, 2022.
[11] Chang, Zheng; Zheng, Jiongzhi; Yuan, Kunpeng; Ma, Jing; Bi, Shipeng; Gao, Yufei; Zhang, Xiaoliang*; Hu, Ming; Tang, Dawei*; Revisiting lattice thermal transport in crystalline Mg3Sb2 from first principles: The crucial role of high-order phonon scattering [J]; Physical Chemistry Chemical Physics, 2022.
[12] Bi, Shipeng; Chang, Zheng; Yuan, Kunpeng; Sun, Zhehao; Zhang, Xiaoliang*; Gao, Yufei; Tang, Dawei*; First-principles prediction of lattice thermal conductivity of two-dimensional (2D) h-BX (X = P, As, Sb) considering the effects of fourth-order and all-order scattering [J]; Journal of Applied Physics, 2022.
[13] Zhang, Zhongyin; Chang, Zheng; Fan, Xuanhui; Zhou, Jing; Wang, Xinwei; Li, Gen; Zhang, Xiaoliang; Zhu, Jie*; Tang, Dawei*; Pressure Dependent Thermoreflectance Spectroscopy Induced by Interband Transitions in Metallic Nano-Film [J]; iScience, 2021.
[14] Liu, Sen; Chang, Zheng; Yuan, Kunpeng; Zhang, Xiaoliang*; Gao, Yufei; Tang, Dawei*; Lattice thermal transport properties dependence of quantum confinement and electron-phonon coupling effects to XB2 (X=Mg and Al) compounds [J]; Rare Metals, 2022.
[15] Sun, Zhehao#; Yuan, Kunpeng#; Chang, Zheng; Bi, Shipeng; Zhang, Xiaoliang*; Tang, Dawei*; Ultra-low thermal conductivity and high thermoelectric performance of two-dimensional triphosphides (InP3, GaP3, SbP3 and SnP3): a comprehensive first-principles study [J]; Nanoscale, 2020.
[16] 闫素英*, 常征, 王峰, 田瑞. 积尘对槽式太阳能聚光器焦面能流密度分布的影响及聚光优化[J];光学学报, 2017, 37 (07): 239-246.
更多论文详见:https://scholar.google.com.hk/citations?hl=zh-CN&user=8YgmEnAAAAAJ&view_op=list_works&sortby=pubdate
学术组织兼职:
担任SCI期刊Crystals客座编辑及《Energy Conversion and Management》, 《Journal of Applied Physics》,《Energy Conversion and Management X》和《Physical Review B》等期刊审稿人。
荣誉奖励:
2017年,研究生国家奖学金;
2018年,内蒙古自治区优秀三好学生;
2022年,大连理工大学优秀研究生;
2022年,大连理工大学优秀毕业生;
2022年,IJEM (中科院一区 TOP) Best Paper Award