教育背景
1984:贵州大学化学系,学士学位
1989:重庆大学应用化学系,硕士学位
1997:江苏大学,博士学位
1999:江南大学,博士后
2005:CHONBUK NATIONAL UNIVERSITY 高访
2007:Latrobe University,进修
2009:Stanford University, 高访
工作经历
1989-1994:中国科学院地球化学研究所,助理研究员
1999-至今:上海交通大学化学化工学院,副教授,教授
项目课题经历
长期从事超临界流体+的基础理论和应用基础及其应用研究工作,研究成果涵盖超临界流体的绿色化学和化工过程。近来主持了国家863项目、国家自然科学基金项目、上海市科委纳米专项项目、上海市经委高新技术项目、上海交大医工交叉项目以及企业委托开发项目近30项,获国家发明专利20余件,发表超临界流体领域学术论文100余篇。
论文、成果、著作等
论文
1. Ningning Song, Huijun Tan, Yaping Zhao, Carbon fiber-bridged polyaniline/graphene paper electrode for a highly foldable all-solid-state supercapacitor, Journal of Solid State Electrochemistry (2019) 23:9–17.
2. Yanzhe Gai, Ding Xiao, Rahul Navik, Huijun Tan, Sameera Shafi, Yaping Zhao,Isolation of graphene and graphite by supercritical CO2 elutriation technique: CFD simulation and experimental,Powder Technology 352 (2019) 478–487.
3. Ningning Song, Yue Wu, Wucong Wang, Ding Xiao, Huijun Tan, Yaping Zhao, Layer-by-layer in situ growth flexible polyaniline/graphene paper wrapped by MnO2 nanoflowers for all-solid-state supercapacitor. Materials Research Bulletin 111 (2019) 267–276.
4. Sameera Shafi, Rahul Navik, Xiao Ding, Yaping Zhao, Improved heat insulation and mechanical properties of silica aerogel/glass fiber composite by impregnating silica gel, Journal of Non-Crystalline Solids 503–504 (2019) 78–83.
5. Sameera Shafi, Jiaqi Tian, Rahul Navik, Yanzhe Gai, Xiao Ding, Yaping Zhao, Fume silica improves the insulating and mechanical performance of silica aerogel/glass fiber composite, The Journal of Supercritical Fluids 148 (2019) 9–15.
6. Wucong Wang, Yanzhe Gai, Ding Xiao & Yaping Zhao, A facile and general approach for production of nanoscrolls with high-yield from two-dimensional nanosheets, Scientific Reports, (2018) 8:15262.
7. Rahul Navik, Yanzhe Gai, Wucong Wang, Yaping Zhao, Curcumin-assisted ultrasound exfoliation of graphite to graphene in ethanol, Ultrasonics - Sonochemistry 48 (2018) 96–102
8. Iftikhar, Huijun Tan, Yaping Zhao, Enriching β-carotene from fatty acid esters mixture of palm oil using supercritical CO2 in the silica-packed column, Journal of CO₂ Utilization 26 (2018) 93–97.
9. Yanzhe Gai, Wucong Wang, Ding Xiao, Huijun Tan, Minyan Lin, and Yaping Zhao, Exfoliation of Graphite into Graphene by a Rotor−Stator in Supercritical CO2: Experiment and Simulation, Ind. Eng. Chem. Res. 2018, 57, 8220−8229.
10. Peng Guo,* Jing Huang, Yaping Zhao, Charles R. Martin, Richard N. Zare,* and Marsha A. Moses Nanomaterial Preparation by Extrusion through Nanoporous Membranes, Small 2018, 1703493.
11. Ningning Song, Wucong Wang, Yue Wu, Ding Xiao, Yaping Zhao, Fabrication of highly ordered polyaniline nanocone on pristine graphene for high-performance supercapacitor electrodes, Journal of Physics and Chemistry of Solids 115 (2018) 148–155.
12. Ding Xiao, Wucong Wang, Yanzhe Gai & Yaping Zhao, Graphene-catalyzed formation of C≡N bonds via cleavage of C-C and N-O bonds in ethanol and nitrate under room temperature, Scientific Reports (2018) 8:1750.
13. Wucong Wang, Yanzhe Gai, Ningning Song, Ding Xiao, Huijun Tan, and Yaping Zhao, Highly Efficient Production of Graphene by an Ultrasound Coupled with a Shear Mixer in Supercritical CO2. Ind. Eng. Chem. Res. 2018, 57, 16701−16708 (front cover).
