遊正偉
發布人: 星禧   發布時間: 2018-05-21    浏覽次數:

遊正偉 (Zhengwei You)

(Male)

學位:博士 (Doctor)

職稱:教授 (Professor)

所屬部門:複合材料系(Department of Composite Materials

導師身份:博士生導師 (Doctoral supervisor)

職務(Position):系主任 (Department Chair)

研究主頁:http://pilab.dhu.edu.cn/zyou/



研究方向 (Research projects)

  1. 動态鍵智能高分子 (Smart polymers based on dynamic bonds)

  2. 功能彈性體 (Functional elastomers)

  3. 生物材料 (Biomaterials)

  4. 3D打印 (3D printing)

  5. 彈性電子 (Elastic electronics)


學習及工作經曆:

2019-            中國紡織工程學會柔性電子生物醫用紡織材料科研基地主任

2016-            bevictor伟德官网複合材料系主任

2013-            bevictor伟德官网bevictor伟德官网教授

2012-2013    拜耳材料科技亞太區新事業企劃部創新經理

2009-2012    匹茲堡大學生物工程系博士後/訪問研究助理教授

2007-2008    佐治亞理工生物醫學工程系博士後

2002-2007    中國科學院上海有機化學研究所博士

2000-2002    上海交通大學化學化工學院教師

1996-2000    上海交通大學化學化工學院本科


EDUCATION AND WORK EXPERIENCE

1996-2000 School of Chemistry and Chemical Engineering, B.S.

Shanghai Jiao Tong University, China

2000-2002 School of Chemistry and Chemical Engineering, Faculty.

Shanghai Jiao Tong University, China

2002-2007 Shanghai Institute of Organic Chemistry, Ph.D.

Chinese Academy of Sciences, China

2007-2008 Department of Biomedical Engineering, Postdoctoral Associate

Georgia Institute of Technology, USA

2009-2011 McGowan Institute of Regenerative Medicine, Postdoctoral Associate

Department of Bioengineering

University of Pittsburgh, USA

2011-2012 McGowan Institute of Regenerative Medicine, Visiting Research Assistant Professor

Department of Bioengineering

University of Pittsburgh, USA

2012-2013 New Business/New Technology, APAC Innovation Manager

Bayer MaterialScience

2013- College of Material Science & Engineering, Professor

Donghua University, China

State Key Lab of Modification of Chemical Fibers & Polymer Materials

2016- Chair of the Department of Composite Materials

Donghua University, China

2019- Director of Research Base of Textile Materials for Flexible Electronics and Biomedical Applications

China Textile Engineering Society


研究概述 (Summary of Research)

當前主要從事生物醫用彈性體和3D打印、及其在再生醫學和生物電子器件應用的研究。新材料研制上以分子工程學為基礎,着重從分子水平上設計新型的高分子生物材料,特别是生物相容的可降解的彈性體;通過精準控制材料的分子結構,結合新的分子設計和材料構築理念研制了一批力學、生物等性能優良的高分子材料;基于動态鍵設計具有自愈合、環境響應、形狀記憶等特殊性質的智能高分子。材料加工上結合現代加工技術,着力于3D打印,構建具有特定三維微納結構的材料,特别是實現了相對難于加工的熱固性材料的3D打印。材料應用上主要集中在兩個方面,一個是和醫學院校緊密合作,為解決心血管、骨、子宮、神經等組織再生修複的重大醫學問題提供新的解決途徑;另外一個是結合摩擦納米發電等新興電學原理和技術,構建彈性可拉伸電子器件,進而應用于身體體征監控和可穿戴設備等。發表SCI論文60多篇;其中第一/通訊作者在國際著名學術期刊發表論文包括:Nat. Commun.Adv. Mater. (2)Adv. Funct. Mater. (3)Mater. Horiz. (2)Nano Energy等。申請專利30多項,授權12項。工作被國家自然科學基金委員會出版的《Science Foundation in China》期刊、《中國科學報》頭版、國家新材料産業發展戰略咨詢委員會出版的《18年度新材料技術發展藍皮書》等專題報道。在歐洲材料研究學會會議、亞洲材料大會等重要學術會議上做主旨和邀請報告30多次。擔任中國醫藥教育協會醫用生物材料與技術專業委員會、中國機械工程學會生物制造工程分會和上海市生物醫學工程學會生物材料專業委員會的委員。

