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個人簡介

青島科技大學高分子學院教授、博士生導師,主要從事高分子材料的結構與性能、高分子復合材料的相態與界面、高分子功能材料的制備及應用等研究。迄今,在Energy & Environmental Science, Nano Letters, Chemical Communications, Macromolecules, Biomacromolecules, Polymer, Polymer Chemistry, Journal of Materials Chemistry A, ACS Applied Materials & Interfaces, Composites Part A, Composites Science and Technology等知名期刊發表論文80余篇.

工作經歷

2015.04-至今    青島科技大學高分子學院 教授 博士生導師

2004.07-2012.12  南昌大學材料學院 講師

教育背景

2011.03-2015.03 先后在美國麻省大學高分子系(Thomas P. Russell教授)、華盛頓大學生物工程系(Kim A. Woodrow教授)從事博士后研究工作

2006.09-2009.06 中國科學院化學研究所,獲博士學位(導師:韓志超教授)

1997.09-2004.06 蘭州大學化學化工學院,獲學士、碩士學位(導師:柳明珠教授)

發表論文

(2015年以來)

1. Achieving modulus matching and enhanced fatigue resistance in chloroprene rubber/trans-1, 4-poly (isoprene-co-butadiene) nanocomposites: A study on the balance between crosslinking and crystallinity in dispersed domains. Composites Science and Technology 2025,266,111175.(通訊作者)

2. High-performance honeycomb porous microwave absorbers: Gelatin-based carbon nanotube/nickel nanowire aerogels. Journal of Alloys and Compounds 2025,1010,177341.(通訊作者)

3. Hierarchical hybrid conductive powders derived from Ag-deposited Janus particle/MWCNT nanocomposites for enhanced microwave absorption. Advanced Powder Technology 2025,36,104861.(通訊作者)

4. Design and optimization of superhydrophobic coatings based on multi-scale ZIF-8: Synthesis, fluorination, and mechanical stability enhancement. Materials Today Chemistry 2025,46,102696.(通訊作者)

5. Accelerated Phase Transition of Polybutene-1 in Polybutene-1/Polypropylene Blends Induced by Poly((butene-1)-block-propylene) Copolymers. Macromolecules 2024,57,11130.(通訊作者)

6. A multi-responsive actuator with sensing capability based on poly (N-isopropyl acrylamide)/poly (sodium acrylate) Janus hydrogels. Composite Structures 2024,339,118141.(通訊作者)

7. Metal deactivator-suppressed degradation of trans-1, 4-poly (isoprene-co-butadiene) rubber. Polymer 2024,290,126505.(通訊作者)

8. Enhancing Thermal Conductivity in Polymer Composites through Molding-Assisted Orientation of Boron Nitride. Polymers 2024,16,1169.(通訊作者)

9.用于柔性超級電容器的非均相碳改性碳布電極. 化學工程 2024,52,27.(通訊作者)

10. Flexible multi-modal sensors based on CNT hollow spheres/PDMS composites for human motion recognition and colloid concentration detection. Composites Science and Technology 2023,237,110005.(通訊作者)

11. Accelerated crystallization and crystal-crystal transition of PB induced by PP with optimized content. Polymer Testing 2023,129,128095.(通訊作者)

12. 等規聚丁烯-1與等規聚丙烯間界面的結構與性能研究. 高分子學報 2023,54,1891.(通訊作者)

13. Multi-heterostructure composites of Fe3O4 coated Janus nanoparticles and MWCNTs with high microwave absorption. Polymer Testing 2023,123,108056.(通訊作者)

14. Stretching-induced changes in the crystal structure of isotactic polybutene-1: Temperature and stretching speed dependence. Polymers for Advanced Technologies 2022,33,4206.(通訊作者)

15. Interfacial structure and properties of isotactic polybutene-1/polyethylene blends. e-Polymers 2022,22,505.(通訊作者)

16. Three-dimensional numerical simulation on fiber orientation of short-glass-fiber-reinforced polypropylene composite thin-wall injection-molded parts simultaneously accounting for wall slip effect and pressure dependence of viscosity. Journal of Applied Polymer Science 2022,139,e53129.