14. Mengmeng Cai, Sameera Shafi, Yaping Zhao, Preparation of compressible silica aerogel reinforced by bacterial cellulose using tetraethylorthosilicate and methyltrimethoxylsilane co-precursor, Journal of Non-Crystalline Solids 481 (2018) 622–626.
15. Minyan Lin, Yanzhe Gai, Ding Xiao, Huijun Tan, Yaping Zhao, Preparation of pristine graphene paste for screen printing patterns with high conductivity. Chemical Physics Letters 713 (2018) 98–104.
16. Yanzhe Gai, Wucong Wang, Ding Xiao, Huijun Tan, Minyan Lin and Yaping Zhao, Reversible conversion between graphene nanosheets and graphene nanoscrolls at room temperature. RSC Adv., 2018, 8, 9749.
17. Farnaz Alidad, Rahul Navik, Yanzhe Gai, Yaping Zhao, Production of pristine graphene quantum dots from graphite by a shearmixer in supercritical CO2. Chemical Physics Letters 710 (2018) 64–69
18. Yue Wu, Ningning Song, Wucong Wang, Yaping Zhao, Synthesis of graphene/epoxy resin composite via 1,8-diaminooctane by ultrasonication approach for corrosion protection, Ultrasonics - Sonochemistry 42 (2018) 464–470.
19. Yanzhe Gai, Wucong Wang, Ding Xiao, Yaping Zhao, Ultrasound coupled with supercritical carbon dioxide for exfoliation of graphene: Simulation and experiment, Ultrasonics - Sonochemistry 41 (2018) 181–188.
20. Sining Li, Yaping Zhao Preparation of zein nanoparticles by using solution-enhanced dispersion with supercritical CO2 and elucidation with computational fluid dynamics, International Journal of Nanomedicine 2017:12 3485–3494.
21. Sining Li, Yaping Zhao, Preparation of Melatonin-Loaded Zein Nanoparticles using Supercritical CO2 Antisolvent and in vitro Release Evaluation. International Journal of Food Engineering. 2017; 20170239
22. Wenqi Liu, Ningning Song, Yue Wu, Yanzhe Gai, Yaping Zhao, Preparation of layer-aligned graphene composite film with enhanced thermal conductivity. Vacuum 138 (2017) 39-47.
23. Fatemeh Zabihi, Mehrdad Mirzajanzadeh, Jingfu Jia, Yaping Zhao, Measurement and calculation of solubility of quinine in supercritical carbon dioxide. Chinese Journal of Chemical Engineering 25 (2017) 641–645.
24. Yahui Gao, Wucong Wang, Ningning Song, Yanzhe Gai, Yaping Zhao. Fabrication of highly flexible transparent conductive film with a sandwich-structure consisted of graphene/silver nanowire/graphene. J Mater Sci: Mater Electron (2017) 28:17031–17037.
25. Iftikhar, Huijun Tan, Yaping Zhao Enrichment of b-carotene from palm oil using supercritical carbon dioxide pretreatment-solvent extraction technique, LWT - Food Science and Technology 83 (2017) 262-266
26. Sining Li, Yaping Zhao, Preparation of zein nanoparticles by using solution-enhanced dispersion with supercritical CO2 and elucidation with computational fluid dynamics,International Journal of Nanomedicine 2017:12 3485–3494
27. Ningning Song , Jinfu Jia , Wucong Wang , Yahui Gao , Yaping Zhao
Green production of pristine graphene using fluid dynamic force in supercritical CO2,Chemical Engineering Journal 298 (2016) 198–205
28. Jingfu Jia, Yanzhe Gai, Wucong Wang, Yaping Zhao, Green synthesis of biocompatiable chitosan–graphene oxide hybrid nanosheet by ultrasonication method, Ultrasonics Sonochemistry 32 (2016) 300–306
29. Jingfu Jia, Ningning Song, Yanzhe Gai, Lin Zhang, Yaping Zhao, Release-controlled curcumin proliposome produced byultrasound-assisted supercritical antisolvent method, J. of Supercritical Fluids 113 (2016) 150–157
30. Yuanpeng Leng, Yahui Gao, Wucong Wang, Yaping Zhao, Continuous supercritical solvothermal synthesis ofTiO2–pristine-graphene hybrid as the enhanced photocatalyst, J. of Supercritical Fluids 103 (2015) 115–121