Current research involves smart polymers, 3D printing, biomaterials, regenerative medicine, and stretchable electronics. The research has been focusing on design and synthesis of a series of functional biomaterials with attractive bioactivity, bioelastomers with superior mechanical properties, dynamic bonds based smart polymers with intelligent properties such as self-healing and shape memory. Combined with advanced processing technologies especially 3D printing, these new materials have been efficiently applied for the regeneration of multiple tissues including heart, uterus and nerve, and wearable electronic devices. Dr. You has published more than 60 peer-reviewed papers, applied for more than 30 patents with 12 granted, and contributed one book chapter. The research has gotten funding support from various sides including National Natural Science Foundation of China, National High Technology Research and Development Program (863 program), and the Department of Defense USA. He has delivered more than 30 invited lectures in international and national conferences.


承擔的科研項目 (Funding Support)

  1. 國家自然科學基金重大項目(21991123),全氟醚生膠結構與性能關系研究

  2. bevictor伟德官网勵志計劃A類,功能生物彈性體

  3. 國家重點研發計劃(2018YFB1105600),血管化仿生關節多細胞精準3D打印技術與裝備的開發及應用

  4. 上海市自然科學基金(18ZR1401900),仿生雜化交聯策略構築強韌、動态共價生物彈性體

  5. 國家自然科學基金面上項目(21574019),強韌、手性和氫鍵交聯超分子聚(癸二酸甘油酯)骨架生物彈性體的研制

  6. 國家自然科學基金青年基金項目(21304015),新型成骨誘導性磷酸化聚酯聚氨酯間聚物納米纖維支架的設計制備及其在無細胞骨組織工程中的應用

  7. 上海市自然科學基金(13ZR1401200),新型生物活性系列功能化脂肪芳香共聚酯的設計、合成及測試

  8. 高等學校博士點基金(20130075120009),導向骨再生的功能化脂肪族芳香族共聚酯的設計、合成和體外測試

  9. 國家高技術研究發展計劃(863計劃)項目(2015AA020311),控釋生長因子和誘導眶骨再生的功能化智能材料的研發及臨床研究

  10. 國家自然科學基金重大國際合作研究項目(81320108010),基于微環境特點構建眼眶骨和粘膜複合體及其調控機制研究

  11. 國家自然科學基金(31271029),基于PSeD馬來酸酯生物活性控釋支架複合生長因子構建眼眶組織工程骨的研究

  12. 中央高校基本科研業務費專項資金重點計劃項目(2232014A3-01),基于微環境特點構建多功能生物材料修複眼眶骨

  13. bevictor伟德官网勵志計劃B類(B201303),功能生物材料的構建及其應用

  14. 拜耳材料科技委托研發項目,高性能***纖維的制備及其在複合闆材中的應用

  15. 甯夏伊品生物科技股份有限公司委托研發項目,生物基***性能測試,主持人

  16. 美國國防部“先進再生醫學”研究基金(W81XWH-10-1-0618),導向血管化骨再生的組織工程支架(Scaffolds for vascularized bone regeneration


主要論文 (Selected Publications)

    1. Shuo Chen, Lijie Sun, Xiaojun Zhou, Yifan Guo, Jianchun Song, Sihao Qian, Zenghe Liu, Qingbao Guan, Eric Meade Jeffries, Wenguang Liu, Yadong Wang, Chuanglong He, Zhengwei You*Mechanically and biologically skin-like elastomers for bio-integrated electronics, Nat. Commun. DOI : 10.1038/s41467-020-14446-2.

