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Chemistry

D-Index
62
Citations
14651
World Ranking
8771
National Ranking
627

Overview

Jan W. Bats is a researcher affiliated with Goethe University Frankfurt in Germany. Their primary field of study is Materials Science, with a strong focus on Materials Chemistry and Physical and Theoretical Chemistry as subfields. The main topics covered in their work include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, and Crystallography and Molecular Interactions.

Their publication record includes several recent papers centered on experimental crystal structure determination published in The Cambridge Structural Database. Notable recent works include:

  • CCDC 1573762: Experimental Crystal Structure Determination (2022, The Cambridge Structural Database)
  • CCDC 1884078: Experimental Crystal Structure Determination (2020, The Cambridge Structural Database)
  • CCDC 1569100: Experimental Crystal Structure Determination (2020, The Cambridge Structural Database)
  • CCDC 1563767: Experimental Crystal Structure Determination (2020, The Cambridge Structural Database)
  • CCDC 1563603: Experimental Crystal Structure Determination (2020, The Cambridge Structural Database)

Jan W. Bats has frequently published in The Cambridge Structural Database, contributing to a total of 22 publications in this venue. Their collaborative work includes frequent co-authorship with several researchers, such as:

  • Michael W. Goebel
  • Mirco Zeiger
  • Andreas Terfort
  • Michael Gärtner
  • Eric Sauter

Their research in crystallization processes and solubility studies typically involves X-ray diffraction methods to analyze and determine structural properties. This aligns with their emphasis on crystallography and molecular interactions within the domain of materials chemistry.

Best Publications

  • Highly Selective Gold-Catalyzed Arene Synthesis

    A. Stephen K. Hashmi;and Tanja M. Frost;J. W. Bats

  • Gold Catalysis: Mild Conditions for the Synthesis of Oxazoles from N-Propargylcarboxamides and Mechanistic Aspects

    A Stephen K Hashmi;Jan P Weyrauch;Wolfgang Frey;Jan W Bats

  • Gold Catalysis: Evidence for the In‐situ Reduction of Gold(III) During the Cyclization of Allenyl Carbinols

    A. Stephen K. Hashmi;A. Stephen K. Hashmi;M. Carmen Blanco;Dirk Fischer;Jan W. Bats

  • Cyclization of Propargylic Amides: Mild Access to Oxazole Derivatives

    Jan P. Weyrauch;A. Stephen K. Hashmi;Andreas Schuster;Tobias Hengst

  • Organocatalytic Asymmetric Domino Reactions : A Cascade Consisting of a Michael Addition and an Aldehyde α-Alkylation

    Dieter Enders;Chuan Wang;Jan W. Bats

  • Gold catalysis: on the phenol synthesis.

    Hashmi As;Frost Tm;Bats Jw

  • Gold catalysis: proof of arene oxides as intermediates in the phenol synthesis.

    A Stephen K Hashmi;Matthias Rudolph;Jan P Weyrauch;Michael Wölfle

  • Asymmetric Counterion Pair Catalysis: An Enantioselective Brønsted Acid‐Catalyzed Protonation

    Magnus Rueping;Thomas Theissmann;Sadiya Raja;Jan W. Bats

  • Gold Catalysis: First Applications of Cationic Binuclear Gold(I) Complexes and the First Intermolecular Reaction of an Alkyne with a Furan

    A. Stephen K. Hashmi;M. Carmen Blanco;Elzen Kurpejović;Wolfgang Frey

  • Gold catalysis: deuterated substrates as the key for an experimental insight into the mechanism and selectivity of the phenol synthesis.

    A. Stephen K. Hashmi;Matthias Rudolph;Hans-Ullrich Siehl;Masato Tanaka

  • Gold‐Catalyzed Synthesis of Chroman, Dihydrobenzofuran, Dihydroindole, and Tetrahydroquinoline Derivatives

    A. Stephen K. Hashmi;Matthias Rudolph;Jan W. Bats;Wolfgang Frey

  • Asymmetric organocatalytic domino Michael/aldol reactions: enantioselective synthesis of chiral cycloheptanones, tetrahydrochromenones, and polyfunctionalized bicyclo[3.2.1]octanes.

    Magnus Rueping;Alexander Kuenkel;Francisco Tato;Jan W. Bats

  • C5H4 ? BR2 Bending in Ferrocenylboranes: A Delocalized Through‐Space Interaction Between Iron and Boron

    Matthias Scheibitz;Michael Bolte;Jan W. Bats;H.-Wolfram Lerner

  • Peptide conformations. 46. Conformational analysis of a superpotent cytoprotective cyclic somatostatin analog

    Horst. Kessler;Jan Willem. Bats;Christian. Griesinger;Sylvie. Koll

  • C-C-Bond Formation by the Palladium-Catalyzed Cycloisomerization/Dimerization of Terminal Allenyl Ketones: Selectivity and Mechanistic Aspects.

    Unknown

  • Gold catalysis: efficient synthesis and structural assignment of jungianol and epi-jungianol.

    A. Stephen K. Hashmi;Li Ding;Jan W. Bats;Peter Fischer

  • Gold Catalysis: Phenol Synthesis in the Presence of Functional Groups

    A. Stephen K. Hashmi;Jan P. Weyrauch;Elzen Kurpejović;Tanja M. Frost

  • Gold Catalysis: Switching the Pathway of the Furan‐Yne Cyclization

    A. Stephen K. Hashmi;Matthias Rudolph;Jürgen Huck;Wolfgang Frey

  • Asymmetric Synthesis of Polyfunctionalized Mono-, Bi-, and Tricyclic Carbon Frameworks via Organocatalytic Domino Reactions

    Dieter Enders;Matthias R. M. Hüttl;Gerhard Raabe;Jan W. Bats

  • Gold Catalysis: Synthesis of 3-Acylindenes from 2-Alkynylaryl Epoxides

    A. Stephen K. Hashmi;Miriam Bührle;Ralph Salathé;Jan W. Bats

  • Gold‐Katalyse: Nachweis von Arenoxiden als Zwischenstufen der Phenol‐Synthese

    A. Stephen K. Hashmi;Matthias Rudolph;Jan P. Weyrauch;Michael Wölfle

Frequent Co-Authors

A. Stephen K. Hashmi
A. Stephen K. Hashmi Heidelberg University
Matthias Wagner
Matthias Wagner Goethe University Frankfurt
Michael Bolte
Michael Bolte Goethe University Frankfurt
Hartmut Fuess
Hartmut Fuess Technical University of Darmstadt
Hans-Wolfram Lerner
Hans-Wolfram Lerner Goethe University Frankfurt
Herbert W. Roesky
Herbert W. Roesky University of Göttingen
Hans-Günther Schmalz
Hans-Günther Schmalz University of Cologne
Johann Mulzer
Johann Mulzer University of Vienna
Michael Schmittel
Michael Schmittel University of Siegen
Hans Bock
Hans Bock Goethe University Frankfurt

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