17. A hierarchical porous carbon-nanotube skeleton for sensing films with ultrahigh sensitivity, stretchability, and mechanical compliance. Journal of Materials Chemistry A 2021,9,4317.(通訊作者)

18. High-Performance Stretchable Strain Sensor Based on Ag Nanoparticles Sandwiched Between Two 3D-Printed Polyurethane Fibrous Textiles. Advanced Electronic Materials 2021,2001242. (通訊作者)

19. Hierarchical porous carbon nanotube skeleton supported polydimethylsiloxane composite with electrical continuity for high-performance electromagnetic shielding. Advanced Materials Technologies 2021,2100013. (通訊作者)

20. Differential Polymorphic Transformation Behavior of Polybutene-1 with Multiple Isotactic Sequences. Chinese Journal of Polymer Science 2020,2,164. (通訊作者)

21. Inorganic-organic hybrid Janus fillers for improving the thermal conductivity of polymer composites. ACS Applied Materials & Interfaces 2019,13,12190.(通訊作者)

22. Amphiphilic Janus nanosheets by grafting reactive rubber brushes for reinforced rubber materials. Polymer Chemistry 2019,10,5184.(通訊作者)

23. Polymorphism analysis of trans-1,4-polyisoprene during melt-recrystallization. Polymer Testing 2019,80,106120.(第一/通訊作者)

24. 鹽介質環境對苯胺聚合、產物結構及導電性能的影響. 中國科學:化學 2019,10,1282.(通訊作者)

25. High-performance isotactic poly(1-butene)/isotactic polypropylene alloys with in-situ synthesized poly(propylene-co-butene). Industrial & Engineering Chemistry Research 2019,16,6919.(第一作者)

26. Multi-block copolymer as reactive multifunctional compatibilizer for NR/BR blends with desired network structures and dynamical properties: Compatibility, co-vulcanization and filler dispersion. Composites Part A: Applied Science and Manufacturing 2019,116,197.(通訊作者)

27. Enthalpy-Enhanced Janus nanosheets for trapping nonequilibrium morphology of immiscible polymer blends. Macromolecules 2018,51,2615.(第一作者)

28. Isothermal crystallization of Trans-1,4-polyisoprene from solutions: Kinetic parameters and crystal modification. Polymer 2018,139,36.(通訊作者)

29. Confirmation on the compatibility between cis-1,4-polyisoprene and trans-1,4-polyisoprene. Polymer 2018,153,271.(通訊作者)

30. Synthesis, chain structures and phase morphologies of trans-1,4-poly(butadiene-co-isoprene) copolymers. Polymer 2018,156,148.(通訊作者)

31. Fractionated and confined crystallization of polybutene-1 in immiscible polypropylene/polybutene-1 blends. Chinese Journal of polymer science 2018,7,859.(通訊作者)

32. SSBR/TPI共混體系中TPI的結晶、成核及動力學研究. 高等學校化學學報 2018,5,1091.(通訊作者)

33. Janus粒子的表面改性及其對共混聚合物的增容性能研究. 中國科學:化學 2018,5,527.(通訊作者)

34. Morphology evolution in solution polymerized styrene-butadiene rubber (SSBR) / trans-1,4-polyisoprene  (TPI) blends: SSBR particle formation, TPI crystal nucleation, growth and polymorphic form. Polymer 2017,117,11.(第一作者)

35. Three-dimensional hierarchical metal oxide-carbon electrode materials for highly efficient microbial electrosynthesis. Sustainable Energy & Fuels 2017,1,1171.(通訊作者)

36. Retardation of cold flow in immiscible rubber blends by tailoring their microstructures. Polymer International 2017,66,1473.(第一作者)

37. Three-dimensional numerical simulation of total warpage deformation for short glass fiber reinforced polypropylene composite injection-molded parts using coupled FEM. Journal of Polymer Engineering 2017,5,493.(通訊作者)

38. Transition in Dynamics as Nanoparticles Jam at the Liquid/Liquid Interface. Nano Letters 2017,17, 6855.

39. Synthesis of Janus rubber hybrid particles and interfacial behavior. Macromolecules 2016,6,2238.(第一作者)

40. Fabrication and chemical crosslinking of electrospun trans-polyisoprene nanofiber nonwoven. Chinese Journal of Polymer Science 2016,34,697.(第一作者)

41. Solvent vapor annealing induced polymorphic transformation of polybutene-1. Chinese Journal of Polymer Science 2016,34,1141.(通訊作者)

42. Sequential two-stage polymerization for synthesis of isotactic polypropylene/isotactic polybutene-1 alloys: composition, morphology and granule growing mechanism. Polymer Chemistry 2015,6,3315.