    2. Jianchun Song, Shuo Chen, Lijie Sun, Yifan Guo, Luzhi Zhang, Shuliang Wang, Huixia Xuan, Qingbao Guan, Zhengwei You* Mechanically and Electronically Robust Transparent Organohydrogel Fibers Adv. Mater. DOI: 10.1002/adma.201906994

    3. Huixia Xuan, Haoran Hu, Congying Geng, Jianchun Song, Yifan Shen, Dong Lei, Qingbao Guan, Shichang Zhao,Zhengwei You* Biofunctionalized chondrogenic shape-memory ternary scaffolds for efficient cell-free cartilage regeneration Acta Biomater. https://doi.org/10.1016/j.actbio.2020.01.015

    4. Jie Pan#, Jiajia Deng#, Yuan Luo, Liming Yu, Weihua Zhang, Xinxin Han, Zhengwei You*, Yuehua Liu*Thermosensitive Hydrogel Delivery of Human Periodontal Stem Cells Overexpressing Platelet-Derived Growth Factor-BB Enhances Alveolar Bone Defect Repair Stem Cells and Development 2020, 28 (24), 1620-1631.

    5. Liu, Z.#; Zhang, L.#; Guan, Q.; Guo, Y.; Lou, J.; Lei, D.; Wang, S.; Chen, S.; Sun, L.; Xuan, H.; Jeffries, E.; He, C.; Qing, F.-L.; You, Z.* Biomimetic materials with multiple protective functionalities Adv. Funct. Mater.2019, 29(28), 1901058.

    6. Zhang, L.#; Liu, Z.#; Wu, X.; Guan, Q.; Chen, S.; Sun, L.; Guo, Y.; Wang, S.; Song, J.; Jeffries, E.; He, C.; Qing, F.-L.; Bao, X.; You, Z.* A highly efficient self-healing elastomer with unprecedented mechanical properties Adv. Mater. 2019, 31(23), 1901402.

    7. Sun, L; Chen, S.; Guo, Y. Song, J.; Zhang, L.; Xiao, L.; Guan, Q.; You, Z.* Ionogel-based, highly stretchable, transparent, durable triboelectric nanogenerators for energy harvesting and motion sensing over a wide temperature range Nano Energy, 2019, 63, 103847.

    8. Yang, Y.#, Lei, D.#, Huang S., Yang Q., Li S., Qing, F.-L., Ye X.*, You, Z.*, Zhao, Q.* Hybrid electrospun rapamycin-loaded small-diameter vascular grafts effectively inhibit intimal hyperplasia Acta Biomater. 2019, 97, 321-332.

    9. Wang, S.#; Liu, Z.#; Guo, Y.; Song, J.; Lou, J.; Guan, Q.; He, C.; You, Z.* Strong, detachable, and self-healing dynamic crosslinked hot melt polyurethane adhesive Mater. Chem. Front. 2019, 3, 1833-1839.

    10. Lei, D.; Guo, Y.; Liu, Z.; Wang, D.; Yang, H.; Wang, S.; Xuan, H.; Shen, A.; Zhang, Lu.; Song, J.; Wang, S.; He, C.; Qing, Q.-L.; Xu, Y.*; Zhou, G.*, You, Z.* 4-axis printing microfibrous tubular scaffold and tra-cheal cartilage application Sci. China Mater. 2019, 62, 1910–1920.

    11. Guan, Q.; Gong, Y.; Lin, G.; Wang, J.; Tan, W.; Bao, D.; Liu, Y.; You, Z.; Sun, X.; Wen, Z.*; Pan, Y.* Highly efficient self-healable and dual responsive hydrogel-based deformable triboelectric nanogenerators for wearable electronics J. Mater. Chem. A, 2019, DOI: 10.1039/C9TA02711D.

    12. Ye, K.; Kuang, Z.; You, Z.; Morsi, Y.; Mo, X.* Electrospun Nanofiber for Tissue Engineering with Drugs Loading and Release Pharmaceutics 2019, 11, 182

    13. Yang. Y#; Lei, D.#; Huang, S.; Yang, Q.; Song, B.; Guo, Y.; Shen, A.; Yuan, Z.; Li, S.; Qing, F-L.; Ye, X.*; You, Z.*; Zhao, Q.* Elastic 3D printed hybrid polymeric scaffold improves cardiac remodeling after myocardial infarction Adv. Healthc. Mater. 2019, DOI: 10.1002/adhm.201900065.

