1.Microstructural evolution and phase composition of In2Ga2ZnO7 ceramic targets during sintering;Qi C, Chen J*, Yue K, Sun B, Wang S, Yang F, Xing X, He J.Rare Metals
2.Densification behavior of Ga2O3-SnO2 targets;Wang S, Chen J*, Wang Y, Sun B, Huang S, Qi C, Ren F, He J.Ceramics International
3.Evolution of microstructure of sputtered films deposited using different indium gallium zinc oxide targets upon annealing;Chen J*, Du R, Liu S, Qi C, Sun B, Zhong R, He J.Ceramics International
4.Densification behavior of EBCO superconducting target by phase-field simulation.Ceramics International
5.Optimization of YBCO superconducting target synthesis via oxalic acid coprecipitation method.Journal of Alloys and Compounds
6.Particle Size-Induced Microstructural Evolution and Performance Enhancement A Densification Synergy in EBCO Superconducting Targets.Journal of Alloys and Compounds
7.Phase-field guided design of Hf-doped EuBCO: Linking secondary phases, densification, and superconductivity.Ceramics International
8.Densification of CeO2 target and the properties of sputtered thin films.Ceramics International
9.The sintering behavior of electrosynthesized SnO2 powders.Ceramics International
10.Integrated vibration packing-sintering process for ITO rotary targets via slurry rheology and discrete element method simulations.Journal of Materials Research and Technology
11.Microstructure engineering via three-phase control for high-performanceIZTO targets.Journal of the European Ceramic Society
12.Fabrication and characterization of high-density La0.7Sr0.3MnO3 targets via pressure slip casting.Journal of the European Ceramic Society
13.From Target to Film: The Crucial Role of AZO Target Grain Size in Sputtered Thin Film Properties.Materials Today Communications
14.Innovative approaches to doping in zinc oxide films: The role of aluminum and tungsten in enhancing photoelectric properties.Journal of the European Ceramic Society
15.Pressure slip casting of IWO targets: Master sintering curve kinetics and microstructure-property relationships.Materials Chemistry and Physics
16.Phase evolution and sintering behavior of high-performance IGTO sputtering targets.Ceramics International
17.Scalable electrolytic production of size-and-shape controlled In2O3nanoparticles for sintering high-performance IZO targets.Ceramics International
18.Lanthanideelements doped IZO semiconductor targets sputtered thin films as channel layers
in high mobility thin film transistors.Journalof Science: Advanced Materials and Devices
19.Tb doped IZO targets: Synergistic control of densification, microstructureand electrical properties.Ceramics International
20.Enhanced densification and conductivity of niobium and tantalum-codopedtin oxide targets sintered using novel smothering method.Ceramics International
21.Ding P, Song H, Wang C, et al. Dense and uniform Mo10W alloy prepared by combining a vacuum sintering process with a hot-pressing process[J]. Materials Science and Technology, 2024: 02670836241302687.
22.Li S, Yin H, Wang C, et al. Impact of Mg and La on the microstructure and properties of silver films used as reflective electrodes[J]. Journal of Materials Research and Technology, 2025.
23.Feng Y, Liu Z, Wang C, et al. Liquid-phase synthesis and evaluation of dispersed submicron silver powders[J]. Journal of Materials Science: Materials in Electronics, 2025, 36(23): 1457.
24.Guo J, He X, Song Z, et al. Nodule formation and mechanisms in atmospheric plasma sprayed SiAl alloy sputter targets[J]. Surface and Coatings Technology, 2025: 132432.
25. JiaqiangYang,XiaofeiZhang,XiaofengZhang,BingboNiu,FeifengWu,NingLuo,JilinHe,ChengduoWang,BinShan,QingkuiLi.Stable adsorption configuration searching in hetero-catalysis based on similar distribution and active learning.Journal of Catalysis, 2025,443, 115971.
26. Jinshi Dong*,Ting Li,Shengtong Li,Panpan Chang,Qianqian Jin,Jiaqiang Yang(共同通讯)*,Zhuangzhuang Lai*.Local Environment and Electronic Structure of Pt-TiO2Catalysts Define the Reactivity of CO Oxidation and C3H8 Combustion: the Crystal Phase of TiO2Determining.ACS Catalysis,2025, 15, 15794–15807.
27. Xiaofei Zhanga, Xiaofeng Zhanga, Xvdong Houa, Zicheng Zhoua, Bingbo Niuc, Xiaochao Wu*,Jiaqiang Yang(共同通讯)*, Chengduo Wangb, Qingkui Lib, Jilin He.Wetting Study of In and Sn Solders on AlSc Target and Cu Backboard Materials Based on Molecular Dynamics and First-Principles Calculation.Surfaces and Interfaces, 2025,74,107672.
28. Jinshi Dong*, Ting Li,Jiaqiang Yang*.The Synergetic Catalysts of Metal Single-Atoms Coupled with Nanoparticles: Structures, Function Mechanisms and Applications.Small2025, 21, e09721.
29. Jinshi Dong*,Hongli Yang, Shengtong Li, Panpan Chang,Jiaqiang Yang.Insights into Rh size-dependent reactivity of CO2 methanation over Rh–Al2O3catalysts.RSC Adv., 2025, 15, 24930
30.M. Chen, N. Luo, Z. Wang, Q. Liu, B. Wang, B. Niu, J. Yang, X. Wu, Q. Li, J. He, Surface modification of highly reflective Cu powder using Mo particles as modifiers for improving energy efficiency in laser additive manufacturing of Cu-Mo immiscible alloys, Journal of Manufacturing Processes 136 (2025) 251–266.(A类)
31.N. Luo, M. Chen, Z. Ding, B. Hai, B. Niu, X. Wu, D. Mei, Q. Li, J. He, Densification and property improvement of Mo-Cu immiscible alloys processed by repressing and re-sintering, International Journal of Refractory Metals and Hard Materials 130 (2025) 107131.(B类)
32.Q. Liu, N. Luo, Z. Fu, B. Niu, X. Wu, X. Wang, D. Mei, Q. Li, B. Song, J. He, Additive manufacturing of immiscible alloys: Breaking the preparation bottleneck and unlocking the property potential, Journal of Alloys and Compounds 1027 (2025) 180544.(B类)