43. Polymorphic crystallization behaviors in cis-1,4-polyisoprene/trans-1,4-polyisoprene blends. Polymer 2015,80,259.

44. Construction of PRP-containing nanofibrous scaffolds for controlled release and their application to cartilage regeneration. Journal of Materials Chemistry B 2015,3,581.(第一作者)

(2015年以前)

45. Human urine-derived stem cells in combination with polycaprolactone/gelatin nanofibrous membranes enhance wound healing by promoting angiogenesis. Journal of Translational Medicine 2014,1,274. (通訊作者)

46. Improved cathode materials for microbial electrosynthesis. Energy& Environmental Science 2013,6,217. (第一作者)

47. A route to rapid carbon nanotube growth. Chemical Communications 2013,49,5159. (第一作者)

48. Improved cathode for high efficient microbial-catalyzed reduction in microbial electrosynthesis cells. Physical Chemistry Chemical Physics 2013,15,14290. (第一作者)

49. Immobilization of radionuclides on poly(lactide-co-glycolide) nanofibrous membranes. RSC Advances 2013,3,12398. (第一作者)

50. Homo- and copolymerization of norbornene and 5-norbornene-2-yl acetate with bis-(β-ketonaphthylamino)palladium(II)/B(C6F5)3 catalytic system. Polymers for Advanced Technologies 2012,23,483.

51. Nickel(II) complexes bearing the bis(β-ketoamino) ligand for the copolymerization of norbornene with a higher 1-alkene. Journal of Applied Polymer Science 2012,2,1323.

52. Characterization of the mechanical properties, crystallization, and enzymatic degradation behavior of poly(butylene succinate-co-ethyleneoxide-co-DL-lactide) copolyesters. Journal of Applied Polymer Science 2012,4,2272.

53. Electrospinning and characterization of konjac glucomanan/chitosan nanofibrous scaffolds favoring the growth of bone mesenchymal stem cells. Carbohydrate Polymers 2011,85,681.(第一/通訊作者)

54. Bilayer porous scaffold based on poly-(epsilon-caprolactone) nanofibrous membrane and gelatin sponge for favoring cell proliferation. Applied Surface Science 2011,5,1670. (通訊作者)

55. Copolymerization of norbornene and n-butyl methacrylate catalyzed by bis-(β-ketoamino)nickel(II)/?(C6F5)3 catalytic system. Polymer Bulletin 2011,9,1149.

56. Sulfonated carbon nanotubes/sulfonated poly(ether sulfone ether ketone ketone) composites for polymer electrolyte membranes. Polymers for Advanced Technologies 2011,22,1747.

57. Novel poly(butylene succinate-co-lactic acid) copolyesters: Synthesis, crystallization, and enzymatic degradation. Polymer degradation and stability 2010,95,1920.

58. Synthesis and Phase Behaviors of Poly(1-alkyne) with Liquid Crystalline-induced Luminescence Enhancement. Chemical Research in Chinese University 2010.

59. Effects of Substitition and Terminal Groups for Liquid-Crystallinity Enhanced Luminescence of Disubstituted Polyacetylenes Carrying Chromophoric Terphenyl Pendants. Science China Chemistry 2010.

60. Carrier System of Chemical Drugs and Isotope from Gelatin Electrospun Nanofibrous Membranes. Biomacromolecules 2010,8,219. (第一作者)

61. A novel carrier of radionuclide based on surface modified poly(lactide-co-glycolide) nanofibrous membrane. Polymer 2010,15,3344. (第一作者)

62. Synthesis and helical conformation of new optically active liquid crystalline polythiophene containing cyanoterphenyl mesogen pendant. Acta Physico Chimica Sinica 2010,4,971.