    14. Xie, Y.; Lei, D.; Wang, S.; Liu, Z.; Sun, L.; Zhang, J.; Qing, F-L.; He, C.*; You. Z.* A biocompatible, biodegradable and functionalizable copolyester and its application in water-responsive shape memory scaffold ACS Biomater. Sci. Eng. 2019, DOI: 10.1021/acsbiomaterials.8b01337.

    15. Lei, D.; Yang, Y.; Liu, Z.; Yang, B.; Gong, W.; Chen, S.; Sun, L.; Song, B.; Xuan, H.; Mo, X.; Sun, B.; Li, S.; Yang, Q.; Huang, S.; Chen, S.; Ma, Y.; Liu, W.; He, C.; Zhu, B.; Jeffries, E.; Qing, F-L.; Ye, X.*; Zhao, Q.*; You, Z.* 3D printing of biomimetic vasculature for tissue regeneration Mater. Horiz. 2019, DOI: 10.1039/C9MH00174Cs.

    16. Xiao, B.#; Yang, W. #; Yang, W.; Lei, D.; Huang, J.; Yin, Y.; Zhu, Y.; You, Z.*; Wang, F.*; Sun, S.* PGS scaffolds promote the in vivo survival and directional differentiation of bone marrow mesenchymal stem cells restoring the morphology and function of the wounded rat uterus Adv. Healthc. Mater. 2019, DOI 10.1002/adhm.201801455. (#Co-first author)

    17. Zhu, J.; Xia, K.; Yu, W.; Wang, Y.; Hua, J.; Liu, B.; Gong, Z.; Wang, J.; Xu, A.; You, Z.; Chen, Q.; Li, F.; Tao, H.; Liang, C.*Sustained release of GDF5 from a designed coacervate attenuates disc degeneration in a rat model Acta Biomater. 2019, 86, 300-311.

    18. Chen, H.; Zhang, J.; Zhou, X.; Yang, S.; Zhang Q.; Wang, Wang, W.; You, Z.; Peng, C.; He, C.* Merging Metal Organic Framework with Hollow Organosilica Nanoparticles as a Versatile Nanoplatform for Cancer Theranostics, Acta Biomater. 2019, 86, 406-415.

    19. Guo, X.; Zhu, J.; Zhang, H.; You, Z.; Morsi, Y.; Mo, X.*, Zhu, T. Facile preparation of a controlled-release tubular scaffold for blood vessel implantation, J. Colloid Interf. Sci.2019, 539, 351-360

    20. Sun, L.; Wang, M.; Chen, S.; Sun, B.; Guo, Y.; He, C.; Mo, X.; Zhu, B.; You, Z.*; Molecularly engineered metal-based bioactive soft materials – neuroactive magnesium ion/polymer hybrids Acta Biomater.2019, 85, 310-319

    21. Lei, D.; Yang, Y.; Chen, S.; Liu, Z.; Song, B.; Shen, A.; Yang, B.; Li, S.; Yuan, Z.; Qi, Q.; Sun, L.; Guo, Y.; Zuo, H.; Huang, S.; Yang, Q.; Mo, X.; He, C.; Zhu, B.; Jeffries, E.; Qing, F-L.; Ye, X.*; Zhao Q.*; You, Z.* A general strategy of 3D printing thermosets for diverse applications Mater. Horiz., 2019, 6, 394 - 404.

    22. Chen, S.#; Huang, T.#; Zuo, H.; Qian, S.; Guo, Y.; Sun, L.; Lei, D.; Wu, Q.; Zhu, B.; He, C.; Mo, X.; Jeffries, E.; Yu, H.; You, Z.* A single integrated 3D-printing process customizes elastic and sustainable triboelectric nanogenerators for wearable electronics Adv. Funct. Mater.2018, 28, 1805108. (Back Cover)

    23. Guo, Y.#; Lv, Z.#; Huo, Y.; Sun, L.; Chen, S.; Liu, Z.; He, C.; Bi, X.; Fan, B. You Z.*A biodegradable functional water-responsive shape memory polymer for biomedical applications J. Mater. Chem. B, 2018, DOI: 10.1039/C8TB02462F

    24. Wang, W.; Nie, W.; Zhou, X.; Feng, W.; Chen, L.; Zhang, Q.; You, Z.; Shi, Q.; Peng, C.; He, C.; Fabrication of heterogeneous porous bilayered nanofibrous vascular grafts by two-step phase separation technique Acta Biomater.2018, 79, 168-181.

