Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Victor L. Schultz"'
Autor:
Tom Roper, Luke Rogers, Dale A. Thomas, Esther J. Chen, Klavs F. Jensen, Alexandra Almasy, Angela Y. Cai, Cameron Armstrong, Anna Formosa, Bimbisar Desai, Victor L. Schultz, Travis Hart, Yuma Miyai
Publikováno v:
Organic Process Research & Development. 25:1524-1533
Publikováno v:
Organic Process Research & Development. 24:2105-2112
Flow chemistry devices have seen an increase as research tools in recent years. We present a modular system for benchtop continuous flow that allows user flexibility and reliability in the pursuit ...
Autor:
Klavs F. Jensen, Bruce H. Lipshutz, Kakasaheb Y. Nandiwale, Bo Jin, Victor L. Schultz, Yiming Mo, Fabrice Gallou, Alexander Pomberger, Alex B. Wood
Publikováno v:
Green Chemistry. 22:3441-3444
The first demonstration of aqueous surfactant-enabled Suzuki–Miyaura couplings run under flow conditions is described. In addition, use of an even more challenging heterogeneous nanoparticle catalyst, containing only 800 ppm of Pd (i.e., 0.08 mol%)
Autor:
Yiming Mo, Kakasaheb Y. Nandiwale, Erhan I. Altinoglu, Alexander Pomberger, Richard I. Robinson, Klavs F. Jensen, Victor L. Schultz, Rohit Duvadie
Publikováno v:
Organic Process Research & Development. 23:2699-2706
Visible-light photoredox reactions have been demonstrated to be powerful synthetic tools to access pharmaceutically relevant compounds. However, many photoredox reactions involve insoluble starting...
Autor:
Dale A. Thomas, Victor L. Schultz, Justin A. M. Lummiss, William H. Green, Robert W. Hicklin, Luke Rogers, Pieter Plehiers, Joshua Byington, Jonathan N. Jaworski, Connor W. Coley, Timothy F. Jamison, Klavs F. Jensen, Joshua Fishman, A. John Hart, Travis Hart, John S. Piotti, Christopher P. Breen, Hanyu Gao
Publikováno v:
Science (New York, N.Y.). 365(6453)
INTRODUCTION The ability to synthesize complex organic molecules is essential to the discovery and manufacture of functional compounds, including small-molecule medicines. Despite advances in laboratory automation, the identification and development
Autor:
Robbert van Putten, Natalie S. Eyke, Lorenz M. Baumgartner, Victor L. Schultz, Georgy A. Filonenko, Klavs F. Jensen, Evgeny A. Pidko
Publikováno v:
ChemSusChem (Print): chemistry & sustainability, energy & materials, 15(14)
ChemSusChem
ChemSusChem
Automation and microfluidic tools potentially enable efficient, fast, and focused reaction development of complex chemistries, while minimizing resource- and material consumption. The introduction of automation-assisted workflows will contribute to t