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朱亮亮

阅读次数:     发布时间:2024-02-22

学习工作经历

2013年博士毕业于welcome菠菜导航网化学化工学院材料化学工程国家重点实验室,2013-2018年于新加坡国立大学从事博士后研究(合作导师:Ho Ghim Wei教授),2019年受聘welcome菠菜导航网教授,2021年入选江苏特聘教授。

研究方向

微纳结构材料多维尺度下的设计、合成与构筑及其面向可持续能源的转化和应用研究,包括光子晶体材料;碳基材料;无机-有机纳米复合材料;微流控技术;太阳能光热转化;光热催化等。迄今已在Adv.   Mater.Adv. Energy Mater.Prog.   Polym. Sci.Chem. Eng. J.Adv.   Sci.Nano Energy等国际期刊发表SCI论文40余篇,多篇被Adv. Mater.Adv. Energy Mater.等选为封面论文,引用3500余次,高被引论文6篇,获新加坡陈嘉庚青年发明奖,江苏省教育厅江苏省高校优秀科技创新团队

代表性成果

1. Advances in Frontal Polymerization Strategy: from Fundamentals to   Applications, Prog. Polym. Sci., 2022, 127, 101514.

2. Conformal Microfluidic-Blow-Spun 3D Photothermal Catalytic Spherical   Evaporator for Omnidirectional Enhanced Solar Steam Generation and CO2   Reduction, Adv. Sci., 2021, 8, 2101232.

3. Carbon dots promoted photonic crystal for optical information storage   and sensing, Chem. Eng. J., 2021, 415, 128950.

4. Hydrophobic fluorinated colloidal photonic crystals for heterogeneous   aggregated cluster encoding and energy-saving applications, Chem. Eng.   J., 2021, 411, 128623.

5. Shape Conformal and Thermal Insulative Organic Solar Absorber Sponge   for Photothermal Water Evaporation and Thermoelectric Power Generation, Adv.   Energy Mater., 2019, 9, 1900250. (Front cover)

6. Recent progress in solar-driven interfacial water evaporation:   Advanced designs and applications, Nano Energy, 2019,   57, 507–518.

7. Self-contained Monolithic Carbon Sponges for Solar–driven Interfacial   Water Evaporation Distillation and Electricity Generation, Adv. Energy   Mater., 2018, 8, 1702149. (Inside   front cover)

8. Solar-driven photothermal nanostructured materials designs and   prerequisites for evaporation and catalysis applications, Mater. Horiz.,   2018, 5, 323-343.

9. Design of a Metal Oxide–Organic Framework (MoOF) Foam Microreactor:   Solar-Induced Direct Pollutant Degradation and Hydrogen Generation, Adv.   Mater., 2015, 27, 7713-7719. (Front   cover)

10. Fabrication of Wheat Grain Textured TiO2/CuO Composite   Nanofibers for Enhanced Solar H2 Generation and Degradation   Performance, Nano Energy, 2015, 11, 28-37.