    25. Liu, Z.; Huang, J.; Sun, L.; Lei, D.; Cao, J.; Chen, S.; Shih, W.; Qing, F.*; You, Z.* PPC-based reactive hot melt polyurethane adhesive (RHMPA) – efficient glues for multiple types of substrates. Chinese J. Polym. Sci. 2018, 36, 58-64.

    26. Fang, J.; Zhao, H.; Liu, Q.; Zhang, W.; Gu, J.; Su, Y.; Abbas, W.; Su, H.; You, Z.; Zhang, D.* AgBr/diatomite for the efficient visible-light-driven photocatalytic degradation of Rhodamine B J. Nanopart. Res. 2018, 20, 61.

    27. Geng, Z.; Yang, S.; Zhang, L.; Huang, Z.; Pan, Q.; Li, J.; Weng, J.; Bao, J.; You, Z.; He, Y.; Zhu, B.* Self-extinguishing resin transfer molding composites using non-firee-retardant epoxy resin Materials 2018, 11, 2554.

    28. Wang, M.#; Lei, D.#; Liu, Z.#; Chen, S.; Sun, L.; Lv, Z.; Huang, P.; Jiang, Z.*; You, Z.* A poly(glycerol sebacate) based photo/thermo dual curable biodegradable and biocompatible polymer for biomedical applications. J. Biomat. Sci. – Polym. E. 2017, 28, 1728-1739.

    29. Ding, Y.#; Sun, Y. #; Lv, Z.#; Sun, H.; Bi, X.; Lu, L.; Zhou, H.; You, Z.; Wang, Y.; Ruan, J.*; Gu, P.*; Fan, X.* Poly (fumaroyl bioxirane) maleate: A potential functional scaffold for bone regeneration. Mater. Sci. and Eng.: C. 2017, 76, 249-259. (#Co-first author).

    30. Wei, W.#; Li, J.#; Chen, S.#; Chen, M.; Xie, Q.; Sun, H.; Ruan, J.; Zhou, H.; Bi, X.; Zhuang, A.; You, Z.*; Gu, P.*; Fan, X.* In vitro osteogenic induction of bone marrow mesenchymal stem cells with a decellularized matrix derived from human adipose stem cells and in vivo implantation for bone regeneration. J. Mater. Chem. B, 2017, 5, 2468-2482. (#Co-first author).

    31. Chen, S.; Bi, X.; Sun, L.; Gao, J.; Huang, P.; Fan, X.; You, Z.*; Wang, Y.* Poly(Sebacoyl Diglyceride) Cross-Linked by Dynamic Hydrogen Bonds: A Self-Healing and Functionalizable Thermoplastic Bioelastomer. ACS Appl. Mater. Interfaces 2016, 8 (32), 20591–20599.

    32. Ni, N.#; Ji, J.#; Chen, S.#; Zhang, D.; Wang, Z.; Shen, B.; Guo, C.; Zhang, Y.; Wang, S.; Fan, X.; You, Z.*; Luo, M.*; Gu, P.*Poly(1,3-propylene sebacate) and poly(sebacoyl diglyceride): a pair of potential polymers for the proliferation and differentiation of retinal progenitor cells Macromol. Biosci. 2016, 16, 1334-1347.

    33. Wang, S.; Jeffries, E.; Gao, J.; Sun, L.;You, Z.*; Wang. Y.* Polyester with pendent acetylcholine-mimicking functionalities promotes neurite growth. ACS Appl. Mater. Interfaces, 2016, 8(15), 9590-9599.

    34. Huang, P.; Bi, X.; Gao, J.; Sun, L.; Wang, S.; Chen, S.; Fan, X.*; You, Z.*; Wang. Y.* Phosphorylated poly(sebacoyl diglyceride) - a phosphate functionalized biodegradable polymer for bone tissue engineering. J. Mater. Chem. B, 2016, 4(12), 2090-2101 (Front cover).

