论文著作:
(1)XiaoYu Chong*, Jorge Paz Soldan Palma, Yi Wang, et al. Thermodynamic properties of the Yb-Sb system predicted from first-principles calculations, Acta Materialia, 2021, 217, 117169.
(2)XiaoYu Chong, MingYu Hu, Peng Wu, et al. Tailoring the anisotropic mechanical properties of hexagonal M7X3 (M=Fe, Cr, W, Mo; X=C, B) by multialloying,Acta Materialia, 2019, 169, 193-208.
(3)Mengdi Gan, Xiaoyu Chong*, Tianlong Lu, Chao Yang, et al. Unveiling thermal stresses in RETaO4 (RE= Nd, Sm, Eu, Gd, Tb, Dy, Ho and Er) by first-principles calculations and finite element simulations, Acta Materialia, 2024, 271: 119904.
(4)Wei Yu, Xiaoyu Chong*, Yingxue Liang, Xingyu Gao, et al. Discovering novel γ-γ′ Pt-Al superalloys via lattice stability in Pt3Al induced by local atomic environment distortion, Acta Materialia 281 (2024) 120413.
(5)Y Wang, F Lia, K Wang, K McNamara, Y Ji, Xiaoyu Chong, et al. A thermochemical database from high-throughput first-principles calculations and its application to analyzing phase evolution in AM-fabricated IN718, Acta Materialia, 2022, 240: 118331.
(6)XiaoYu Chong, Pin-Wen Guan, MingYu Hu, et al. Exploring accurate structure, composition and thermophysical properties of η carbides in 17.90 wt% W-4.15 wt% Cr-1.10 wt% V-0.69 wt% C steel, Scripta Materialia, 2018, 154, 149-153.
(7)Yi Wang, XiaoYu Chong*, et al. An alternative approach to predict Seebeck coefficients: Application to La3−xTe4, Scripta Materialia, 2019, 169, 87-91.
(8)J Wang, XiaoYu Chong, R Zhou, J Feng, et al. Microstructure and thermal properties of RETaO4 (RE= Nd, Eu, Gd, Dy, Er, Yb, Lu) as promising thermal barrier coating materials, Scripta Materialia, 2017, 126: 24-28.
(9)Lin Chen, Mingyu Hu, Jun Guo, XiaoYu Chong*, Jing Feng*. Mechanical and thermal properties of RETaO4 (RE = Yb, Lu, Sc) ceramics with monoclinic-prime phase. Journal of Materials Science & Technology, 2020, 52, 20-28.
(10)J Wang, Xiaoyu Chong*, L Lv, Y Wang, X Ji, H Yun, J Feng*.High-entropy ferroelastic (10RE0. 1) TaO4 ceramics with oxygen vacancies and improved thermophysical properties. Journal of Materials Science & Technology, 2023, 157: 98-106.(热点+高被引论文)
(11)M Gan, L Lai, J Wang, J Wang, L Chen, J He, J Feng, Xiaoyu Chong*. Suppressing the oxygen-ionic conductivity and promoting the phase stability of the high-entropy rare earth niobates via Ta substitution. Journal of Materials Science & Technology, 2025, 209: 79-94.
(12)M Gan, T Lu, W Yu, J Feng, Xiaoyu Chong*. Capturing and visualizing the phase transition mediated thermal stress of thermal barrier coating materials via a cross-scale integrated computational approach. Journal of Advanced Ceramics, 2024, 13(4).(高被引)
(13)Peng Wu, MingYu Hu, XiaoYu Chong*, Jing Feng. The glass-like thermal conductivity in ZrO2-Dy3TaO7 ceramic for promising thermal barrier coating application. Applied Physics Letters, 2018, 112 (13), 131903.
(14)XiaoYu Chong, Shun-Li Shang, A M Krajewski, et al. Correlation analysis of materials properties by machine learning: Illustrated with stacking fault energy from first-principles calculations in dilute fcc-based alloys. Journal of Physics: Condensed Matter, 2021, 33, 295702.
(15)Yunxuan Zhou, Wei Yu, XiaoYu Chong*, et al. Rapid screening of alloy elements to improve the elastic properties of dilute Pt-based alloys: High-throughput first-principles calculations and modeling. Journal of Applied Physics, 2020, 128, 235103.
