| 俞昊 男 1973-10-23 学位:博士 职称:教授 所属部门:高分子科学与工程系 导师身份:博士生导师 课题组:蒙泰课题组 |
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主要论文: 在Nano Energy, Scientific Reports等杂志上发表论文80余篇,最高影响因子10.2。 [1] Human walking-driven wearable all-fiber triboelectric nanogenerator containing electrospun polyvinylidene fluoride piezoelectric nanofibers,Nano Energy,2015,v14,p226 [2] Enhanced Power Output of a Triboelectric Nanogenerator Composed of Electrospun Nanofiber Mats Doped with Graphene Oxide,Scientific Reports, 2015,v5,article number 13942 [3] Preparation and optimization of Polyvinylidene fluoride (PVDF) triboelectric nanogenerator via electrospinning, 2015 IEEE 15th International Conference on Nanotechnology (IEEE-NANO), Rome, Italy, 27-30 July 2015, p1485-8 [4] A strong and stretchable self-healing film with self-activated pressure sensitivity for potential artificial skin applications,Scientific Reports, 2013,v3,article number 3138 [5] Enhanced power output of an electrospun PVDF/MWCNTs-based nanogenerator by tuning its conductivity, Nanotech., 2013, 24(40): 405401. [6] Improvement of the cytocompatibility of electrospun poly[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyvalerate] mats by Ecoflex, J. Biomed. Mater. Res. Part A, 2012, 100(6): 1505-1511. [7] Preparation of continuous alumina nanofibers via electrospinning of PAN/DMF solution, Mater. Lett., 2012, 74: 247–249 [8] Study on the Morphologies and Formational Mechanism of Poly(hydroxybutyrate-co-hydroxyvalerate) Ultrafine Fibers by Dry-Jet-Wet-Electrospinning, J. Nanomater., 2012, http://dx.doi.org/10.1155/2012/525419. [9] Fabricating novel thermal crosslinked ultrafine fibers via electrospinning,J. Appl. Polym. Sci.,2008, 107(4): 2142-2149 [10] Application of electrospun poly[(R)-3-hydroxybutyrate- co-(R)-3- hydroxyvalerate]-ecoflex mats in periodontal regeneration: A primary study, Proceedings - 2012 International Conference on Biomedical Engineering and Biotechnology, iCBEB 2012, Macao: 972-975. [11] Effects of annealing on the crystallization and morphology of electrospun poly(L-lactic acid) fibers, Materials Science Forum, 2013, Advances in Functional and Electronic Materials , Suzhou, 745-746: 473-477. [12]Preparation of UPM/PHBV ultrafine fibres via electrospinning, Yu Hao, Chen Yanmo, Liu Jun,etc. Proceeding of the 2007 International Conference on Advanced Fibers and Polymer Materials,2007,Shanghai, Vol 1and2 : 508-510 [13]Dispersion of Multi-Walled Carbon Nanotubes in Polyvinyl Alcohol Aqueous Solution,Liu Jingjing, Yu Hao, Zhu Meifang, Proceeding of the 2007 International Conference on Advanced Fibers and Polymer Materials,2009,Shanghai, Vol 1and2 : 1143-1146 [14]Surprising conversion of nanocomposite hydrogels with high mechanical strength by posttreatment: From a low swelling ratio to an ultrahigh swelling ratio, J. Polym. Sci. Part A-Polym. Chem.,2006,44(22):6640-6645. [15]Novel rapid response clay/poly(N-isopropylacryl- amide) nanocomposite hydrogels by post treatment with HCl solution,e-Polymers, 2007,7(1):1705–1716 [16]Continuous polymer nanofiber yarns prepared by self-bundling electrospinning