Calculated based on number of publications stored in Pure and citations from Scopus
20192024

Research activity per year

Personal profile

Personal profile

Title: Zhenggao/Special Researcher/Doctoral Supervisor
Contact number:
Department: Condensed Matter Physics
E-mail: liupeng@bit.edu.cn
Address: 405-2, Block A, Liangxiang South Campus, Beijing Institute of Technology

Research Interests

Mainly using theoretical simulation methods:
1. The thermodynamics of active substances, including the thermodynamic properties of activity consumption, activity noise, effective temperature, pressure, etc.
2. Topological edge states of active substances, including the internal mechanism of collective motion of active substances and the transport characteristics of edge flows.
3. Interaction and kinetic behavior of colloidal particles in complex environments.
4. Multiple reaction mechanisms of X−+ CH3Y nucleophilic substitution reaction in liquid phase, such as double inversion and backside attack, were studied by using multi-level quantum mechanics and molecular mechanics methods.
5. Base damage in the liquid phase, such as ring opening and proton transfer of larger molecules such as guanine.

Education

2017.06-2018.06 Institute of Physics, Chinese Academy of Sciences
2013.09 -- 2018.06 School of Physics and Electronic Science, Shandong Normal University Doctor
2009.09 -- 2013.06 College of Physics and Electronic Science, Shandong Normal University

Professional Experience

2022.09-present Special Researcher/Doctoral Supervisor, School of Physics, Beijing Institute of Technology
2020.05-2022.08 Postdoctoral Fellow, University of Chinese Academy of Sciences
2018.06-2020.05 Postdoctoral Fellow, Institute of Physics, Chinese Academy of Sciences

Research Achievement

Talent projects Beijing Association for Science and Technology's 2023-2025 Youth Talent Support Project< br>
Research projects 1. Open Project Fund of Beijing National Center for Condensed Matter Physics, 100000 yuan, from January 2024 to December 2025, hosted< br> 2. General project of the National Natural Science Foundation of China, project approval number 12374205, 520000 yuan, from January 2024 to December 2027, simulation research on the effective effect of colloidal particles induced by lattice background, led by< br> 3. Beijing Institute of Technology Youth Teacher Academic Launch Program, 600000 yuan, September 2022- December 2025, hosted< br> 4. National Natural Science Foundation of China Theoretical Physics Special Fund Research Project, project approval number 12047552, 160000 yuan, from January 2021 to December 2021, using computer simulation to study the depletion force in three-dimensional active baths, led by< br> 5. General project of the National Natural Science Foundation of China, project approval number 11774206, 660000 yuan, from January 2018 to December 2021, to develop parallel and time-dependent mixed quantum classical dynamics methods for studying bimolecular nucleophilic substitution reactions. Participated< br> 6. National Natural Science Foundation of China Youth Science Fund project, project approval number 51602183, RMB 200000, from January 2017 to December 2019, participated in the research on the micro reaction mechanism and multi field coupling optimization of samarium doped cerium oxide lanthanum strontium cobalt iron nanocomposite cathode< br> 7. National Natural Science Foundation of China Youth Science Fund project, project approval number 21403133, 250000 yuan, from January 2015 to December 2017, participated in the theoretical research on the delayed fluorescence mechanism of novel and efficient organic electroluminescent molecules< br>
Published paper:
As a single work and co author:
1. Liu P1, Li L, Ning L, Zheng N, Yang M. Constraint dependence of pressure on a passive probe in an active bath. Journal of Physics: Condensed Matter, 2023, 35, 445102.
2. Liu P1, Ning L, Zong Y, Ye F, Yang M, Chen K. Lattice induced short-range attraction between same-charged colloidal particles. Physical Review Letters, 2022, 129, 018002.
3. Liu P1, Zhu H,

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