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Tile Gieshoff

Johannes Gutenberg University Mainz · DE
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Area of research
Organic Chemistry · Materials Chemistry
Research interest
Research interests include Chemistry, Combinatorial chemistry, Electrochemistry, Reagent, Renewable energy, and Biochemical engineering.
h-index
citations
3,855
works
12
NIH funding
primary concept
email

Recent publications

Electrifying Organic Synthesis
Angewandte Chemie International Edition 2018cited by 1,482position: middledoi
Modern Electrochemical Aspects for the Synthesis of Value‐Added Organic Products
Angewandte Chemie International Edition 2018cited by 1,077position: middledoi
Elektrifizierung der organischen Synthese
Angewandte Chemie 2018cited by 324position: middledoi
Moderne Aspekte der Elektrochemie zur Synthese hochwertiger organischer Produkte
Angewandte Chemie 2018cited by 254position: middledoi
Metal‐ and Reagent‐Free Dehydrogenative Formal Benzyl–Aryl Cross‐Coupling by Anodic Activation in 1,1,1,3,3,3‐Hexafluoropropan‐2‐ol
Angewandte Chemie International Edition 2018cited by 106position: middledoi
Metall‐ und reagensfreie dehydrierende formale Benzyl‐Aryl‐Kreuzkupplung durch anodische Aktivierung in 1,1,1,3,3,3‐Hexafluorpropan‐2‐ol
Angewandte Chemie 2018cited by 42position: middledoi
Electrochemical Formation of 3,5-Diimido-1,2-dithiolanes by Dehydrogenative Coupling
Organic Letters 2018cited by 24position: middledoi
Insights into the Mechanism of Anodic N–N Bond Formation by Dehydrogenative Coupling
Journal of the American Chemical Society 2017cited by 207position: firstdoi
Electrochemical synthesis of benzoxazoles from anilides – a new approach to employ amidyl radical intermediates
Chemical Communications 2017cited by 100position: firstdoi
Electrochemical Conversion of Phthaldianilides to Phthalazin‐1,4‐diones by Dehydrogenative N−N Bond Formation
Chemistry - A European Journal 2017cited by 53position: middledoi
Access to Pyrazolidin‐3,5‐diones through Anodic N–N Bond Formation
Angewandte Chemie International Edition 2016cited by 162position: firstdoi
One-step synthesis of multi-alkyne functional hyperbranched polyglycerols by copolymerization of glycidyl propargyl ether and glycidol
Polymer Chemistry 2013cited by 24position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Siegfried R. Waldvogel · Johannes Gutenberg University Mainz11 papers (2016–2018)Dieter Schollmeyer · Johannes Gutenberg University Mainz7 papers (2016–2018)Anton Wiebe · Johannes Gutenberg University Mainz6 papers (2018–2018)Eduardo Rodrigo · Johannes Gutenberg University Mainz4 papers (2018–2018)Anton Kehl · Johannes Gutenberg University Mainz4 papers (2017–2018)Sabine Möhle · Johannes Gutenberg University Mainz4 papers (2018–2018)Michael Zirbes · Johannes Gutenberg University Mainz4 papers (2018–2018) · 2 papers (2017–2017)Yasushi Imada · Johannes Gutenberg University Mainz2 papers (2018–2018) · 2 papers (2018–2018)Johannes L. Röckl · Johannes Gutenberg University Mainz2 papers (2018–2018)Robert Franke · Evonik (Germany)2 papers (2018–2018)Vincent Kilian · Johannes Gutenberg University Mainz1 papers (2018–2018)Christoph Schüll · Johannes Gutenberg University Mainz1 papers (2013–2013)Valentina M. Breising · Johannes Gutenberg University Mainz1 papers (2018–2018)Holger Frey · Johannes Gutenberg University Mainz1 papers (2013–2013)
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