个人信息Personal Information
特任教授
博士生导师
硕士生导师
电子邮箱:
职务:Professor
学历:博士研究生毕业
办公地点:安徽省合肥市中国科大西区力五楼905B室
联系方式:mhao@ustc.edu.cn
学位:博士
毕业院校:Cornell University
Publications
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( # co-first author, *Corresponding author) Google Scholar
28. Y. Hu, Q. Wang, H. Ma*, “Machine-learning-assisted searching for thermally conductive polymers: a mini review”, Journal of Applied Physics, 135, 120701 (2024)
27. J. Dai#, Z. Zhang#, J. Luo, H. Ma*, “Advances in developing thermally conductive polymers”, Materials Research Letters, 12:5, 325-335, (2024) 公众号
26. S. Zhou, E. Xiao, H. Ma, K. Gofryk, C. Jiang, M. E Manley, D. H Hurley, C. A Marianetti*, “Phonon thermal transport in UO2 via self-consistent perturbation theory”, Physical Review Letters, 132, 106502 (2024)
25. R. Hu#, H. Fan#, Y. Zhou, K. Tao, Z. Tian, H. Ma*, “Electrostatic Interactions Dominate Thermal Conductivity and Anisotropy in Three-dimensional Hydrogen-Bonded Organic Frameworks”, International Journal of Heat and Mass Transfer, 221 (2024) 125071
24. H. Ma*, Z. Hua, A. Sen, T. Yao, M. S. Byran, A. Alatas, E. K. Nosal, S. Adnan, E. Xiao, A. French, M. Bachhav, C. A. Marianetti, M. Khafizov, L. Shao, L. He, J. Wharry, D. H. Hurley, M. E. Manley*, "Impacts of irradiation-induced nanostructure on phonon linewidths and thermal conductivity in U-Zr alloy", Physical Review B 108, 104318 (2023)
23. J. Kwon, H. Ma, A. Giri, P. Hopkins, N. Shustova, and Z. Tian*, "Thermal Conductivity of Covalent Organic Frameworks", ACS Nano 2023, 17, 16, 15222–15230
Before joining USTC
22. E. Xiao#, H. Ma#, M. S. Bryan#, L. Fu, J. M. Mann, B. Winn, D. Abernathy, R. Hermann, M. Manley, and C. Marianetti*, “First Principles Phonon Lifetimes Validated via Inelastic Neutron Scattering”, Physical Review B 106, 144310 (2022)
21. S. Zhou, H. Ma, E. Xiao, K. Gofryk, C. Jiang, M. E Manley, D. H Hurley, C. A Marianetti*, “Capturing the ground state of uranium dioxide from first principles: crystal distortion, magnetic structure, and phonons”, Physical Review B 106, 125134 (2022)
20. H. Ma*, M. S. Bryan, J. W. L. Pang, D. L. Abernathy, K. Gofryk, and M. E. Manley*, “Suppressed Thermal Conductivity in Hyperstoichiometric Uranium Dioxide Controlled by Phonon Lifetimes”, Applied Physics Letters 121, 012202 (2022) Featured and Scilight
19. H. Ma, K. Lionti, T. P. Magbitang, J. Gaskins, P. E. Hopkins, S. T. Huxtable, Z. Tian*, “Pore-Confined Polymers Enhance Thermal Conductivity of Polymer Nanocomposites”, ACS Macro Letters, 2022, 11, 1, 116–120
18. H. Ma#, Z. Aamer#, Z. Tian*, “Ultra-high Thermal Conductivity in Three-dimensional Covalent Organic Frameworks”, Materials Today Physics, 100536 (2021)
17. C. Li#, H. Ma#, T. Li, J. Dai, M. Rasel, A. Mattoni, A. Alatas, M. Thomas, Z. W. Rouse, A. Shragai, S. P. Baker, B. Ramshaw, J. Feser, D. B. Mitzi, and Z. Tian*, “Remarkably Weak Anisotropy in Thermal Conductivity of Two-Dimensional Hybrid Perovskite Butylammonium Lead Iodide Crystals”, Nano Letters 21, 9, 3708–3714 (2021) Cornell Chronicle
