0000000000214707

AUTHOR

Lara Schulz

showing 13 related works from this author

Oxidative (Cross-)Coupling Reactions Mediated by C-H Activation of Thiophene Derivatives by Using Molybdenum(V) Reagents

2014

Oxidative coupling by using molybdenum pentachloride provides fast and modular access to sophisticated thienoacenes in excellent yields. The coupling process can be accomplished with thiophene and benzothiophene derivatives and provides various complex skeletons such as spirocyclic compounds. In this approach, the first cross-coupling reactions with the use of MoCl5 were established and important motifs for semiconducting materials were synthesized.

Organic ChemistryBenzothiophenechemistry.chemical_elementOxidative phosphorylationCombinatorial chemistryCoupling reactionCoupling (electronics)chemistry.chemical_compoundchemistryMolybdenumReagentThiopheneOrganic chemistryOxidative coupling of methanePhysical and Theoretical ChemistryEuropean Journal of Organic Chemistry
researchProduct

About the selectivity and reactivity of active nickel electrodes in C–C coupling reactions

2020

Active anodes which are operating in highly stable protic media such as 1,1,1,3,3,3-hexafluoroisopropanol are rare. Nickel forms, within this unique solvent, a non-sacrificial active anode at constant current conditions, which is superior to the reported powerful molybdenum system. The reactivity for dehydrogenative coupling reactions of this novel active anode increases when the electrolyte is not stirred during electrolysis. Besides the aryl-aryl coupling, a dehydrogenative arylation reaction of benzylic nitriles was found while stirring the mixture providing quick access to synthetically useful building blocks.

ElectrolysisChemistryGeneral Chemical Engineeringchemistry.chemical_elementGeneral ChemistryElectrolyteCombinatorial chemistryCoupling reactionAnodelaw.inventionSolventNickellawReactivity (chemistry)SelectivityRSC Advances
researchProduct

ChemInform Abstract: Oxidative (Cross-)Coupling Reactions Mediated by C-H Activation of Thiophene Derivatives by Using Molybdenum(V) Reagents.

2015

The use of MoCl5 renders possible the preparation of various synthetically important polycyclic thienoacenes.

chemistryMolybdenumReagentchemistry.chemical_elementGeneral MedicineOxidative phosphorylationThiophene derivativesCombinatorial chemistryCoupling reactionChemInform
researchProduct

Innentitelbild: Reagens- und metallfreie anodische C-C-Kreuzkupplung von Anilinderivaten (Angew. Chem. 17/2017)

2017

General MedicineAngewandte Chemie
researchProduct

Direct Anodic Dehydrogenative Cross- and Homo-Coupling of Formanilides

2018

Coupling (electronics)Green chemistry010405 organic chemistryChemistryElectrochemistryFormamides010402 general chemistryElectrosynthesisPhotochemistry01 natural sciencesCatalysis0104 chemical sciencesAnodeChemElectroChem
researchProduct

Inside Cover: Reagent- and Metal-Free Anodic C−C Cross-Coupling of Aniline Derivatives (Angew. Chem. Int. Ed. 17/2017)

2017

Coupling (electronics)chemistry.chemical_compoundAnilineMetal freeChemistryReagentINTPolymer chemistryGeneral ChemistryElectrochemistryCatalysisAnodeAngewandte Chemie International Edition
researchProduct

Outstandingly robust anodic dehydrogenative aniline coupling reaction

2020

Abstract Oxidative treatment of anilines usually leads to the formation of black polymers, often referred to as “aniline black”. This over-oxidation is hardly controllable and also a challenging task in the anodic conversion of anilines. Here, a quick and efficient access to valuable building blocks by anodic cross- and homo-coupling of aniline and benzidine derivatives is reported. This electrosynthesis is easily performed in a simple undivided cell using constant current conditions. The key to the observed outstanding performance and robustness of this system is attributed to the used solvent 1,1,1,3,3,3-hexafluoroisopropanol. The extraordinary performance over a broad range of current de…

chemistry.chemical_classificationChemical substanceMaterials scienceGeneral Chemical Engineering02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnologyElectrosynthesis01 natural sciencesCombinatorial chemistryBenzidineCoupling reaction0104 chemical sciencesAnodeSolventchemistry.chemical_compoundAnilinechemistryElectrochemistry0210 nano-technologyElectrochimica Acta
researchProduct

