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D-Index & Metrics

Biology and Biochemistry

D-Index
78
Citations
48484
World Ranking
4430
National Ranking
2151

Overview

Wei Wang is a researcher affiliated with the University of California, San Diego in the United States. Their research primarily focuses on engineering and materials science, with a broad scope encompassing materials chemistry, mechanical engineering, catalysis, biomedical engineering, and inorganic chemistry.

The researcher's work centers on catalytic processes in materials science, including studies on hydrodesulfurization and oxidation reactions. They also investigate catalysts for methane reforming, zeolite catalysis and synthesis, catalysis for biomass conversion, and nanomaterials for catalytic reactions.

Wei Wang has published extensively in several prominent scientific venues. These include:

  • SSRN Electronic Journal
  • Fuel
  • Journal of Catalysis
  • Fuel Processing Technology
  • Journal of Environmental Chemical Engineering

Among their recent publications are:

  • "Co-Ni alloy supported on CeO2 as a bimetallic catalyst for dry reforming of methane," 2020, International Journal of Hydrogen Energy
  • "Advances in Heterogeneous Catalysts for Lignin Hydrogenolysis," 2023, Advanced Science
  • "Supported Ni2P catalysts derived from nickel phyllosilicate with enhanced hydrodesulfurization performance," 2023, Journal of Catalysis
  • "The hydroisomerization of n-hexane over highly selective Pd/ZSM-22 bifunctional catalysts: The improvements of metal-acid balance by room temperature electron reduction method," 2020, Fuel
  • "Facile synthesis of ultrafine nanosized ZSM-5 zeolite using a hydroxyl radical initiator for enhanced catalytic performance in the MTG reaction," 2020, Microporous and Mesoporous Materials

The researcher collaborates frequently with colleagues who have contributed to their publications multiple times. Their frequent coauthors include Wei Wu, Linfei Xiao, Xuefeng Bai, Chunmu Guo, and Zhichao Sun.

Best Publications

  • Integrative analysis of 111 reference human epigenomes

    Anshul Kundaje;Wouter Meuleman;Wouter Meuleman;Jason Ernst

  • Automatic atom type and bond type perception in molecular mechanical calculations.

    Junmei Wang;Wei Wang;Peter A. Kollman;David A. Case

  • Calculating Structures and Free Energies of Complex Molecules: Combining Molecular Mechanics and Continuum Models

    Peter A. Kollman;Irina Massova;Carolina Reyes;Bernd Kuhn

  • Distinct and predictive chromatin signatures of transcriptional promoters and enhancers in the human genome.

    Nathaniel D Heintzman;Rhona K Stuart;Gary Hon;Yutao Fu

  • Assessing the performance of the MM/PBSA and MM/GBSA methods. 1. The accuracy of binding free energy calculations based on molecular dynamics simulations.

    Tingjun Hou;Junmei Wang;Youyong Li;Wei Wang

  • Neuronal subtypes and diversity revealed by single-nucleus RNA sequencing of the human brain.

    Blue B. Lake;Rizi Ai;Gwendolyn E. Kaeser;Gwendolyn E. Kaeser;Neeraj S. Salathia

  • Assessing the performance of the molecular mechanics/Poisson Boltzmann surface area and molecular mechanics/generalized Born surface area methods. II. the accuracy of ranking poses generated from docking

    Tingjun Hou;Junmei Wang;Youyong Li;Wei Wang

  • De novo mutations in histone-modifying genes in congenital heart disease

    Samir Zaidi;Murim Choi;Hiroko Wakimoto;Lijiang Ma

  • Distinct epigenomic landscapes of pluripotent and lineage-committed human cells

    R. David Hawkins;Gary C. Hon;Leonard K. Lee;QueMinh Ngo

  • Use of MM-PBSA in Reproducing the Binding Free Energies to HIV-1 RT of TIBO Derivatives and Predicting the Binding Mode to HIV-1 RT of Efavirenz by Docking and MM-PBSA

    Junmei Wang;Paul Morin;Wei Wang;Peter A. Kollman

  • Epigenomic Analysis of Multilineage Differentiation of Human Embryonic Stem Cells

    Wei Xie;Matthew D. Schultz;Ryan Lister;Zhonggang Hou

  • Biomolecular Simulations: Recent Developments in Force Fields, Simulations of Enzyme Catalysis, Protein-Ligand, Protein-Protein, and Protein-Nucleic Acid Noncovalent Interactions

    Wei Wang;Oreola Donini;Carolina M. Reyes;Peter A. Kollman

  • Runx3 programs CD8 + T cell residency in non-lymphoid tissues and tumours

    J. Justin Milner;Clara Toma;Bingfei Yu;Kai Zhang

  • Human body epigenome maps reveal noncanonical DNA methylation variation

    Matthew D. Schultz;Yupeng He;John W. Whitaker;Manoj Hariharan

  • FGF23 neutralization improves chronic kidney disease–associated hyperparathyroidism yet increases mortality

    Victoria Shalhoub;Edward M. Shatzen;Sabrina C. Ward;James Davis

  • Free energy calculations on dimer stability of the HIV protease using molecular dynamics and a continuum solvent model.

    Wei Wang;Peter A Kollman

  • Allele-specific methylation is prevalent and is contributed by CpG-SNPs in the human genome

    Robert Shoemaker;Jie Deng;Wei Wang;Kun Zhang

  • Computational study of protein specificity: The molecular basis of HIV-1 protease drug resistance

    Wei Wang;Peter A. Kollman

  • DNA methylome signature in rheumatoid arthritis

    Kazuhisa Nakano;John W Whitaker;David L Boyle;Wei Wang

  • Epigenomic Analysis of Multi-lineage Differentiation of Human Embryonic Stem Cells

    Benjamin Garcia;Wei Xie;Matt Schultz;Ryan Lister

Frequent Co-Authors

Bing Ren
Bing Ren New York Genome Center
Tingjun Hou
Tingjun Hou Zhejiang University
Gary S. Firestein
Gary S. Firestein University of California, San Diego
David L. Boyle
David L. Boyle University of California, San Diego
Joseph R. Ecker
Joseph R. Ecker Salk Institute for Biological Studies
Richard L. Klemke
Richard L. Klemke University of California, San Diego
Jeffery G. Saven
Jeffery G. Saven University of Pennsylvania
Peter A. Kollman
Peter A. Kollman University of California, San Francisco
Axel Visel
Axel Visel Lawrence Berkeley National Laboratory
Len A. Pennacchio
Len A. Pennacchio Lawrence Berkeley National Laboratory

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