palladium catalyst
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2022 ◽  
Author(s):  
Yangyang Wang ◽  
Xiaobo Xu ◽  
Gaorong Wu ◽  
Binghan Pang ◽  
Shaowen Liao ◽  
...  

Synlett ◽  
2022 ◽  
Author(s):  
Pit van Bonn ◽  
Carsten Bolm

A mechanochemical synthesis of diarylethynes from aryl iodides and calcium carbide as acetylene source is reported. The reaction is catalyzed by a palladium catalyst in the presence of copper salt, base and ethanol as liquid assisting grinding (LAG) additive. Various aryl and heteroaryl iodides have been converted in up to excellent yields.


Author(s):  
Yujia Liu ◽  
Kyoka Koizumi ◽  
Nobuhiro Takeda ◽  
Masafumi Unno ◽  
Armelle Ouali
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Author(s):  
Ying-Chou Su ◽  
Cheng-Chien Wang ◽  
Chuh-Yung Chen

2022 ◽  
Author(s):  
Santosh Kumar Sahu ◽  
Prabhupada Choudhury ◽  
Abinash Bisoyi ◽  
Pradyota Kumar Behera ◽  
Rasmi Ranjan sahu ◽  
...  

Most of the non-palladium catalyst employed for Sonogashira cross-coupling works with high temperature 120-140 oC and well defined ligands. Palladium based catalysts with bulkier and electron rich phosphine ligands are...


Nature ◽  
2021 ◽  
Vol 600 (7889) ◽  
pp. 444-449
Author(s):  
Da Zhao ◽  
Roland Petzold ◽  
Jiyao Yan ◽  
Dieter Muri ◽  
Tobias Ritter

AbstractTritium labelling is a critical tool for investigating the pharmacokinetic and pharmacodynamic properties of drugs, autoradiography, receptor binding and receptor occupancy studies1. Tritium gas is the preferred source of tritium for the preparation of labelled molecules because it is available in high isotopic purity2. The introduction of tritium labels from tritium gas is commonly achieved by heterogeneous transition-metal-catalysed tritiation of aryl (pseudo)halides. However, heterogeneous catalysts such as palladium supported on carbon operate through a reaction mechanism that also results in the reduction of other functional groups that are prominently featured in pharmaceuticals3. Homogeneous palladium catalysts can react chemoselectively with aryl (pseudo)halides but have not been used for hydrogenolysis reactions because, after required oxidative addition, they cannot split dihydrogen4. Here we report a homogenous hydrogenolysis reaction with a well defined, molecular palladium catalyst. We show how the thianthrene leaving group—which can be introduced selectively into pharmaceuticals by late-stage C–H functionalization5—differs in its coordinating ability to relevant palladium(II) catalysts from conventional leaving groups to enable the previously unrealized catalysis with dihydrogen. This distinct reactivity combined with the chemoselectivity of a well defined molecular palladium catalyst enables the tritiation of small-molecule pharmaceuticals that contain functionality that may otherwise not be tolerated by heterogeneous catalysts. The tritiation reaction does not require an inert atmosphere or dry conditions and is therefore practical and robust to execute, and could have an immediate impact in the discovery and development of pharmaceuticals.


Science ◽  
2021 ◽  
Vol 374 (6571) ◽  
pp. 1134-1140
Author(s):  
Julian A. Hueffel ◽  
Theresa Sperger ◽  
Ignacio Funes-Ardoiz ◽  
Jas S. Ward ◽  
Kari Rissanen ◽  
...  

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