method,Polymer,2008,49(11): 2755–2761. [17]Synthesis and properties of a spinnable phase change material CDA-IPDI-MPEG, e-Polymers, 2008, 8(1): 1569– 1579. [18]Novel Poly(N-isopropylacrylamide)/Clay/Poly(acryl- amide) IPN Hydrogels with the Response Rate and Drug Release Controlled by Clay Content,J. Polym. Sci. Part B- Polym. Phys.,2008, 47(1):96-106. [19]Highly porous fibers prepared by electrospinning a ternary system of nonsolvent/solvent/poly(L-lactic acid) ,Mater. Lett.,2009,63(3–4): 415–418 [20]Kinetics of the thermal degradation of hyperbranched poly(phenylene sulfide),J. Appl. Polym. Sci., 2009, 111(4):1900-1904. [21]Preparation of porous electro-spun UPM fibers via photocrosslinking,J. Appl. Polym. Sci., 2009,112(4): 2247–2254. [22]Preparation and magnetic property analysis of monodisperse Co-Zn ferrite nanospheres. J. Alloys and Compounds, 2010, 491 (1-2): 431-435. [23]The Non-uniform Phase Structure in Blend Fiber. I. Non-uniform Deformation of the Dispersed Phase in Melt Spinning,Fibers and Polym.,2010,11(2):249-257 [24] Solvothermal one-step synthesis of MWCNTs/ Ni0.5Zn0.5Fe2O4 magnetic composites. J. Magnetism and Magn. Mater., 2010, 322 (14): 2006-2009. [25]Noncovalent binding interactions of polyacrylamide and clay in nanocomposite hydrogels,J. Polym. Sci. Part B: Polym. Phys.,2011,49(4):263–266. [26] Novel acrylic resin denture base with enhanced mechanical properties by the incorporation of PMMA-modified hydroxyapatite, Prog. Natur. Sci.-Mater. Int.,23(1):89-93 [27]同轴电喷法制备PCL-蛋清体系复合微胶囊, 功能高分子学报,2011,24(1): 30-37. [28]电喷湿法制备二醋酸纤维素/硫化锌复合纳米粒子, 东华大学学报(自然科学版),2012, 8(1): 1-5. [29]Fe_3O_4/石墨烯复合材料的制备及表征, 化工新型材料,2013,41(8):106-108 [30]聚间苯二甲酰间苯二胺干-湿法及干法纤维静电成形研究, 东华大学学报(自然科学版),2007,6:822-826. [31]高相对分子质量聚碳硅烷(H-PCS)/二甲苯溶液的流变行为, 东华大学学报(自然科学版),2008,1:24-28. [32]BHET/纳米TiO_2催化合成PET性能的研究, 合成纤维工业,2008,2:5-7. [33]聚丙烯/聚苯乙烯/膨润土共混纤维研究, 合成纤维工业, 2008, 2:12-15. [34]超声分散原位聚合法制备纳米TiO_2/聚酯复合材料, 东华大学学报(自然科学版),2009,5:493-499. [35]前躯体原位聚合溶胶-凝胶过程制备聚酯/纳米TiO_2杂化材料的可行性研究, 东华大学学报(自然科学版),2010,1:1-5+14. [36]干喷湿法静电纺丝研究进展, 合成纤维工业,2010,3:45-48. [37]涂料用硅系杂化聚酯的原位制备及性能表征, 上海涂料, 2010, 4: 12-16. [38]聚丙烯/聚苯乙烯/超支化聚酰胺酯共混物及其纤维性能, 合成纤维, 2013, 1:1-6 [39]水溶性聚乙烯醇的熔融纺丝, 合成纤维,2013,42(8):17-20. [40]离子液体原位插层聚合法制备蒙脱土-聚酯复合材料, 合成纤维, 2013, 42(9):7-11. [41]水性脂肪族涂层材料用聚酯基体合成工艺的研究, 印染助剂,2007,7:9-11. [42] PHBV/CH_2Cl_2溶液体系静电纺纤维直径及其分布控制, 合成纤维,2007,7:21-26. [43]脂肪族聚酯基体亲水改性和固化工艺的研究, 印染助剂,2007,11:14-17. [44]二氧化钛改性PHBV共聚物的成纤性能研究, 合成纤维,2008,1:10-13. [45]软骨细胞在纳米级PHBV支架材料与PHBV/ECOFLEX复合支架材料中的生长状况比较, 中国口腔颌面外科杂志,2008,2:119-123. [46] PHBV/Ecoflex共混体系电纺成形及其热性能研究, 合成技术及应用,2008,4:16-19. [47]β-羟基丁酸-羟基戊酸共聚物初生纤维力学演变机理初探, 合成纤维,2008,12:14-17+23. [48]三氯甲烷/乙醇混合溶剂对聚乳酸电纺成形影响的研究, 合成纤维,2009,3:40-44 [49]原位生成法制备聚酯/钛系化合物杂化涂层基体, 上海涂料,2009,7:10-12+6. [50]聚羟基丁酸羟基戊酸共聚酯纤维干法纺丝成形研究, 合成纤维,2009,7:13-16. [51]静电纺陶瓷纤维的研究进展, 合成纤维, 2010, 3: 5-8. [52] PET/PbS纳米复合材料的热降解动力学研究, 合成纤维,2010,4:6-9+13. [53]聚羟基丁酸-羟基戊酸共混干纺初生纤维的研究, 合成纤维,2010,7:18-23. [54]聚羟基丁酸戊酸酯纤维的湿法静电纺丝成形, 合成纤维, 2010, 9: 4-8. [55]静电纺聚丙烯腈基超细碳纤维的研究, 合成纤维, 2010, 12:13-17. [56]静电纺氧化铝纤维的制备工艺, 合成纤维, 2011, 7:14-17.
电话:67792432 Email:yuhao@dhu.edu.cn 移动电话:13701857792
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