63. 聚乙丙交脂電紡納米纖維膜的等離子體改性及其性能研究. 高等學校化學學報 2010,7,1451.(第一作者)

64. Effect of poly(ethylene oxide) with different molecular weights on the electrospinnability of sodium alginate. Polymer 2009,20,4926.(第一作者)

65. Preparation of silica hollow fibers by surface-initiated atom transfer radical polymerization from electrospun fiber templates. Materials Letters 2009,63,1803.

66. Grafting poly (N-isopropyl acrylamide) from poly(vinylidene fluoride )microfiltration membranes via direct surface-initiated atom transfer radical polymerization and temperature sensitivity. Surface Review and Letters 2009,1,111.

67. Effects of Chain Conformation and Entanglement on the Electrospinning of Pure Alginate. Biomacromolecules 2008,5,1362. (第一作者)

68. Controlled grafting from poly(vinylidene fluoride) microfiltration membranes via reverse atom transfer radical polymerization and antifouling properties. Polymer 2007,26,7604.

69. Low-κ nanocomposite films based on polyimides with grafted polyhedral oligomeric silsesquioxane. Journal of Applied Polymer Science 2006,5,2226.

70. Fluorinated polyimides grafted with poly(ethylene glycol) side chains by the RAFT-mediated process and their membranes. Materials Chemistry and Physics 2005,94,195.

71. Factors on the preparation of carboxymethylcellulose hydrogel and its degradation behavior in soil.Carbohydrate Polymers 2004,2,185. (第一作者)

申請專利

1.一種雙網絡結構的高性能聚合物基復合材料及其制備方法. 中國 ZL202210373874.6

2.一種基于結晶性反式橡膠的相變儲能導熱膜材料及其制備方法. 中國 ZL202210510639.9

3.導電高分子復合材料及其3D打印成型方法. 中國發明專利 ZL201910788008.1

4.硅橡膠/膠原基多孔皮膚支架材料的制備方法及用途. 中國發明專利 ZL201010616889.8

5.放射性核素標記的天然高分子超細纖維膜及其制備方法. 中國發明專利 ZL200910209505.8

6.純海藻酸鈉納米纖維膜材料的制備方法. 中國發明專利 ZL200810100981.1

7.Vaginal matrix: nanofibers for contraception and prevention. 美國專利 US9393216B2

8.聚己內酯/天然高分子復合多孔支架的制備方法及應用. 中國發明專利 CN102277737

9.仿生三維立體組織工程支架及其制備方法. 中國發明專利 CN103006359A

10.物理包埋活性物質的組織工程支架材料及其制備方法. 中國發明專利 CN102552976A

11.化學鍵接活性物質的組織工程支架材料及其制備方法. 中國發明專利 CN102580160A

12.放射性核素標記的可生物降解及吸收的生物高分子納米纖維膜及其制法和用途. 中國發明專利 CN 200910236117.9

承擔項目

1.山東省自然科學基金-重點項目:不對稱結構納米填料制備及其在高性能導熱聚合物復合材料中的應用. 編號:ZR202011030008,2021.01-2023.12,項目負責人,已結題

2.國家自然科學基金-面上項目:有機-無機雜化Janus材料的可控制備及其在導熱橡膠中的應用. 編號:51973101,2020.01-2023.12,項目負責人,已結題

3.國家自然科學基金-面上項目:片狀Janus粒子在聚合物共混體系中的界面行為與增容作用研究. 編號:51773105,2018.01-2021.12,項目負責人,已結題

4.山東省自然科學基金-面上項目:帶可反應聚合物刷Janus粒子的制備及其在橡膠共混體系中的界面行為. 編號:ZR2016EMM05,2016.06-2018.12,項目負責人,已結題

5.國家自然科學基金-青年基金:微生物燃料電池中多層次納米結構電極材料的制備與關鍵技術研究. 編號:51103068,2012.01-2014.12,項目負責人,已結題

6.江西省自然科學基金-青年基金:多種類藥物負載的復合結構納米控釋系統設計與應用. 編號:2010GQC0127,2011.01-2012.12,項目負責人,已結題