31. Jingfu Jia, Wucong Wang, Yahui Gao, Yaping Zhao, Controlled morphology and size of curcumin using ultrasound in supercritical CO2 antisolvent, Ultrasonics Sonochemistry 27 (2015) 389–394
32. Fatemeh Zabihi, Mu Yang, Yuanpeng Leng, Yaping Zhao, PLGA–HPMC nanoparticles prepared by a modified supercriticalanti-solvent technique for the controlled release of insulin, J. of Supercritical Fluids 99 (2015) 15–22
33. Jing-fu Jia, Fatemeh Zabihi, Ya-hui Gao, and Ya-ping Zhao, Solubility of Glycyrrhizin in Supercritical Carbon Dioxide with and without Cosolvent,2015
34. Wucong Wang, Yan Wang, Yahui Gao, Yaping Zhao, Control of number of graphene layers using ultrasound insupercritical CO2and their application in lithium-ion batteries, J. of Supercritical Fluids 85 (2014) 95– 101
35. Fabrication and photocatalytical enhancement of ZnO-graphene hybrid using a continuous solvothermal technique, Yuanpeng Leng, Wucong Wang, Lin Zhang, Fatemeh Zabihi, Yapin Zhao, J. of Supercritical Fluids 91 (2014) 61–67
36. Fatemeh Zabihi, Na Xin Jingfu Jia Tao Chen, and Yaping Zhao, High Yield and High Loading Preparation of Curcumin−PLGA Nanoparticles Using a Modified Supercritical Antisolvent Technique, Ind. Eng. Chem. Res. 2014, 53, 6569−6574
37. Yahui Gao, Wen Shi, Wucong Wang, Yuanpeng Leng, and Yaping Zhao, Inkjet Printing Patterns of Highly Conductive Pristine Graphene on Flexible Substrates, Ind. Eng. Chem. Res. 2014, 53, 16777−16784
38. Wen Shi, Yahui Gao, Shaodi Song, and Yaping Zhao, One-Pot Conversion of Bio-oil to Diesel- and Jet-Fuel-Range Hydrocarbons in Supercritical Cyclohexane, Ind. Eng. Chem. Res. 2014, 53, 11557.11565
39. Fatemeh Zabihi, Na Xin, Sining Li, Jingfu Jia, Tao Cheng, Yaping Zhao, Polymeric coating of fluidizing nano-curcumin via anti-solventsupercritical method for sustained release, J. of Supercritical Fluids 89 (2014) 99–105
40. Yahui Gao, Wen Shi, Wucong Wang, Yan Wang, Yaping Zhao, Zhihong Lei,and Rongrong Miao, Ultrasonic-Assisted Production of Graphene with High Yield in Supercritical CO2 and Its High Electrical Conductivity Film, Ind. Eng. Chem. Res. 2014, 53, 2839.2845
41. Wen Shi, Jingfu Jia, Yahui Gao, Yaping Zhao,Influence of ultrasonic pretreatment on the yield of bio-oil prepared by thermo-chemical conversion of rice husk in hot-compressed water,Bioresource Technology, Bioresource Technology 146 (2013) 355–362
42. Wen Shi, Yahui Gao, Guohui Yang, Yaping Zhao, Conversion of cornstalk to bio-oil in hot-compressed water: Effects of the ultrasonic pretreatment on the yield and chemical composition of bio-oil, carbon balance, and energy recovery, Journal of Agricultural and Food Chemistry, J. Agric. Food Chem. 2013, 61, 7574.7582
43. Zhiqiang Mao,Sining Li, Yuanpeng Leng, Yaping Zhao, Controlled morphology and size of ZnO nanocrystals using the continuous hot compressed water technique, J. of Supercritical Fluids 79 (2013) 268–2732.
44. Wen Shi, Sining Li, Jingfu Jia, and Yaping Zhao, Highly Efficient Conversion of Cellulose to Bio-Oil in Hot-Compressed Water with Ultrasonic Pretreatment, Ind. Eng. Chem. Res. 2013, 52, 586-593.
专利、著作版权等
获国家发明专利6件:
1. ZL 201210285100.4, 一种利用超声波预处理生物质提高液化生物油产率的方法
2. ZL 201310536104.X, 一种连续快速制备石墨烯-无机纳米复合材料的方法
3. ZL 201310733495.4,利用超声波辅助超临界抗溶剂制备纳米姜黄素颗粒的方法
4. ZL201210226272.4, 利用超临界流体制备二维原子晶体新材料的方法
5. ZL201210001582.6 一种超临界二氧化碳剥离制备大尺度石墨烯的方法
6. ZL201210008133.4 一种超声波辅助的压缩CO2流体制备石墨烯的方法
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