教育背景
2012-2013 美国哈佛大学工程与应用科学学院博士后
2005-2010 四川大学化学工程学院博士
2000-2003 南京工业大学制药与生命科学学院硕士
1995-1999 南京工业大学应用化学系本科
工作经历
项目课题经历
主持或参与国家973项目、国家自然科学基金、教育部中央财政专项基金、四川省科技厅和建设厅项目等课题10余项。1. 国家自然科学基金项目“双水相液滴微流强化酶促反应机理研究”(21776230),2018.01-2021.12
2. 国家自然科学基金项目“光控可逆转相的Pickering乳液设计及开关机理研究”(21406181),2015.01-2017.12
3. 国家自然科学基金项目“微流控双水相技术在蛋白质分离和酶促反应中的应用基础”(21106115),2012.01-2014.12
4. 四川省科技厅重点研发项目“光控可逆转相的纳米颗粒乳化剂关键技术研究”(2017GZ0411),2017.01-2018.12
5. 教育部中央财政专项基金创新项目“微流控生物技术及制备功能材料研究”(SWJTU12CX049),2012.06-2016.06
6. 教育部中央财政专项基金资助项目“纳米结构微通道中模拟血液流动形态及药物释放研究”(SWJTU09BR214),2009.01-2011.12
7. 西南交通大学青年教师科研起步计划项目“超强疏水纳米涂层的制备研究”,2009.01-2009.12
8. 西南交通大学实验技术改革项目“生物反应器的设计和模拟放大”,2007.01-2007.12
9. 西南交通大学实验技术改革项目“生物工程下游技术成套实验设备的研制开发”,2008.01-2008.12
10. 国家973项目“面向应用过程膜材料设计与制备基础研究”(2009CB623407),2010.01-2012.12
11. 国家自然科学基金项目“卷式膜组件气液两相流清洗研究”(20706046),2008.01-2010.12
12. 国家建设部村镇司“四川山地丘陵地区农村污水处理技术研究”,2010.01-2010.12
13. 四川省建设厅项目“四川省农村生活污水实用处理技术研究”,2011.01-2011.12
14. 四川省建设厅项目“农村垃圾处理适用技术研究”,2012.01-2012.12
论文、成果、著作等
近五年以来在包括美国化学学会(ACS)、英国皇家物理学会(IOP)、Wiley、Elsevier和Springer等旗下期刊在内的学术杂志发表论文30余篇,出版专著1部,[1] Sun H., Zheng H., Tang Q., Dong Y., Qu F., Wang Y., Yang G., Meng T.*. Monodisperse Alginate Microcapsules with Spatially Confined Bioactive Molecules via Microfuid-Generated W/W/O Emulsions. ACS Applied Materials & Interfaces (SCI, IF=8.456), 2019, 11(40), 37313-37321.
Download:https://pubs.acs.org/doi/10.1021/acsami.9b12479
[2] Yang X., Wang Y., Bai R., Ma H. Wang W., Sun H., Dong Y., Qu F., Tang Q., Guo T., Binks B. P.*, Meng T.*. Pickering Emulsion-Enhanced Interfacial Biocatalysis: Tailored Alginate Microparticles Act as Particulate Emulsifier and Enzyme Carrier. Green Chemistry (SCI, IF=9.405), 2019, 21(9), 2229-2233.
Download:http://dx.doi.org/10.1039/C8GC03573C
This work has been featured in the Inside Front Cover
[3] Meng T., Bai R., Wang W., Yang X., Guo T., Wang Y.*. Enzyme-Loaded Mesoporous Silica Particles with Tuning Wettability as a Pickering Catalyst for Enhancing Biocatalysis. Catalysts (SCI, IF=3.444), 2019, 9(1), 78.
Download:https://www.mdpi.com/2073-4344/9/1/78
[4] Meng S.X., Xue L.H., Xie C.Y., Bai R.X., Yang X., Qiu Z.P., Guo T., Wang Y.L.*, Meng T.*. Enhanced Enzymatic Reaction by Aqueous Two-Phase Systems Using Parallellaminar Flow in a Double Y-Branched Microfluidic Device. Chemical Engineering Journal (SCI, IF=8.355), 2018, 335: 392-400.
Download:http://www.sciencedirect.com/science/article/pii/S1385894717317953
[5] Xie C.Y., Meng S.X., Xue L.H., Bai R.X., Yang X., Wang Y.L., Qiu Z.P., Binks B. P., Guo T.*, Meng T.*. Light and Magnetic Dual-Responsive Pickering Emulsion Micro-Reactors. Langmuir (SCI, IF=3.683), 2017, 33(49): 14139–14148.
