彭美文 副教授-尊龙凯时

发布时间:2024-06-06访问量:1209



彭美文2024年加入苏州大学功能纳米与软物质研究院,被聘为副教授。20208月获苏州大学博士学位,随后在苏州大学和南洋理工大学(2023.01-2024.01)进行博士后研究。

 

所在课题组:

迟力峰院士课题组

 

个人荣誉:

1.  苏州大学优秀青年学者2024

2.  博士后国际交流计划派出项目2021

3.  苏州大学优秀博士学位论文2021

4.  中国科协优秀中外青年交流计划(2020

 

主持项目:

1.  国家自然科学基金委员会,青年科学基金项目,在研,主持

2.  江苏省科技厅,青年基金项目,在研,主持

 

研究方向:

研究工作集中于功能纳米材料的多尺度可控组装、性能调控以及应用探索。通过3d打印、冷冻铸造、原位生长/组装等多种手段实现对纳米粒子组装体系的功能化与固定化,为纳米材料多尺度有序结构的设计、制造奠定了理论和实验基础,实现它们在光学、机械、电磁、传输等性能的强耦合,探索在海水淡化、水伏科技、能源催化、智能传感等方面的应用。

 

研究成果:

2015年以来,以第一作者/通讯作者身份发表sci论文在adv. mater., acs nano, adv. funct. mater., adv. sci., nano energy等化学、材料领域高水平期刊上发表学术论文10篇。已获授权发明专利3项。

 

代表性论文:

  1. h. yang#, d. li#, x. zheng#, j. zuo, b. zhao, d. li, j. zhang, z. liang, j. jin, s. ju, m. peng*, y. sun*, lin jiang*, high freshwater flux solar desalination via a 3d plasmonic evaporator with an efficient heat-mass evaporation interface adv. mater. 2023, 35, 2304699.

  2. m. peng#, d. shi#, y. sun#, j. cheng, b. zhao, y. xie, j. zhang, w. guo, z. jia*, z. liang*, l. jiang*, 3d printed mechanically robust graphene/cnt electrodes for highly efficient overall water splitting adv. mater. 2020, 32, 1908201.

  3. m. peng#, z. wen#, l. xie#, j. cheng, z. jia, d. shi, h. zeng, b. zhao, z. liang*, t. li*, l. jiang*, 3d printing of ultralight biomimetic hierarchical graphene materials with exceptional stiffness and resilience adv. mater. 2019, 31, 1902930.

  4. d. li#, z. liang#, h. yang#, m. zhang, k. cao, b. zhao, y. wang, m. peng*, y. sun*, lin jiang*, mutual reinforcement of evaporation and catalysis for efficient freshwater–salt–chemical production adv. funct. mater. 2023, 33, 2300353.

  5. h. yang#, y. sun#, m. peng*, m. cai, b. zhao, d. li, z. liang,l. jiang*, tailoring the salt transport flux of solar evaporators for a highly effective salt-resistant desalination with high productivity acs nano 2022, 16, 2511-2520.

  6. b. zhao#, j. wu#, z. liang#, w. liang, h. yang, d. li, w. qin, m. peng*, y. sun*, lin jiang*, a bioinspired hierarchical fast transport network boosting electrochemical performance of 3d printed electrodes adv. sci. 2022, 9, 2204751.

  7. m. wu#, z. liang#, m. peng#, b. zhao, d. li, j. zhang*, y. sun*, lin jiang*, high evaporation rate and electrical conductivity synergistically boosting porous rgo/cnt film for water evaporation-driven electricity generation nano energy 2023, 116, 108771.

  8. m. peng#, b. zhao#, d. shi, y. wang, d. li, w. liang, h. yang, z. liang, y. sun*, lin jiang*, enabling high loading of well-dispersed ni2cop2 catalysts on a 3d-printed electrode for efficient electrocatalysis j. mater. chem. a 2023, 11, 15394.

  9. m. wu#, m. peng#, z. liang#, y. liu, b. zhao, d. li, y. wang, j. zhang*, y. sun*, l. jiang*, printed honeycomb-structured reduced graphene oxide film for efficient and continuous evaporation-driven electricity generation from salt solution 2021, 13, 2698926997.

  10. m. peng#, p. xiao#, y. huang*, m. cai, y. hou, j. chen, z. liu, z. xiao*, t. chen*, a direct microcontact printing induced supramolecular interaction for creating shape-tunable patterned polymeric surfaces j. mater. chem. c 2015, 3, 8659-8664.

 

尊龙凯时的联系方式:

江苏省苏州市工业园区仁爱路199

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责任编辑:杨娟

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