7.江西省教育廳基金-青年基金:納米復合結構藥物控釋系統設計與應用. 編號:GJJ11030,2011.01-2012.12,項目負責人,已結題

8.江西省自然科學基金項目:聚乙丙交酯電紡復合結構納米纖維膜負載藥物與藥物的控制釋放. 編號:2009GQC0086,2010.01-2010.12,項目負責人,已結題

9.國家自然科學基金-面上項目:球形反式橡膠合金TPI/TBIR的釜內合成及結構與性能研究. 參與

10.973項目子課題:橡膠材料在加工中微觀結構演變及高性能輪胎制備. 參與

11.山東省重大基礎研發項目:高反式丁戊彈性體橡膠(TBIR)應用理論研究. 參與

學術會議

1.JANUS殼材相變微膠囊的制備與性能研究. 第九屆JANUS材料學術會議,寧波,2025-5-9至2025-5-11. (會議報告)

2.相變儲能膠囊的殼材結構調控及其傳熱強化與功能化. 第二屆相變儲能材料創新與應用論壇,寧波,2025-3-27至2025-3-29. (會議報告)

3.彈性體中導電網絡的構筑與高性能傳感器. 第十八屆橡膠基礎研討會, 沈陽,2022-8-19至2022-8-21. (會議報告)

4.TPI及其并用膠的結晶與相態. 第八屆青島國際橡塑技術論壇, 青島, 2021-7-18至2021-7-20. (會議報告)

5.Janus填料與橡塑材料的高性能化與功能化. 第十六屆橡膠基礎研討會, 青島, 2020-9-21至2020-9-23. (會議報告)

6.Janus納米片的界面增容及其在導熱材料中的應用. 第五屆 Janus 材料學術沙龍, 清華大學, 2019.05.18-2019.05.18. (會議報告)

7.Enthalpy-enhanced Janus particles trapping the phase morphology at non-euqilibrium. The 13th International Symposium on Polymer Physics (PP’2018), 西安, 2018.6.11-2018.6.15. (會議報告)

8.Janus粒子及其在橡塑材料的界面行為. 2018第十四屆橡膠基礎研討會,北京, 2018.7.28-2018.7.29. (邀請報告)

9.TPI并用膠的相態及結晶行為. 第十三屆橡膠基礎研討會, 太原, 2017.7.14-2017.7.15.

10.Janus materials and their interfacial activity in polymer blend. International Symposium on polymer and condensed matter physics, 深圳, 2017.11.9-2017.11.11. (會議報告)

11.TPI并用膠的結晶及相態. 泰山學術論壇,青島 2017.09.08-2017.09.10.(邀請報告)

12.橡膠Janus 雜化粒子及其界面效應. 第十二屆中國橡膠基礎研討會, 揚州, 2016.11.26-2016.11.27. (會議報告)

13.Synthesis of Janus Rubber Hybrid Particles and InterfacialBehavior. The 12th International Symposium on Polymer Physics (PP’2016), 貴陽, 2016.06.10-2016.06.14. (會議報告)

14.帶橡膠聚合物刷Janus 粒子的制備及其對橡膠共混體系的增容作用. 第二屆 Janus 材料學術沙龍, 中國科學院化學研究所, 2016.04.16-2016.04.16. (會議報告).

15.pH-Responsive Nanocarriers for Antiviral Agents Against HIV.  Annual Meeting & Exposition—Society for Biomaterials, Denver, 2014.

16.Microwave energy application on carbon cathode for high efficient microbial electrosynthesis. American Physics Society (APS) Meeting,Baltimore, 2013.3.18-2013.3.22.

17.High surface area electrode for high efficient microbial electrosynthesis. 2012 American Physical Society (APS) Meeting, Boston, 2012.2.27-2012.3.2.

學術兼職

淄博產業領軍人才

受邀擔任Frontiers in Physics副編輯(2021-)

Macromolecules, Polymer, Polymer Chemistry, Journal of Materials Chemistry A, ACS Applied Materials & Interfaces, Composites Science and Technology, Advanced Functional Materials, Carbohydrate Polymers 等期刊審稿人.













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