thomas WARD

thomas WARD

Universität Basel

H-index: 65

Europe-Switzerland

About thomas WARD

thomas WARD, With an exceptional h-index of 65 and a recent h-index of 41 (since 2020), a distinguished researcher at Universität Basel, specializes in the field of artificial enzyme.

His recent articles reflect a diverse array of research interests and contributions to the field:

The Two Janus Faces of CpRu‐Based Deallylation Catalysts and Their Application for in cellulo Prodrug Uncaging

Enhanced Sequence-Activity Mapping and Evolution of Artificial Metalloenzymes by Active Learning

An artificial nickel chlorinase based on the biotin–streptavidin technology

Directed Evolution of an Artificial Hydroxylase Based on a Thermostable Human Carbonic Anhydrase Protein

Artificial Metalloenzyme Catalyzed Enantioselective Carboamination of Alkenes

Model–state-of-the-art modelling and computational analysis of reactive sites: general discussion

Aqueous stability and redox chemistry of synthetic [Fe4S4] clusters

A customized Bayesian algorithm to optimize enzyme-catalyzed reactions

thomas WARD Information

University

Position

Professor of chemistry

Citations(all)

14136

Citations(since 2020)

6070

Cited By

10551

hIndex(all)

65

hIndex(since 2020)

41

i10Index(all)

170

i10Index(since 2020)

106

Email

University Profile Page

Google Scholar

thomas WARD Skills & Research Interests

artificial enzyme

Top articles of thomas WARD

Title

Journal

Author(s)

Publication Date

The Two Janus Faces of CpRu‐Based Deallylation Catalysts and Their Application for in cellulo Prodrug Uncaging

Helvetica Chimica Acta

Alain Baiyoumy

Robin Vinck

Thomas R Ward

2024/1/25

Enhanced Sequence-Activity Mapping and Evolution of Artificial Metalloenzymes by Active Learning

bioRxiv

Tobias Vornholt

Mojmír Mutný

Gregor W Schmidt

Christian Schellhaas

Ryo Tachibana

...

2024

An artificial nickel chlorinase based on the biotin–streptavidin technology

Chemical Communications

Kun Yu

Kailin Zhang

Roman P Jakob

Timm Maier

Thomas R Ward

2024

Directed Evolution of an Artificial Hydroxylase Based on a Thermostable Human Carbonic Anhydrase Protein

Iori Morita

Adriana Faraone

Kailin Zhang

Roman P Jakob

Timm Maier

...

2024/4/26

Artificial Metalloenzyme Catalyzed Enantioselective Carboamination of Alkenes

Journal of the American Chemical Society

Kun Yu

Zhi Zou

Nico V Igareta

Ryo Tachibana

Julia Bechter

...

2023/7/20

Model–state-of-the-art modelling and computational analysis of reactive sites: general discussion

Faraday Discussions

Basheer Chanbasha

Miquel Costas

Jorge Echeverría

Odile Eisenstein

Mark Greenhalgh

...

2023

Aqueous stability and redox chemistry of synthetic [Fe4S4] clusters

Valerie Waser

Thomas R Ward

2023/11/15

A customized Bayesian algorithm to optimize enzyme-catalyzed reactions

ACS Sustainable Chemistry & Engineering

Ryo Tachibana

Kailin Zhang

Zhi Zou

Simon Burgener

Thomas R Ward

2023/8/3

Manipulate–techniques to manipulate the surroundings of a synthetic catalyst to control activity and selectivity: general discussion

Faraday Discussions

Torsten Beweries

Michael R Buchmeiser

Neil R Champness

Miquel Costas

Anne Duhme-Klair

...

2023

An Artificial [Fe4S4]-Containing Metalloenzyme for the Reduction of CO2 to Hydrocarbons

Journal of the American Chemical Society

Valerie Waser

Manjistha Mukherjee

Ryo Tachibana

Nico V Igareta

Thomas R Ward

2023/6/30

Binding Interactions and Inhibition Mechanisms of Gold Complexes in Thiamine Diphosphate-Dependent Enzymes

Biochemistry

Simon Burgener

Bratislav Dačević

Xiang Zhang

Thomas R Ward

2023/11/6

Spiers Memorial Lecture: Shielding the active site: a streptavidin superoxide-dismutase chimera as a host protein for asymmetric transfer hydrogenation

Faraday Discussions

Nico V Igareta

Ryo Tachibana

Daniel C Spiess

Ryan L Peterson

Thomas R Ward

2023

Introduction: bridging the gaps: learning from catalysis across boundaries

Thomas R Ward

Christophe Copéret

2023/5/10

Manganese Transfer Hydrogenases Based on the Biotin‐Streptavidin Technology

Angewandte Chemie

Weijin Wang

Ryo Tachibana

Zhi Zou

Dongping Chen

Xiang Zhang

...

2023/10/23

A Microbial Cell Factory Combining an Artificial Metathase with a Fatty Acid Decarboxylase for New-to-Nature Synthesis of Cycloalkenes

Thomas Ward

Zhi Zou

Shuke Wu

Daniel Gerngross

Boris Lozhkin

...

2023/12/13

A Co (TAML)-based artificial metalloenzyme for asymmetric radical-type oxygen atom transfer catalysis

Chemical Communications

Eva J Meeus

Nico V Igareta

Iori Morita

Thomas R Ward

Bas de Bruin

...

2023

Click, Lock & Dye: a chromogenic handle for selective cysteine modification

Yong Hua

Zhi Zou

Alessandro Prescimone

Thomas R Ward

Marcel Mayor

...

2023/9/15

An Artificial Metalloenzyme for Atroposelective Metathesis

ChemCatChem

Tobias Vornholt

Zlatko Jončev

Valerio Sabatino

Sven Panke

Thomas R Ward

...

2023/12/7

Make–underpinning concepts of the synthesis of systems where non-covalent interactions are important: general discussion

Faraday Discussions

Torsten Beweries

Michael R Buchmeiser

Frances E Bugden

Neil R Champness

Basheer Chanbasha

...

2023

An Artificial Peroxidase based on the Biotin-Streptavidin Technology that Rivals the Efficiency of Natural Peroxidases

Manjistha Mukherjee

Valerie Waser

Nico V Igareta

Alec H Follmer

Timm Maier

...

2023/9/8

See List of Professors in thomas WARD University(Universität Basel)