Title Titel
MONATSHEFTE FUR CHEMIE
 
e-ISSN
1434-4475
 
ISSN
0026-9247
 
Publisher Herausgeber
SPRINGER WIEN
 
Publisher's Address Herausgeber Adresse
Prinz-Eugen-Strasse 8-10, Vienna, Austria, A-1040
 
Listed in SCI Aufgelistet im SCI
 
Peer reviewed Begutachtet
 
 

Publications Publikationen

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Access Type:  Open Access
Author:  Schnürch, Michael

Results 1-6 of 6 (Search time: 0.004 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Groell Birgit - 2017 - Improved simplicity and practicability in...pdf.jpgGröll, Birgit ; Schaaf, Patricia ; Schnürch, Michael Improved simplicity and practicability in copper-catalyzed alkynylation of tetrahydroisoquinolineArticle Artikel 2017
2Vega Alanis-2023-Monatshefte fuer Chemie - Chemical Monthly-vor.pdf.jpgVega Alanis, Blanca Angelica ; Wimmer, Laurin ; Ernst, Margot ; Schnürch, Michael ; Mihovilovic, Marko Novel pyrazolothienopyridinones as potential GABAA receptor modulatorsArticle Artikel 2023
3Draskovits-2023-Monatshefte fuer Chemie - Chemical Monthly-vor.pdf.jpgDraskovits, Markus ; Catorci, Daniele ; Wimmer, Laurin ; Rehman, Sabah ; Siebert, David ; Ernst, Margot ; Schnürch, Michael ; Mihovilovic, Marko D Novel synthetic procedures for C2 substituted imidazoquinolines as ligands for the α/β-interface of the GABAA-receptorArticle Artikel 2023
4Linder Thomas - 2018 - One-pot synthesis of triazines as potential agents...pdf.jpgLinder, Thomas ; Schnürch, Michael ; Mihovilovic, Marko D. One-pot synthesis of triazines as potential agents affecting cell differentiationArticle Artikel Jul-2018
5Anschuber Martin - 2018 - Rhodium-catalyzed direct alkylation of benzylic amines...pdf.jpgAnschuber, Martin ; Pollice, Robert ; Schnürch, Michael Rhodium-catalyzed direct alkylation of benzylic amines using alkyl bromidesArticle Artikel Jan-2019
6Draskovits-2023-Monatshefte fuer Chemie - Chemical Monthly-vor.pdf.jpgDraskovits, Markus ; Biedermann, Nina ; Mihovilovic, Marko D. ; Schnürch, Michael ; Stanetty, Christian The synthesis of higher-carbon sugar alcohols via indium-mediated acyloxyallylation as potential phase change materialsArticle Artikel 2023