    35. Gong, W.#; Lei, D.#; Li, S.; Huang, P.; Qi, Q.; Sun, Y.; Zhang, Y.; Wang, Z; You, Z.*; Ye, X.*; Zhao, Q.* Hybrid small-diameter vascular grafts: Anti-expansion effect of electrospun poly ε-caprolactone on heparin-coated decellularized matrices. Biomaterials 2016, 76, 359-370.

    36. Gong, W.; Li, S.; Lei, D.; Huang, P.; Yuan, Z.; You, Z.; Zhao, Q.*; Ye, X.* Tissue-engineered mitral valve chordae tendineae: biomechanical and biological characterization of decellularized porcine chordae. J. Mech. Behav. Biomed. Mater. 2015, 56, 205-17.

    37. Xie, Q.; Wang, Z.; Huang, Y.; Bi, X .; Zhou, H.; Lin, M.; Yu, Z.; Wang, Y.; Ni, N.; Sun, J.; Wu, S.; You, Z.; Guo, C.; Sun, H.; Wang, Y.; Gu, P.*; Fan, X.*, Characterization of human ethmoid sinus mucosa derived mesenchymal stem cells (hESMSCs) and the application of hESMSCs cell sheets in bone regeneration. Biomaterials 2015, 66, 67-82.

    38. Bi, X. #; You, Z.#; Gao, J.; Fan, X.*; Wang, Y.*A functional polyester carrying free hydroxyl groups promotes the mineralization of osteoblast and human mesenchymal stem cell extracellular matrix. Acta Biomater. 2014, 10(6), 2814-23. (#Co-first author).

    39. Deng, Y.; Bi, X.; Zhou, H.; You, Z.; Wang, Y.; Gu, P.; Fan, X.*Repair of critical-sized bone defects with anti-miR-31-expressing bone marrow stromal stem cells and poly(glycerol sebacate) scaffolds. Eur. Cells Mater. 2014, 27, 13-25.

    40. Chen, J.; You Z.; Qing, F.* Total synthesis of γ-trifluoromethylated analogs of goniothalamin and their derivatives. J. Fluorine Chem. 2013, 155, 143-150.

    41. Yang, Y.; You, Z.; Qing, F.* Design and synthetic investigation toward gem-difluoromethylenated fostriecin analogue. Acta Chim. Sinica. 2012, 70, 2323-2336.

    42. You, Z.; Wang, Y.*A versatile synthetic platform for a wide range of functionalized biomaterials. Adv. Funct. Mater. 2012, 22, 2812-2820.

    43. You, Z.;Bi, X.; Wang, Y.*Fine control of polyester properties via epoxide ROP using monomers carrying diverse functional groups. Macromol. Biosci. 2012, 12, 822-829.

    44. You, Z.; Bi, X.; Fan, X.*; Wang, Y.*A functional polymer designed for bone tissue engineering. Acta Biomater. 2012, 8, 502-510.

    45. You, Z.; Bi, X.; Jeffries, E. M.; Wang, Y.* A biocompatible, metal-free catalyst and its application in microwave-assisted synthesis of functional polyesters. Polym. Chem. 2012, 3, 384-389.

    46. You, Z.; Cao, H.; Gao, J.; Paul, S. H.; Day, B. W.; Wang, Y.* A functionalizable polyester with free hydroxyl groups and tunable physiochemical and biological properties. Biomaterials 2010, 31, 3129-3138.

    47. Xie, Y.; Xu, X.; Yue, X.; You, Z.; Qing, F.* Synthesis of gem-difluoromethylenated goniodiol. Chin. J. Org. Chem. 2008, 28, 283-287.

    48. Yang, Y.; Xu, J.; You, Z.; Xu, X.; Qiu, X.; Qing, F.*Synthesis of 3΄,3΄-difluoro-2΄-hydroxymethyl-4΄,5΄-unsaturated carbocyclic nucleosides. Org. Lett. 2007, 9, 5437-5440.