16. H. Ma, C. Li and Z. Tian*, “Hydrogen Bonds Significantly Enhance Out-of-Plane Thermal and Electrical Transport in 2D Graphamid: Implications for Energy Conversion and Storage”, ACS Applied Nano Materials 3, 11, 11090–11097 (2020)
15. H. Ma, Y. Ma and Z. Tian*, “Simple Theoretical Model for Thermal Conductivity of Crystalline Polymers”, ACS Applied Polymer Materials 1, 10, 2566-2570 (2019)
14. H. Ma, C. Li, Y. Ma, H. Wang, Z. W. Rouse, Z. Zhang, C. Slebodnick, A. Alatas, S. P. Baker, J. J. Urban, and Z. Tian*, “Supercompliant and Soft (CH3NH3)3Bi2I9 Crystals with Ultralow Thermal Conductivity”, Physical Review Letters 123, 155901 (2019) Cornell Chronicle APS Science Highlight
13. H. Ma, H. Babaei, and Z. Tian*, "The Importance of van der Waals Interactions to Thermal Transport in Graphene-C60 Heterostructures", Carbon 148, 196-203 (2019)
12. H. Ma and Z. Tian*, “Chain Rotation Significantly Reduces Thermal Conductivity of Single-chain Polymers”, Journal of Materials Research 34(1) 126-133 (2019)
11. H. Ma, Y. Ma, H. Wang, C. Slebodnick, A. Alatas, J. J. Urban, and Z. Tian*, “Experimental Phonon Dispersion and Lifetimes of Tetragonal CH3NH3PbI3 Perovskite Crystals”, Journal of Physical Chemistry Letters 10, 1−6 (2019)
10. H. Ma, E. O'Donnel and Z. Tian*, “Tunable Thermal Conductivity of π-Conjugated Two-dimensional Polymers”, Nanoscale 10, 13924-13929 (2018)
9. H. Ma and Z. Tian*, “Significantly High Thermal Rectification in an Asymmetric Polymer Molecule Driven by Diffusive versus Ballistic Transport”, Nano Letters 18 (1), pp 43–48 (2018)
8. H. Ma and Z. Tian*, “Effects of Polymer Topology and Morphology on Thermal Transport: A Molecular Dynamics Study of Bottlebrush Polymers” Applied Physics Letters 110, 091903 (2017)
7. C. Li, H. Ma and Z. Tian*, “Thermoelectric Properties of Crystalline and Amorphous Polypyrrole: A Computational Study” Applied Thermal Engineering 111, 1441-1447 (2017)
6. H. Ma, C. Li, S. Tang, J. Yan, A. Alatas, L. Lindsay, B. C. Sales, and Z. Tian*, “Boron Arsenide Phonon Dispersion from Inelastic X-ray Scattering: Potential for Ultrahigh Thermal Conductivity” Physical Review B: Rapid Communications 94, 220303(R) (2016)
5. H. Ma and Z. Tian*, “Effects of Polymer Chain Confinement on Thermal Conductivity of Ultrathin Amorphous Polystyrene Films” Applied Physics Letters 107, 073111 (2015)
4. Z. Tian*, M. Li, Z. Ren, H. Ma, A. Alatas, S. Wilson and J. Li, “Inelastic X-ray Scattering Measurements of Phonon Dispersion and Lifetimes in PbTe1−x Sex Alloys” Journal of Physics: Condensed Matter 27, 375403 (2015)
3. A. Han, H. Jia, H. Ma, S. Ye, H. Wu, H. Lei, Y. Han, R. Cao, and P. Du* “Cobalt Porphyrin Electrode Films for Electrocatalytic Water Oxidation” Phys. Chem. Chem. Phys. 16(23), 11224-11232 (2014)
2. A. Han, H. Wu, Z. Sun, H. Jia, Z. Yan, H. Ma, X. Liu, P. Du* “Green Cobalt Oxide (CoOx) Film with Nanoribbon Structures Electrodeposited from the BF2-Annulated Cobaloxime Precursor for Efficient Water Oxidation” ACS Applied Materials & Interfaces 6 (14), pp 10929–10934 (2014)
CONFERENCE PROCEEDINGS (peer-reviewed)
1. H. Ma and Z. Tian*, “Toward Enhancing Thermal Conductivity of Polymer-based Thin Films for Microelectronics Cooling” IEEE ITherm 2017, Orlando, FL, May 30-June 2, 2017