(16)W Yu, Xiaoyu Chong*, M Gan, Y Wei, et al. Exploring the solution strengthening effect of 33 alloying elements in Pt-based alloys by high-throughput first-principles calculations. Journal of Applied Physics, 2022, 131(18).
(17)JPS Palma, XiaoYu Chong, Y Wang, SL Shang, ZK Liu. Thermodynamic re-modeling of the Yb-Sb system aided by first-principles calculations[J]. Calphad, 2023, 81: 102541.
(18)C Yang, Xiaoyu Chong*, M Hu, W Yu, J He, Y Zhang, J Feng, et al. Accelerating the discovery of hybrid perovskites with targeted band gaps via interpretable machine learning. ACS Applied Materials & Interfaces, 2023, 15(34): 40419-40427.
(19)L Lai, M Gan, J Wang, L Chen, X Liang, J Feng, XiaoYu Chong*. New class of high‐entropy rare‐earth niobates with high thermal expansion and oxygen insulation. Journal of the American Ceramic Society, 2023, 106(7): 4343-4357.(高被引论文)
(20)M Gan, Xiaoyu Chong*, W Yu, B Xiao, J Feng. Understanding the ultralow lattice thermal conductivity of monoclinic RETaO4 from acoustic-optical phonon anti-crossing property and a comparison with ZrO2. Journal of the American Ceramic Society, 2023, 106(5): 3103-3115.(高被引论文)
(21)Jun Wang, Fushuo Wu, Jing Feng, XiaoYu Chong*. High-entropy ferroelastic rare-earth tantalite ceramic: (Y0.2Ce0.2Sm0.2Gd0.2Dy0.2)TaO4. Journal of the American Ceramic Society, 2021, 104: 5873-5882.
(22)XiaoYu Chong, YeHua Jiang, Rong Zhou, Jing Feng. Multi-alloying effect on thermophysical properties of Cr7C3 type carbides. Journal of the American Ceramic Society, 2017, 100(4): 1588-1597. (封面论文)
(23)Yun-Xuan Zhou, Ying Zhou, Peng Wu, Peng Song, Xiao-Yu Chong*, Jing Feng, Thermal properties of Y1-xMgxTaO4-x/2 ceramics via anion sublattice adjustment. Rare Metals, 2020,39(5):545–554. (封面论文)
(24)XiaoYu Chong, YeHua Jiang, Rong Zhou, et al. Electronic structure, anisotropic elastic and thermal properties of the η phase Fe6W6C. Computational Materials Science, 2015, 108: 205-211. (编辑选择)
(25)XiaoYu Chong, GuangChi Wang, Yehua Jiang, Jing Feng. Numerical Simulation of Temperature Field and Thermal Stress in ZTAp/HCCI Composites During Solidification Process. Acta Metall Sin, 2018, 54 (2), 314-324. (封面论文)
(26)Zhen-Hua Ge1, Dongsheng Song1, XiaoYu Chong1, et al. Boosting the Thermoelectric Performance of (Na, K)-Codoped Polycrystalline SnSe by Synergistic Tailoring of the Band Structure and Atomic-Scale Defect Phonon Scattering. Journal of the American Chemical Society, 2017, 139 (28), 9714-9720 (共同一作)
(27)Mingyu Hu, Min Chen, Peijun Guo, Hua Zhou, Junjing Deng, Yudong Yao, Yi Jiang, Jue Gong, Zhenghong Dai, Yunxuan Zhou, Feng Qian, Xiaoyu Chong, et al. Sub-1.4 eV bandgap inorganic perovskite solar cells with long-term stability. Nature communications, 2020, 11(1): 151.
(28)汪俊,张宇轩,种晓宇,张志彬,梁秀兵,冯晶,高温热障涂层材料研究进展,中国有色金属学报,2022, 32(12): 3758 −3779.(2022年度优秀论文)
(29)种晓宇,汪广驰,蒋业华,冯晶,耐磨钢铁材料中强化相设计与性质计算研究进展,中国材料进展,2019,38(12),1145-1158. (封面论文)