Reagens- und metallfreie anodische C-C-Kreuzkupplung von Anilinderivaten

2017

Vorgestellt wird die oxidative Kreuzkupplung von Anilinderivaten zu 2,2′-Diaminobiarylen. Der Oxidationsschritt wird elektrochemisch durchgefuhrt, ohne die Notwendigkeit von Metallen und Reagenzien. Ein breites Spektrum an Biphenyldiaminen konnte hergestellt werden. Die besten Resultate wurden mit Glaskohlenstoff als Anodenmaterial erhalten. Die elektrochemische Umsetzung kann problemlos in einer ungeteilten Zelle bei leicht erhohten Temperaturen durchgefuhrt werden. Auserdem wurden gebrauchliche, auf Carbonsauren basierende, Schutzgruppen verwendet, die nach der Kreuzkupplung unter milden Bedingungen selektiv abgespalten werden konnen. Auf diese Weise erhalt man schnell und effizient Zugan…

010405 organic chemistryGeneral Medicine010402 general chemistry01 natural sciences0104 chemical sciencesAngewandte Chemie
researchProduct

Solvent Control in Electro-Organic Synthesis

2018

Exploiting the solvent control within electro-organic conversions is a far underestimated parameter in prep-scale electrolysis. The beneficial application in several transformations is outlined and in particular discussed for the dehydrogenative coupling of arenes and heteroarenes. This simple electrolytic strategy in fluorinated solvents allows the modulation of the substrate’s nucleophilicity and the stabilization of the intermediates as well as of the final product from over-oxidation.1 Introduction2 Solvent Effects in Kolbe Electrolysis and Anodic Fluorination3 Unique Solvent Effects of 1,1,1,3,3,3-Hexafluoropropan-2-ol (HFIP)4 Anodic Dehydrogenative Coupling Reactions with Use of HFIP …

ElectrolysisKolbe electrolysis010405 organic chemistryChemistryOrganic Chemistry010402 general chemistryElectrosynthesis01 natural sciencesCombinatorial chemistryCoupling reactionElectrochemical fluorination0104 chemical scienceslaw.inventionSolventchemistry.chemical_compoundlawOrganic synthesisSolvent effectsSynlett
researchProduct

Reagent- and Metal-Free Anodic C-C Cross-Coupling of Aniline Derivatives.

2017

The dehydrogenative cross-coupling of aniline derivatives to 2,2′-diaminobiaryls is reported. The oxidation is carried out electrochemically, which avoids the use of metals and reagents. A large variety of biphenyldiamines were thus prepared. The best results were obtained when glassy carbon was used as the anode material. The electrosynthetic reaction is easily performed in an undivided cell at slightly elevated temperature. In addition, common amine protecting groups based on carboxylic acids were employed that can be selectively removed under mild conditions after the cross-coupling, which provides quick and efficient access to important building blocks featuring free amine moieties.

010405 organic chemistryInorganic chemistryGeneral ChemistryGlassy carbon010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesAnodechemistry.chemical_compoundAnilinechemistryMetal freeReagentPolymer chemistryCoupling (piping)Amine gas treatingAngewandte Chemie (International ed. in English)
researchProduct

CCDC 1517624: Experimental Crystal Structure Determination

2017

Related Article: Lara Schulz, Mathias Enders, Bernd Elsler, Dieter Schollmeyer, Katrin M. Dyballa, Robert Franke, Siegfried R. Waldvogel|2017|Angew.Chem.,Int.Ed.|56|4877|doi:10.1002/anie.201612613

Space GroupCrystallographyN-(2-(2-acetamido-1-naphthyl)-45-dimethoxyphenyl)-222-trifluoroacetamide unknown solvateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1517625: Experimental Crystal Structure Determination

2017

Related Article: Lara Schulz, Mathias Enders, Bernd Elsler, Dieter Schollmeyer, Katrin M. Dyballa, Robert Franke, Siegfried R. Waldvogel|2017|Angew.Chem.,Int.Ed.|56|4877|doi:10.1002/anie.201612613

Space GroupCrystallographyCrystal SystemN-(2-(6-acetamido-13-benzodioxol-5-yl)-45-dimethoxyphenyl)acetamide hemihydrateCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1976461: Experimental Crystal Structure Determination

2020

Related Article: Sebastian B. Beil, Manuel Breiner, Lara Schulz, Aaron Schüll, Timo Müller, Dieter Schollmeyer, Alexander Bomm, Michael Holtkamp, Uwe Karst, Wolfgang Schade, Siegfried R. Waldvogel|2020|RSC Advances|10|14249|doi:10.1039/D0RA02673E

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters(3-bromo-4-methoxyphenyl)(34-dimethoxyphenyl)acetonitrile methanol solvateExperimental 3D Coordinates
researchProduct