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Reiner Lomoth

Reiner Lomoth

D-Index & Metrics

Chemistry

D-Index
42
Citations
7371
World Ranking
17457
National Ranking
259

Overview

Reiner Lomoth is affiliated with Uppsala University in Sweden. Their research spans key areas in chemistry and materials science, with significant contributions in organic chemistry and materials chemistry. Their work also includes topics related to renewable energy, sustainability, the environment, electrical and electronic engineering, and catalysis.

Their research topics focus on several specialized areas including:

  • Crystallization and Solubility Studies
  • X-ray Diffraction in Crystallography
  • Catalytic C-H Functionalization Methods
  • CO2 Reduction Techniques and Catalysts
  • N-Heterocyclic Carbenes in Organic and Inorganic Chemistry
  • Organic Light-Emitting Diodes Research
  • Radical Photochemical Reactions

The scientist has published extensively, with frequent publication venues including:

  • The Cambridge Structural Database
  • Inorganic Chemistry
  • Chemical Science
  • Journal of the American Chemical Society
  • Chemistry - A European Journal

Among their recent papers are:

  • Photoredox catalysis via consecutive 2LMCT- and 3MLCT-excitation of an Fe(iii/ii)-N-heterocyclic carbene complex, 2022, Chemical Science
  • A Bidirectional Bioinspired [FeFe]-Hydrogenase Model, 2022, Journal of the American Chemical Society
  • The Carbene Cannibal: Photoinduced Symmetry-Breaking Charge Separation in an Fe(III) N-Heterocyclic Carbene, 2021, Journal of the American Chemical Society
  • Dye-sensitized solar cells based on Fe N-heterocyclic carbene photosensitizers with improved rod-like push-pull functionality, 2021, Chemical Science
  • High turnover photocatalytic hydrogen formation with an Fe(iii) N-heterocyclic carbene photosensitiser, 2022, Chemical Communications

Frequent co-authors in Reiner Lomoth's work include:

  • Kenneth Wärnmark
  • Pavel Chábera
  • Petter Persson
  • Catherine Johnson
  • Nils W. Rosemann

Best Publications

  • Modified phthalocyanines for efficient near-IR sensitization of nanostructured TiO(2) electrode.

    Jianjun He;Gábor Benkö;Ferenc Korodi;Tomás Polívka

  • Biomimetic and microbial approaches to solar fuel generation.

    Ann Magnuson;Magnus Anderlund;Olof Johansson;Peter Lindblad

  • A low-spin Fe( iii ) complex with 100-ps ligand-to-metal charge transfer photoluminescence

    Pavel Chabera;Yizhu Liu;Om Prakash;Erling Thyrhaug

  • Luminescence and reactivity of a charge-transfer excited iron complex with nanosecond lifetime.

    Kasper Skov Kjær;Nidhi Kaul;Om Prakash;Pavel Chábera

  • A Biomimetic Pathway for Hydrogen Evolution from a Model of the Iron Hydrogenase Active Site

    Sascha Ott;Mikael Kritikos;Björn Åkermark;Licheng Sun

  • Towards longer-lived metal-to-ligand charge transfer states of iron(II) complexes: an N-heterocyclic carbene approach.

    Yizhu Liu;Tobias Harlang;Sophie E. Canton;Pavel Chábera

  • High-turnover photochemical hydrogen production catalyzed by a model complex of the [FeFe]-hydrogenase active site.

    Daniel Streich;Yeni Astuti;Michele Orlandi;Lennart Schwartz

  • Iron sensitizer converts light to electrons with 92% yield

    Tobias C. B. Harlang;Yizhu Liu;Olga Gordivska;Lisa A. Fredin

  • FeII Hexa N-Heterocyclic Carbene Complex with a 528 ps Metal-to-Ligand Charge-Transfer Excited-State Lifetime

    Pavel Chábera;Kasper S. Kjaer;Om Prakash;Alireza Honarfar

  • The Role of Colloid Formation in the Photoinduced H2 Production with a RuII−PdII Supramolecular Complex: A Study by GC, XPS, and TEM

    Pengxiang Lei;Maria Hedlund;Reiner Lomoth;Håkan Rensmo

  • Spectroscopically characterized intermediates of catalytic H2 formation by [FeFe] hydrogenase models

    Stefanie Tschierlei;Sascha Ott;Reiner Lomoth

  • A heteroleptic ferrous complex with mesoionic bis(1,2,3-triazol-5-ylidene) ligands: taming the MLCT excited state of iron(II).

    Yizhu Liu;Kasper Skov Kjær;Kasper Skov Kjær;Lisa A. Fredin;Pavel Chabera

  • Introducing a dark reaction to photochemistry: photocatalytic hydrogen from [FeFe] hydrogenase active site model complexes.

    Reiner Lomoth;Sascha Ott

  • Model of the Iron Hydrogenase Active Site Covalently Linked to a Ruthenium Photosensitizer: Synthesis and Photophysical Properties

    Sascha Ott;Magnus Borgström;Mikael Kritikos;Reiner Lomoth

  • Ligand versus metal protonation of an iron hydrogenase active site mimic

    Gerriet Eilers;Lennart Schwartz;Matthias Stein;Giuseppe Zampella

  • Catalytic hydrogen evolution from mononuclear iron(II) carbonyl complexes as minimal functional models of the [FeFe] hydrogenase active site.

    Sandeep Kaur-Ghumaan;Lennart Schwartz;Reiner Lomoth;Matthias Stein

  • Iron hydrogenase active site mimic holding a proton and a hydride

    Lennart Schwartz;Lennart Schwartz;Gerriet Eilers;Lars Eriksson;Adolf Gogoll

  • Tuning the electronic properties of Fe2(μ-arenedithiolate)(CO)6−n(PMe3)n (n = 0, 2) complexes related to the [Fe–Fe]-hydrogenase active site

    Lennart Schwartz;Pradyumna S. Singh;Lars Eriksson;Reiner Lomoth

  • Electron donor-acceptor dyads based on ruthenium(II) bipyridine and terpyridine complexes bound to naphthalenediimide.

    Olof Johansson;Magnus Borgström;Reiner Lomoth;Magnus Palmblad

  • Mimicking the electron donor side of Photosystem II in artificial photosynthesis.

    Reiner Lomoth;Ann Magnuson;Martin Sjödin;Martin Sjödin;Ping Huang

  • Accelerating proton-coupled electron transfer of metal hydrides in catalyst model reactions

    Tianfei Liu;Meiyuan Guo;Andreas Orthaber;Reiner Lomoth

Frequent Co-Authors

Leif Hammarström
Leif Hammarström Uppsala University
Sascha Ott
Sascha Ott Uppsala University
Licheng Sun
Licheng Sun Royal Institute of Technology
Villy Sundström
Villy Sundström Lund University
Stenbjörn Styring
Stenbjörn Styring Uppsala University
Björn Åkermark
Björn Åkermark Stockholm University
Pavel Chábera
Pavel Chábera Lund University
Petter Persson
Petter Persson Lund University
Lars Eriksson
Lars Eriksson Linköping University
Jonas Bergquist
Jonas Bergquist Uppsala University

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