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Chemistry

D-Index
63
Citations
15116
World Ranking
8370
National Ranking
475

Research.com Recognitions

  • 2012 - Herman Skolnik Award, American Chemical Society (ACS)

Overview

Henry S. Rzepa is affiliated with Imperial College London in the United Kingdom. Their research primarily falls within the broad field of chemistry, with a focus on organic chemistry, molecular biology, materials chemistry, and information systems. Their work spans a range of topics including chemical synthesis and analysis, research data management practices, scientific computing and data management, asymmetric synthesis and catalysis, organoboron and organosilicon chemistry, analytical chemistry and chromatography, and synthesis and catalytic reactions.

Some recent papers authored by Rzepa and collaborators include:

  • General Synthesis of 3-Azabicyclo[3.1.1]heptanes and Evaluation of Their Properties as Saturated Isosteres, 2023, Angewandte Chemie International Edition
  • Equilibrium Formation of Stable All-Silicon Versions of 1,3-Cyclobutanediyl, 2020, Angewandte Chemie International Edition
  • Cycloaddition Reactions of Azides and Electron-Deficient Alkenes in Deep Eutectic Solvents: Pyrazolines, Aziridines and Other Surprises, 2020, Advanced Synthesis & Catalysis
  • IUPAC specification for the FAIR management of spectroscopic data in chemistry (IUPAC FAIRSpec) - guiding principles, 2022, Pure and Applied Chemistry
  • On the Use of Triarylsilanols as Catalysts for Direct Amidation of Carboxylic Acids, 2023, The Journal of Organic Chemistry

Frequent co-authors working with Rzepa include Andrew J. P. White, Thomas Mies, Anthony G. M. Barrett, Pavel K. Mykhailiuk, and D. Christopher Braddock. This group has contributed collaboratively on a variety of research projects.

Rzepa regularly publishes in several scientific journals, most notably:

  • Angewandte Chemie International Edition
  • The Journal of Organic Chemistry
  • Physical Chemistry Chemical Physics
  • Angewandte Chemie
  • The Cambridge Structural Database

Areas of study extend deeply into organic chemistry, supported by an emphasis on molecular biology and materials chemistry, and overlap with disciplines of information systems and their management. Topics of particular interest include chemical synthesis and analysis, along with scientific computing and data management methodologies.

Rzepa received the Herman Skolnik Award from the American Chemical Society (ACS) in 2012, recognizing contributions related to their field of study.

Best Publications

  • The Blue Obelisk—Interoperability in Chemical Informatics

    Rajarshi Guha;Michael T. Howard;Geoffrey R. Hutchison;Peter Murray-Rust

  • MNDO parameters for third period elements

    Michael J. S. Dewar;Michael L. McKee;Henry S. Rzepa

  • Some influences of fluorine in bioorganic chemistry

    David O’Hagan;Henry S. Rzepa

  • Tuning azoheteroarene photoswitch performance through heteroaryl design

    Joaquín Calbo;Claire E. Weston;Andrew J. P. White;Henry S. Rzepa

  • Möbius aromaticity and delocalization.

    Henry S. Rzepa

  • Chemical Markup, XML, and the Worldwide Web. 1. Basic Principles

    Peter Murray-Rust;Henry S. Rzepa

  • A computational analysis of the ring-opening polymerization of rac-lactide initiated by single-site β-diketiminate metal complexes : Defining the mechanistic pathway and the origin of stereocontrol

    Edward L. Marshall;Vernon C. Gibson;Henry S. Rzepa

  • Synthetic, structural, mechanistic, and computational studies on single-site beta-diketiminate tin(II) initiators for the polymerization of rac-lactide.

    Andrew P. Dove;Vernon C. Gibson;Edward L. Marshall;Henry S. Rzepa

  • A Tricyclic Aromatic Isomer of Hexasilabenzene

    Kai Abersfelder;Andrew J. P. White;Henry S. Rzepa;David Scheschkewitz

  • Quadruple bonding in C 2 and analogous eight-valence electron species

    Sason Shaik;David Danovich;Wei Wu;Peifeng Su

  • Ground states of molecules: Part XLII. Vibrational frequencies of isotopically-substituted molecules calculated using MINDO/3 force constants

    Michael J.S. Dewar;Henry S. Rzepa

  • Chemoselective Polymerizations from Mixtures of Epoxide, Lactone, Anhydride, and Carbon Dioxide

    Charles Romain;Yunqing Zhu;Paul Dingwall;Shyeni Paul

  • Ground states of molecules. 40. MNDO results for molecules containing fluorine

    Michael J. S. Dewar;Henry S. Rzepa

  • The Houk–List transition states for organocatalytic mechanisms revisited

    Alan Armstrong;Roberto A. Boto;Roberto A. Boto;Paul Dingwall;Julia Contreras-García;Julia Contreras-García

  • Crocker, not Armit and Robinson, begat the six aromatic electrons.

    Alexandru T. Balaban;Paul V. R. Schleyer;Henry S. Rzepa

  • Chemical markup, XML, and the World Wide Web. 4. CML schema.

    Peter Murray-Rust;Henry S. Rzepa

  • Ground states of molecules. 49. MINDO/3 study of the retro-Diels-Alder reaction of cyclohexene

    Michael J. S. Dewar;Santiago Olivella;Henry S. Rzepa

  • Design, Synthesis, and Evaluation of a Helicenoidal DMAP Lewis Base Catalyst

    Matthew R. Crittall;Henry S. Rzepa;David R. Carbery

  • Calculations of electron affinities using the MNDO semiempirical SCF-MO method

    Michael J. S. Dewar;Henry S. Rzepa

  • Experimental and Computational Investigation of the Mechanism of Carbon Dioxide/Cyclohexene Oxide Copolymerization Using a Dizinc Catalyst

    Antoine Buchard;Fabian Jutz;Michael R. Kember;Andrew J. P. White

  • Ground states of molecules. 45. MNDO results for molecules containing beryllium

    Michael J. S. Dewar;Henry S. Rzepa

Frequent Co-Authors

Michael J. S. Dewar
Michael J. S. Dewar The University of Texas at Austin
David Scheschkewitz
David Scheschkewitz Saarland University
Andrew J. P. White
Andrew J. P. White Imperial College London
Vernon C. Gibson
Vernon C. Gibson Imperial College London
David O'Hagan
David O'Hagan University of St Andrews
Alexandra M. Z. Slawin
Alexandra M. Z. Slawin University of St Andrews
Matthew J. Fuchter
Matthew J. Fuchter Imperial College London
Volker Huch
Volker Huch Saarland University
King Kuok (Mimi) Hii
King Kuok (Mimi) Hii Imperial College London
Egon Willighagen
Egon Willighagen Maastricht University

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