代表性论文专著
近五年代表性论文
[1] Xiang Li, Xiang-Yu Ma, Ya-Fei Feng, Zhen-Sheng Ma, Jian Wang, Tian-Cheng Ma, Wei Qi, Wei Lei, Lin Wang. Osseointegration of chitosan coated porous titanium alloy implant by reactive oxygen species-mediated activation of the PI3K/AKT pathway under diabetic conditions. Biomaterials 2015; 36: 44-54. (IF: 10.317, 他引75次)WOS: 000345728200005
[2] Xiang Li*, Xiang-Yu Ma, Ya-Fei Feng, Lin Wang, Chengtao Wang. A novel composite scaffold consisted of porous titanium and chitosan sponge for load-bearing applications: fabrication, characterization and cellular activity. Composites Science and Technology 2015; 117: 78-84. (IF: 7.094, 他引20次)WOS: 000362132900011
[3] Miao Guo, Xiang Li*. Development of porous Ti6Al4V/chitosan sponge composite scaffold for orthopedic applications. Materials Science and Engineering C 2016; 58: 1177–1181. (IF: 5.880,他引11次)WOS: 000364247500139
[4] Y.Z. Xiong, W. Wang, R. Gao, H. Zhang, L. Dong, J. Qin, B. Wang, W. Jia, X. Li*, Fatigue behavior and osseointegration of porous Ti-6Al-4 V scaffolds with dense core for dental application, Mater. Des. (2020) 108994. (IF: 6.289,他引5次)WOS: 000576531900002
[5] Y.Z. Xiong, R.N. Gao, H. Zhang, L.L. Dong, J.T. Li, X. Li*, Rationally designed functionally graded porous Ti6Al4V scaffolds with high strength and toughness l via selective laser melting for load-bearing orthopedic applications, J. Mech. Behav. Biomed. Mater. 104 (2020) 103673. (IF: 3.485,他引19次)WOS: 000525737000055
[6] X. Li*, Y.Z. Xiong, H. Zhang, R.N. Gao, Development of functionally graded porous titanium/silk fibroin composite scaffold for bone repair, Mater. Lett. 282 (2021) 128670.(IF: 3.204, 他引2次 ) WOS: 000603349700020
[7] Wang Y, Li X*. An accurate finite element approach for programming 4D-printed self-morphing structures produced by fused deposition modeling. Mechanics of Materials, 2020, 151: 103628. (IF: 2.993, 他引3次)WOS: 000600879300005
[8] Wang Y, Li X*. 4D printing reversible actuator with strain self-sensing function via structural design. Composites Part B: Engineering, 2021, 211(15): 108644. (IF: 7.635)
[9] Jiangtao Zheng, Hang Zhang, Xiang Li*. Effect of ternary particles size distribution on rheology of slurry and microstructure of DLP printed ZTA ceramic, Materials Chemistry and Physics 2021 124656.
[10] Yanan Wang, Xiang Li*, 4D-printed bi-material composite laminate for manufacturing reversible shape-change structures, Composites Part B: Engineering 2021; 219: 108918.
[11] Xiang Li*, Hang Zhang, Yifan Shen, et al. Fabrication of porous β-TCP/58S bioglass scaffolds via top-down DLP printing with high solid loading ceramic-resin slurry, Materials Chemistry and Physics 2021; 267: 124587.
[12] Lanlan Dong, Ziheng Bu, Yinze Xiong, Hang Zhang, Jinhui Fang, Hongxing Hu, Zhongtang Liu, Xiang Li*. Facile extrusion 3D printing of gelatine methacrylate/Laponite nanocomposite hydrogel with high concentration nanoclay for bone tissue regeneration, International Journal of Biological Macromolecules 2021; 188: 72–81.
[13] Hang Zhang, Hao Zhang, Yinze Xiong, Lanlan Dong, Xiang Li*. Development of hierarchical porous bioceramic scaffolds with controlled micro/nano surface topography for accelerating bone regeneration, Materials Science and Engineering C: Materials for Biological Applications 2021; 130: 112437
[14] Hang Zhang, Yinze Xiong, Lanlan Dong, Yifan Shen, Hongxing Hu, Hong Gao, Shichang Zhao, Xiang Li*. Microstructural, mechanical properties and strengthening mechanism of DLP produced β-tricalcium phosphate scaffolds by incorporation of MgO/ZnO/58S bioglass, Ceramics International 2021; 47: 25863-25874.
[15] Yinze Xiong, Zhengzhe Han, Jiawei Qin, Lanlan Dong, Hang Zhang, Yanan Wang, Huajiang Chen, Xiang Li*. Effects of porosity gradient pattern on mechanical performance of additive manufactured Ti-6Al-4V functionally graded porous structure, Materials & Design 2021; 208: 109911