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Chemistry

D-Index
67
Citations
14324
World Ranking
6998
National Ranking
167

Research.com Recognitions

  • 1997 - Fellow of the Australian Academy of Science

Overview

Ian G. Dance is affiliated with the University of New South Wales in Australia. Their research focuses on several fields, primarily Energy, Materials Science, and Chemical Engineering. Within these fields, Dance's work covers subfields such as Renewable Energy, Sustainability and the Environment, Materials Chemistry, Catalysis, Process Chemistry and Technology, and Inorganic Chemistry.

The main topics explored in Dance's research include:

  • Metalloenzymes and iron-sulfur proteins
  • Hydrogen Storage and Materials
  • Ammonia Synthesis and Nitrogen Reduction
  • Electrocatalysts for Energy Conversion
  • CO2 Reduction Techniques and Catalysts
  • Carbon dioxide utilization in catalysis
  • Inorganic Chemistry and Materials

Their publication record shows a strong association with the journal Dalton Transactions, having published 10 papers there. Other venues include Chemistry - A European Journal and ChemBioChem.

Recent papers by Ian G. Dance include:

  • Structures and reaction dynamics of N2 and H2 binding at FeMo-co, the active site of nitrogenase, 2021, Dalton Transactions
  • Calculating the chemical mechanism of nitrogenase: new working hypotheses, 2022, Dalton Transactions
  • Understanding the tethered unhooking and rehooking of S2B in the reaction domain of FeMo-co, the active site of nitrogenase, 2022, Dalton Transactions
  • What triggers the coupling of proton transfer and electron transfer at the active site of nitrogenase?, 2024, Dalton Transactions
  • The binding of reducible N2 in the reaction domain of nitrogenase, 2023, Dalton Transactions

Dance has been recognized as a Fellow of the Australian Academy of Science since 1997.

Best Publications

  • The structural chemistry of metal thiolate complexes

    Ian G. Dance

  • A cucurbituril-based gyroscane: a new supramolecular form.

    Anthony I. Day;Rodney J. Blanch;Alan P. Arnold;Susan Lorenzo

  • Syntheses, properties, and molecular and crystal structures of (Me4N)4[E4M10(SPh)16] (E = sulfur or selenium; M = zinc or cadmium): molecular supertetrahedral fragments of the cubic metal chalcogenide lattice

    Ian G. Dance;Anna Choy;Marcia L. Scudder

  • Supramolecular Motifs: Concerted Multiple Phenyl Embraces between Ph4P+ Cations Are Attractive and Ubiquitous

    Ian Dance;Marcia Scudder

  • Layered structure of crystalline compounds silver thiolates (AgSR)

    Ian G. Dance;Keith J. Fisher;R. M. Herath. Banda;Marcia L. Scudder

  • Distance criteria for crystal packing analysis of supramolecular motifs

    Ian Dance

  • [S4Cd17(SPh)28]2-, the first member of a third series of tetrahedral [SWMX(SR)y]z- clusters

    Garry S. H. Lee;Don C. Craig;Ida. Ma;Marcia L. Scudder

  • Substrate interactions with nitrogenase: Fe versus Mo.

    Lance C. Seefeldt;Ian G. Dance;Dennis R. Dean

  • The crystal supramolecularity of metal phenanthroline complexes

    Vanessa Russell;Marcia Scudder;Ian Dance

  • Metal chalcogenide cluster chemistry

    Ian Dance;Keith Fisher

  • The sextuple phenyl embrace, a ubiquitous concerted supramolecular motif

    Ian Dance;Marcia Scudder

  • X-ray absorption spectroscopy of cuprous-thiolate clusters in proteins and model systems

    Ingrid J. Pickering;Graham N. George;Charles T. Dameron;Boris Kurz

  • Molecules embracing in crystals

    Ian Dance;Marcia Scudder

  • Crystal supramolecular motifs: two-dimensional grids of terpy embraces in [ML2]z complexes (L=terpy or aromatic N3-tridentate ligand)

    Marcia L. Scudder;Harold A. Goodwin;Ian G. Dance

  • Questions for crystal engineering of halocuprate complexes: concepts for a difficult system

    Catrin Hasselgren Arnby;Susan Elisabeth Jagner;Ian Dance

  • The intertwined double-(-AgSR-).infin.-strand chain structure of crystalline (3-methylpentane-3-thiolato) silver, in relation to (AgSr)8 molecules in solution

    I. G. Dance;L. J. Fitzpatrick;A. D. Rae;M. L. Scudder

  • Reactions of dithiolene complexes with amines. II. Formation and properties of mixed-ligand dithiolene .alpha.-diimine complexes of nickel

    Thomas R. Miller;Ian G. Dance

  • The Binding and Reduction of Dinitrogen at an Fe4 Face of the FeMo Cluster of Nitrogenase

    IG Dance

  • The consequences of an interstitial N atom in the FeMo cofactor of nitrogenase.

    Ian Dance

  • Engineering grids of metal complexes: development of the 2D M(terpy)2 embrace motif in crystals

    John McMurtrie;Ian Dance

Frequent Co-Authors

Michael A. Wilson
Michael A. Wilson University of Sydney
Graham A. Bowmaker
Graham A. Bowmaker University of Auckland
Anthony G. Wedd
Anthony G. Wedd University of Melbourne
Hugh H. Harris
Hugh H. Harris University of Adelaide
Graham N. George
Graham N. George University of Saskatchewan
Michael C. Jennings
Michael C. Jennings University of Western Ontario
Ingrid J. Pickering
Ingrid J. Pickering University of Saskatchewan
Dennis R. Winge
Dennis R. Winge University of Utah
Dennis R. Dean
Dennis R. Dean Virginia Tech
Andrew M. McDonagh
Andrew M. McDonagh University of Technology Sydney

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