Download:http://pubs.acs.org/doi/10.1021/acs.langmuir.7b03642
[6] Xue L.H., Xie C.Y., Meng S.X., Bai R.X., Yang X., Wang Y., Wang S, Binks B. P., Guo T., Meng T.*. Polymer–Protein Conjugate Particles with Biocatalytic Activity for Stabilization of Water-in-Water Emulsions. ACS Macro Letters (SCI, IF=5.775), 2017, 6(7): 679-683.
Download:http://pubs.acs.org/toc/amlccd/6/7
This work has been featured in the Front Cover
[7] Bai R.X., Xu L.H., Dou R.K., Meng S.X., Xie C.Y., Zhang Q., Guo T., Meng T.*. Light-Triggered Release from Pickering Emulsions Stabilized by TiO2 Nanoparticles with Tailored Wettability. Langmuir (SCI, IF=3.683), 2016, 32(36): 9254-9264.
Download:http://pubs.acs.org/doi/abs/10.1021/acs.langmuir.6b02329
[8] Zhang Q., Bai R.X., Guo T., Meng T.*. Switchable Pickering Emulsions Stabilized by Awakened TiO2 Nanoparticle Emulsifiers Using UV/Dark Actuation. ACS Applied Materials & Interface (SCI, IF=8.456), 2015, 7(33): 18240-18246.
Download:http://pubs.acs.org/doi/abs/10.1021/acsami.5b06808
[9] Huang Y.S., Meng T.*, Guo T.*, Li W, Yan W.L., Li X.R, Tong Z.P. Aqueous Two-Phase Extraction for Bovine Serum Albumin (BSA) with Co-Laminar Flow in a Simple Coaxial Capillary Microfluidic Device. Microfluidics and Nanofluidics (SCI, IF=2.437), 2014, 16(3): 483-491.
Download:http://link.springer.com/article/10.1007/s10404-013-1245-2
[10] Guo T., Meng T.*, Li W., Qin J.L., Huang Y.S., Zhang Q., Li X.R. UV-Driven Microvalve Based on a Micro-Nano TiO2/SiO2 Composite Surface for Microscale Flow Control. Nanotechnology (SCI, IF=3.399), 2014, 25(12): 125301.
Download:http://iopscience.iop.org/article/10.1088/0957-4484/25/12/125301/meta
[11] Li W., Guo T.*, Meng T.*, Huang Y.S., Li X., Yan W.L., Wang S., Li X.R. Enhanced Reversible Wettability Conversion on Micro-Nano Hierarchical TiO2/SiO2 Composite Films under UV Irradiation. Applied Surface Science (SCI, IF=5.155), 2013, 283(15), 12-18.
Download:http://www.sciencedirect.com/science/article/pii/S016943321301012X
[12] Meng T., Xie R., Ju X.J., Cheng C. J., Wang S., Li P.F., Liang B., Chu L.Y.*. Nano-Structure Construction of Porous Membranes by Depositing Nanoparticles for Enhanced Surface Wettability. Journal of Membrane Science (SCI, IF=7.015), 2013, 427: 63-72.
Download:http://www.sciencedirect.com/science/article/pii/S0376738812007351
[13] Meng T., Xie R., Chen Y.C., Cheng C.J., Li P.F., Ju X.J., Chu L.Y.*. A Thermo-Responsive Affinity Membrane with Nano-Structured Pores and Grafted Poly(N-isopropylacrylamide) Surface Layer for Hydrophobic Adsorption. Journal of Membrane Science (SCI, IF=7.015), 2010, 349(1-2): 258-267.
Download:http://www.sciencedirect.com/science/article/pii/S0376738809008722
专利、著作版权等
研究成果已申请/授权国家发明专利20/10项。
[1] 一种用于稳定油包水型皮克林乳液的海藻酸钙复合微球及其制备方法. 国家发明专利授权号:ZL201611231558.6,授权日期:2019年01月04日。
[2] 聚乙二醇/葡聚糖双水相体系乳液稳定剂及其制备方法. 国家发明专利授权号:ZL201510474579.X,授权日期:2017年06月16日。
[3] 一种光磁双响应的Pickering乳液聚并反应体系及其应用. 国家发明专利授权号:ZL201510189334.2,授权日期:2017年ࣺᯬ
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