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Chemistry

D-Index
45
Citations
6885
World Ranking
16512
National Ranking
442

Overview

Zhehui Jin is affiliated with the University of Alberta in Canada and focuses their research within the field of Engineering. Their work spans several specialized subfields, including Mechanics of Materials, Ocean Engineering, Environmental Engineering, Biomedical Engineering, and Mechanical Engineering.

The scientist's research topics encompass a range of applied and theoretical areas related to energy and materials science. Their main topics of focus include:

  • Hydrocarbon exploration and reservoir analysis
  • Enhanced Oil Recovery Techniques
  • CO2 Sequestration and Geologic Interactions
  • Hydraulic Fracturing and Reservoir Analysis
  • Petroleum Processing and Analysis
  • NMR Spectroscopy and Applications
  • Phase Equilibria and Thermodynamics

Jin has published extensively, contributing to several leading journals. Frequent publication venues include:

  • Chemical Engineering Journal
  • Energy & Fuels
  • Langmuir
  • Fuel
  • SPE Journal

Among recent papers authored or coauthored by Jin are the following titles:

  • "Electrolyte Structure of Lithium Polysulfides with Anti-Reductive Solvent Shells for Practical Lithium-Sulfur Batteries," 2021, Angewandte Chemie International Edition
  • "A Mixed Ether Electrolyte for Lithium Metal Anode Protection in Working Lithium-Sulfur Batteries," 2020, Energy & environment materials
  • "Study of liquid-liquid two-phase flow in hydrophilic nanochannels by molecular simulations and theoretical modeling," 2020, Chemical Engineering Journal
  • "Mechanisms for kerogen wettability transition from water-wet to CO2-wet: Implications for CO2 sequestration," 2021, Chemical Engineering Journal
  • "Hydrophilicity/hydrophobicity driven CO2 solubility in kaolinite nanopores in relation to carbon sequestration," 2020, Chemical Engineering Journal

Frequent collaborators in Jin's research include:

  • Mingshan Zhang
  • Yiling Nan
  • Wenhui Li
  • Wendong Wang
  • Shiyuan Zhan

Zhehui Jin's body of work reflects a consistent contribution to the understanding of material properties, energy storage, and subsurface geologic processes. The scientist's research integrates molecular simulation, experimental studies, and applied engineering principles to address challenges in energy and environmental systems.

Best Publications

  • Oscillation of capacitance inside nanopores.

    De-en Jiang;Zhehui Jin;Jianzhong Wu

  • Effect of water on methane and carbon dioxide sorption in clay minerals by Monte Carlo simulations

    Zhehui Jin;Abbas Firoozabadi

  • Thermodynamic Modeling of Phase Behavior in Shale Media

    Zhehui Jin;Abbas Firoozabadi

  • A dopamine modified Li6.4La3Zr1.4Ta0.6O12/PEO solid-state electrolyte: enhanced thermal and electrochemical properties

    Zeya Huang;Wanying Pang;Peng Liang;Zhehui Jin

  • Recent advances in understanding dendrite growth on alkali metal anodes

    He Liu;Xin-Bing Cheng;Zhehui Jin;Rui Zhang;Rui Zhang

  • Solvent Effect on the Pore-Size Dependence of an Organic Electrolyte Supercapacitor.

    Deen Jiang;Zhehui Jin;Douglous Henderson;Jianzhong Wu

  • Phase Behavior and Adsorption of Pure Substances and Mixtures and Characterization in Nanopore Structures by Density Functional Theory

    Zhidong Li;Zhehui Jin;Abbas Firoozabadi

  • Methane and carbon dioxide adsorption in clay-like slit pores by Monte Carlo simulations

    Zhehui Jin;Abbas Firoozabadi

  • A classical density functional theory for interfacial layering of ionic liquids

    Jianzhong Wu;Tao Jiang;Tao Jiang;Deen Jiang;Zhehui Jin

  • Characterization of Methane Excess and Absolute Adsorption in Various Clay Nanopores from Molecular Simulation

    Yuanyuan Tian;Yuanyuan Tian;Changhui Yan;Zhehui Jin

  • Electrolyte Structure of Lithium Polysulfides with Anti-Reductive Solvent Shells for Practical Lithium–Sulfur Batteries

    Xue-Qiang Zhang;Qi Jin;Yi-Ling Nan;Li-Peng Hou

  • Flow of methane in shale nanopores at low and high pressure by molecular dynamics simulations

    Zhehui Jin;Abbas Firoozabadi

  • Phase behavior and flow in shale nanopores from molecular simulations

    Zhehui Jin;Abbas Firoozabadi

  • Smart mobility control agent for enhanced oil recovery during CO2 flooding in ultra-low permeability reservoirs

    Yan Zhang;Mingwei Gao;Qing You;Hongfu Fan

  • Activating p-Blocking Centers in Perovskite for Efficient Water Splitting

    Bin Hua;Meng Li;Wanying Pang;Weiqiang Tang

  • Determination of the absolute adsorption/desorption isotherms of CH4 and n-C4H10 on shale from a nano-scale perspective

    Yueliang Liu;Huazhou Andy Li;Huazhou Andy Li;Yuanyuan Tian;Zhehui Jin

  • Recovery mechanisms of hydrocarbon mixtures in organic and inorganic nanopores during pressure drawdown and CO2 injection from molecular perspectives

    Mingshan Zhang;Shiyuan Zhan;Shiyuan Zhan;Zhehui Jin

  • Effect of water film on oil flow in quartz nanopores from molecular perspectives

    Shiyuan Zhan;Shiyuan Zhan;Shiyuan Zhan;Yuliang Su;Yuliang Su;Zhehui Jin;Wendong Wang;Wendong Wang

  • Density functional study of the electric double layer formed by a high density electrolyte.

    Douglas Henderson;Stanisław Lamperski;Zhehui Jin;Jianzhong Wu

  • Effects of Moisture Contents on Shale Gas Recovery and CO2 Sequestration.

    Juan Zhou;Juan Zhou;Zhehui Jin;Kai H Luo

  • A Mixed Ether Electrolyte for Lithium Metal Anode Protection in Working Lithium–Sulfur Batteries

    Wei-Jing Chen;Wei-Jing Chen;Chang-Xin Zhao;Bo-Quan Li;Qi Jin;Qi Jin

  • New Theoretical Method for Rapid Prediction of Solvation Free Energy in Water

    Shuangliang Zhao;Zhehui Jin;Jianzhong Wu

Frequent Co-Authors

Jianzhong Wu
Jianzhong Wu University of California, Riverside
Abbas Firoozabadi
Abbas Firoozabadi Rice University
Qiang Zhang
Qiang Zhang Tsinghua University
Kai H. Luo
Kai H. Luo University College London
De-en Jiang
De-en Jiang Vanderbilt University
Jia-Qi Huang
Jia-Qi Huang Beijing Institute of Technology
Xue‐Qiang Zhang
Xue‐Qiang Zhang Tsinghua University
David Sinton
David Sinton University of Toronto
Bo-Quan Li
Bo-Quan Li Beijing Institute of Technology
Stefan Kaskel
Stefan Kaskel TU Dresden

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