在国际会议上做了40余次大会特邀报告。发表期刊、国际会议论文400余篇,其中SCI收录200余篇, SCI他引3000余次,连续5年被爱思唯尔评为“中国高被引学者”。参编日文版《新编热物性手册》(2008,Yokendo出版社)。代表论文有:
1. Zhang Y F, Fan A R, Luo S T, Wang H D, Ma W G, Zhang X, Suspended 2D anisotropic materials thermal diffusivity measurements using dual-wavelength flash Raman mapping method, International Journal of Heat and Mass Transfer, Vol. 145, 118795, 2019.
2. Fan A R, Hu Y D, Ma W G, Wang H D, Zhang X, Dual-wavelength laser flash Raman spectroscopy method for in-situ measurements of the thermal diffusivity: principle and experimental verification, Journal of Thermal Science, 28(2): 159-168, 2019.
3. Liu J H, Xie H H, Hu Y D, Zhang X, Zhang Y Y, Thermal transport in suspended SWCNTs at high heat fluxes, International Journal of Heat and Mass Transfer, 108, 572-576, 2017.
4. Wang H D, Hu S Q, Takahashi K, Zhang X, Takamatsu H, Chen J, Experimental study of thermal rectification in suspended monolayer graphene, Nature Communications, 8, 15843, 2017.
5. Liu J H, Wang H D, Hu Y D, Ma W G, Zhang X, Laser flash-Raman spectroscopy method for the measurement of the thermal properties of micro/nano wires, Review of Scientific Instruments, 86, 014901, 2015.
6. Jia L, Ma W G, Zhang X, Ultrafast carrier dynamics in polycrystalline bismuth telluride nanofilm, Applied Physics Letters, 104, 241911, 2014.
7. Song M X, Chen K, He Z Y, Zhang X. Bionic optimization for micro-siting of wind farm on complex terrain. Renewable Energy, 50: 551-557, 2013.
8. Song M X, Chen K, He Z Y, Zhang X. Wake flow model of wind turbine using particle simulation. Renewable Energy, 41: 185-190, 2012.
9. Wang J L, Zhang X. Measurement methods and applications for thermophysical properties at micro/nanoscales. Japanese Journal of Applied Physics, 50:11RC01, 2011.
10. Miao T T, Ma W G, Zhang X, et al. A self-heating 2 omega method for Seebeck coefficient measurement of thermoelectric materials. Review of Scientific Instruments, 82:024901, 2011.
11. Wang J L, Song B, Zhang X, et al. Simultaneous measurements of thermal properties of individual carbon fibers. International Journal of Thermophysics, 32(5):974-983, 2011.
12. Wang J L, Gu M, Song B, et al. Experimental investigation of the thermal impedance of interstitial material at a junction. International Journal of Thermophysics, 31:1145-1156, 2010.
13. Wang J L, Gu M, Zhang X, et al. Measurements of thermal effusivity of a fine wire and contact resistance of a junction using a T type probe. Review of Scientific Instruments, 80:076107, 2009.
14. Feng B, Ma W G, Li Z X, et al. Simultaneous measurements of the specific heat and thermal conductivity of suspended thin samples by transient electrothermal method. Review of Scientific Instruments, 80:064901, 2009.
15. Zhang X, Wang J L, Ma W G, et al. A novel method for simultaneous measurements of the intrinsic thermal conductivity and thermal diffusivity of individual fibers. High Temperatures - High Pressures, 37:41-50, 2008.
16. Zhang Q G, Cao B Y, Zhang X. Influence of grain boundary scattering on the electrical and thermal conductivities of polycrystalline gold nanofilms. Physical Review B, 74:134109, 2006.
17. Zhang Q G, Zhang X, Cao B Y. Influence of grain boundary scattering on the electrical properties of platinum nanofilms. Applied Physics Letters, 89:114102, 2006.
18. Fujii M, Zhang X, Xie H Q, et al. Measuring the thermal conductivity of a single carbon nanotube. Physical Review Letters, 95:065502, 2005.
19. Zhang X, Xie H Q, Fujii M. Thermal and electrical conductivity of a suspended platinum nanofilm. Applied Physics Letters, 86:171912, 2005.
20. Zhang X, Fujiwara S, Fujii M. Short-hot-wire method for measurement of the thermal conductivity of a fine fiber. High Temperatures - High Pressures, 32: 493-500, 2000.