取得成果:
1.发表文章
(1). Yuan H, Mears LLE, Su RX*, Valtiner M*. Recombinant lubricin enhances anti-adhesion, wear protection and lubrication properties of collagen II surface. Colloids and Surfaces B: Biointerfaces, 2022, 220, 112906.
(2). Yuan H, Cheng HW, Mears LLE, Huang RL, Su RX*, Qi W, He ZM, Valtiner M*. Lipid anchoring improves lubrication and wear resistance of collagen I matrix. Langmuir, 2021, 37: 13810–13815.
(3). Yuan H, Mears LLE, Wang YF, Su RX*, Valtiner M*. Lubricants for osteoarthritis treatment: Recent progress from natural to bioinspired and alternative strategies. Advances in Colloid and Interface Science, 2023, 311, 102814.
(4) Tang YW#, Yuan H#, Chen JP, Xing QG, Su RX*, Qi W, He ZM. Polydopamine-assisted fabrication of stable silver nanoparticles on optical fiber for enhanced plasmonic sensing. Photonic Sensors, 2020, 10 (2): 97-104.
(5) Yuan H, Jin B, Meng LY*. Effect of the SBA-15 template and KOH activation method on CO2 adsorption by N-doped polypyrrole-based porous carbons. Carbon Letters, 2018, 28:116-120.
(6) Yuan H, Meng LY*, Park SJ*. A review: synthesis and applications of graphene/chitosan nanocomposites. Carbon Letters, 2016, 17: 11-17.
(7) Yuan H, Meng LY*, Park SJ*. KOH-activated graphite nanofibers as CO2 adsorbents. Carbon Letters, 2016, 19: 99-103.
(8) Xia YQ, Zhang PQ, Yuan H, Su RX*, Qi W, He ZM. Sequential sandwich immunoassay for simultaneous detection in trace samples using single-channel surface plasmon resonance. Analyst, 2019, 144 (19): 5700-5705.
(9) Wieser V, Bilotto P, Ramach U, Yuan H, Schwenzfeier K, Cheng HW, Valtiner M*. Novel in situ sensing surface forces apparatus for measuring gold versus gold, hydrophobic, and biophysical interactions. Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 2021, 39 (2): 023201.
2.主持科研项目:
无
3.取得专利
(1). 基于胶原蛋白结合多肽改性透明质酸的关节注射制剂及其制备方法和应用,已授权.
(2). 一种基于胶原蛋白模拟肽改性透明质酸的关节注射制剂及其制备方法和应用,审中-实审.
(3). 一种基于多巴胺接枝两性离子聚合磷酸胆碱改性 I 型胶原蛋白的凝胶基质及其制备方法,审中-公开.
(4). 一种基于三嵌段聚合磷酸胆碱表面定向组装的 I 型胶原蛋白凝胶基质及其制备方法,审中-实审.
(5). 一种基于改性透明质酸修饰胶原蛋白基质的制备方法,审中-实审.
(6). 一种基于重组润滑素蛋白修饰胶原蛋白基质的制备方法,审中-实审.
(7). 一种基于透明质酸和润滑素蛋白协同修饰胶原蛋白的制备方法,审中-实审.
4 获奖
天津大学三好学生