    49. Wang, B.; Jiang Z.; You, Z.; Qing, F.* Total synthesis of trifluoromethylated analogs of macrosphelide A. Tetrahedron 2007, 63, 12671-12680.

    50. Xu, X.; You, Z.; Zhang, X.; Qing, F.* Synthesis of 3-deoxy-3,3-difluoro-D-ribohexose from gem-difluorohomoallyl alcohol. J. Fluorine Chem. 2007, 128, 535-539.

    51. You, Z.; Jiang, Z.; Wang, B.; Qing, F.* An efficient and general route to gem-difluoromethylenated α, β-unsaturated δ-lactones: high enantioselective synthesis of gem-difluoromethylenated goniothalamins. J. Org. Chem. 2006, 71, 7261-7267.

    52. You, Z.; Zhang, X.; Qing, F.* Stereocontrolled synthesis of gem-difluoromethylenated goniodiols and goniothalamin epoxides based on ring-closing metathesis. Synthesis, 2006, 15, 2535-2542.

    53. You, Z.; Wu, Y.; Qing, F.* Synthesis of gem-difluoromethylenated massoialactone by ring-closing metathesis. Tetrahedron Lett. 2004, 45, 9479-9481.


專利 (Patent)

  1. Chu, H.; Wang, Y.;You, Z. Polyesters, methods of making polyesters and uses therefore. 國際發明專利,申請号:US 13/522,996,國際公開号:WO 2011/091411 A2, 專利号US9023972 B2

  2. 遊正偉、黃鵬,一種可降解磷酸化材料及其制備方法和成骨應用,中國發明專利,授權專利号:ZL201510271968.2

  3. 遊正偉、王少飛、陳碩、谷平、倪妮,一種聚(13-丙二醇-癸二酸酯)在制備視網膜神經細胞載體中的應用,中國發明專利,授權專利号:201510325707.4

  4. 遊正偉、陳碩、王少飛、谷平、倪妮,一種聚(癸二酰基甘油二酯)在制備視網膜神經細胞載體中的應用,中國發明專利,授權專利号:201510323993.0

  5. 遊正偉、黃鵬、王少飛、谷平、範先群,一種用于骨缺損修複的多孔支架,中國實用新型專利,授權專利号:ZL201506277431

  6. 遊正偉、黃鵬、王少飛,一種易功能化易加工的超分子生物彈性體及其制備方法,中國發明專利,授權專利号:ZL201510362569.7

  7. 遊正偉、黃鵬、趙強、葉曉峰、王敏、龔文輝,一種可降解光固化醫用粘合劑及其制備和應用,中國發明專利,授權專利号:ZL201510992697X

  8. 遊正偉、王少飛,一種可降解主鍊季铵鹽型聚陽離子及其制備方法,中國發明專利,授權專利号:ZL2015109606083

  9. 王少飛、遊正偉、黃鵬、褚江、陳碩、耿聰穎、王敏,一種血管修複裝置,中國發明專利,授權專利号:ZL2015102705637

  10. 遊正偉、謝陽芬、王少飛,一種功能化脂肪芳香共聚酯及其制備方法,中國發明專利,授權專利号:201611065565.3

  11. 遊正偉、範先群、畢曉萍、谷平、郭一凡, 一種用于眼眶骨缺損修複的塞型多孔支架, 中國實用新型專利,授權專利号:ZL201621234052.6

  12. 遊正偉王少飛、陳勵捷,一種複合結構小口徑管狀多孔支架及其制備方法,中國發明專利,申請号:201610396911.X

  13. 遊正偉、王少飛,一種用于與粉體複合的聚氨酯膠水,中國發明專利,申請号:201611096556.0

  14. 耿聰穎、遊正偉一種聚(癸二酸甘油二酯)的應用,中國發明專利,申請号:2017100604310

  15. 遊正偉、梁嘉輝,一種功能化聚酯聚氨酯間聚物及其制備和應用,中國發明專利,申請号:2017102372676

  16. 遊正偉、郭一凡,一種手性聚(癸二酰基甘油二酯)的制備方法,中國發明專利,申請号:201710244314X

  17. 遊正偉、軒慧霞、耿聰穎,一種PPS/PGS複合材料形狀記憶彈性體的制備方法,中國發明專利,申請号:2017102490672

  18. 遊正偉、耿聰穎、軒慧霞,一種聚(癸二酰基甘油二酯)形狀記憶彈性體的制備方法,中國發明專利,申請号:2017102492998

  19. 遊正偉、雷東,一種多級結構仿生血管網絡組織工程支架的制備方法,中國發明專利,申請号:2017102851026

  20. 遊正偉、雷東,一種具有多級孔隙結構的熱固性彈性體組織工程支架的制備方法,中國發明專利,申請号:201710348151X

  21. 遊正偉、呂姿穎,一種PFB水響應形狀記憶組織工程支架及其制備方法,中國發明專利,申請号:20170570540.7

  22. 遊正偉呂姿穎,一種PFOE水響應形狀記憶組織工程支架及其制備方法,中國發明專利,申請号:201710571655.8

  23. 遊正偉劉增賀,一種聚碳酸亞丙酯基濕固化聚氨酯熱熔膠及其制備方法,中國發明專利,申請号:2017102963873

  24. 遊正偉、陳碩,一種仿生增韌生物彈性體及其制備方法,中國發明專利,申請号:2017103588663

  25. 遊正偉黃鵬、王少飛,一種用于促進損傷子宮恢複的PGS/BMSCs複合支架及其制備方法,中國發明專利,申請号:201710787174

  26. 遊正偉、呂姿穎,一種功能化聚酯及其三維多孔支架以及制備方法,中國發明專利,申請号:201810161856.5

  27. 遊正偉、張璐之、劉增賀,一種自修複聚氨酯及其制備方法,中國發明專利,申請号:2018115820675

  28. 遊正偉、軒慧霞、宋建春、樓佳銘、左涵,一種具有生物活性的自愈合形狀記憶多孔支架及其制備方法和應用,2018114730192


合作者 (Collaborators):

  • 王亞冬教授(Prof. Yadong Wang)

美國康奈爾大學生物醫學工程學院終身講席教授

McAdam Family Foundation Professor of Heart Assist Technology

Meinig School of Biomedical Engineering

Cornell University, USA

https://www.engineering.cornell.edu/faculty-directory/yadong-wang 

  • 劉建德院士 (Prof. Alan Kin Tak LAU)

澳大利亞斯威本科技大學副校長

歐洲科學院院士,

歐洲科學與藝術院院士

英國機械工程師學會國際副會長

Fellow of European Academy of Sciences

Fellow of European Academy of Sciences and Arts

International Vice President of The Institution of Mechanical Engineers (IMechE)

Pro Vice-Chancellor (International Research Development)

Faculty of Science, Engineering and Technology

Swinburne University of Technology, Australia

Wikipedia: https://en.wikipedia.org/wiki/Alan_Kin-Tak_Lau

Google Citation: https://scholar.google.com/citations?hl=en&user=JK_XY6YAAAAJ

Research Impact:  http://www.swinburne.edu.au/research/research-impact/ 

  • 範先群教授(Prof. Xianqun Fan

上海交通大學醫學院黨委書記

第五屆亞太地區眼整形外科學會主席

President of School of Medicine, Shanghai Jiao Tong University

Chairman of the 5th Asia-Pacific Institute of Ophthalmology and Plastic Surgery 

  • 趙強教授(Prof. Qiang Zhao

上海交通大學醫學院附屬瑞金醫院副院長

Vice President, Ruijin Hospital,

School of Medicine, Shanghai Jiao Tong University  

  • 科思創公司(原拜耳材料科技)

Covestro (Former Bayer MaterialScience (China) Co., Ltd.)

https://www.covestro.cn/

 

招生:

本課題組現有教授一名,副教授一名,講師兩名。研究經費充裕,實驗條件一流,學術思想活躍,團隊融洽奮進;熱忱歡迎有志學子攻讀碩士、博士研究生、和從事博士後研究(年薪稅前25-50萬)!優秀研究生可以推薦到澳大利亞合作培養,同時獲得澳大利亞斯威本科技大學博士學位。



    


























































 
 
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