ChemInform Abstract: (Ni,Mg)3Si2O5(OH)4Solid-Solution Nanotubes Supported by Sub-0.06 wt% Palladium as a Robust High-Efficiency Catalyst for Suzuki-Miyaura Cross-Coupling Reactions.

ChemInform ◽  
2012 ◽  
Vol 43 (33) ◽  
pp. no-no
Author(s):  
Wancheng Zhu ◽  
Yan Yang ◽  
Shi Hu ◽  
Guolei Xiang ◽  
Biao Xu ◽  
...  
2021 ◽  
Author(s):  
Zoltán Novák ◽  
Réka Adamik ◽  
János T. Csenki ◽  
Ferenc Béke ◽  
Regina Gavaldik ◽  
...  

Several efforts have been made for the replacement of noble metal palladium in cross-coupling reactions, maintaining high efficiency of the target transformation. In several cases it is possible to perform the chemistry of palladium with related metals, and their activity was supported with mechanistic studies. Moreover, the complete exclusion of palladium is also in focus. Very recently it was demonstrated that special amine organocatalysts could catalyse Suzuki-Miyaura coupling reaction. Here we show that in this recent transformation homeopathic palladium impurities and trace phosphorous species originated from the conditions used for the organocatalyst synthesis are responsible for the catalytic effect instead of the amine species. This finding confirms the power of palladium in cross-coupling and draw the attention of impurity effect in this field of chemical research. In this article, we represent general guidelines for elucidating the real catalyst of reactions.<br>


2021 ◽  
Author(s):  
Zoltán Novák ◽  
Réka Adamik ◽  
János T. Csenki ◽  
Ferenc Béke ◽  
Regina Gavaldik ◽  
...  

Several efforts have been made for the replacement of noble metal palladium in cross-coupling reactions, maintaining high efficiency of the target transformation. In several cases it is possible to perform the chemistry of palladium with related metals, and their activity was supported with mechanistic studies. Moreover, the complete exclusion of palladium is also in focus. Very recently it was demonstrated that special amine organocatalysts could catalyse Suzuki-Miyaura coupling reaction. Here we show that in this recent transformation homeopathic palladium impurities and trace phosphorous species originated from the conditions used for the organocatalyst synthesis are responsible for the catalytic effect instead of the amine species. This finding confirms the power of palladium in cross-coupling and draw the attention of impurity effect in this field of chemical research. In this article, we represent general guidelines for elucidating the real catalyst of reactions.<br>


2016 ◽  
Vol 6 (6) ◽  
pp. 1940-1945 ◽  
Author(s):  
Min Wang ◽  
Jiping Ma ◽  
Miao Yu ◽  
Zhe Zhang ◽  
Feng Wang

Cryptomelane-type manganese oxide shows high efficiency for the NN formation reaction in the oxidative coupling of anilines to azobenzenes. The difference of the Hammett constants (Δσ) of two substituted groups determines the selectivity to unsymmetric azobenzenes in cross-coupling reactions, which are favored at Δσ < 0.32.


RSC Advances ◽  
2021 ◽  
Vol 11 (16) ◽  
pp. 9366-9380
Author(s):  
Nasrin Yarmohammadi ◽  
Mohammad Ghadermazi ◽  
Roya Mozafari

This green-based catalyst with non-toxic materials and high efficiency is used in organic reactions.


2015 ◽  
Vol 39 (6) ◽  
pp. 4745-4752 ◽  
Author(s):  
Mahmoud Nasrollahzadeh ◽  
S. Mohammad Sajadi ◽  
Ebrahim Honarmand ◽  
Mehdi Maham

The yields of the reaction products were very high and no toxic organic solvents were needed in this method. The high efficiency of the catalyst remains unaltered even after five successive cycles.


2019 ◽  
Vol 97 (1) ◽  
pp. 46-52 ◽  
Author(s):  
Zahra Taherinia ◽  
Arash Ghorbani-Choghamarani

Peptide nanofiber has been prepared via a self-assembly protocol and decorated with Cu(I) to prepare a nanostructural catalyst. The catalytic activity of this prepared nanomaterial (Cu(I)–PNF) was examined in C–O and C–S cross-coupling reactions. Compared with conventional copper–ligand catalytic systems, CuNP–PNF has unique advantages such as water solubility, high efficiency, and low cost, which makes it a highly efficient and beneficial catalyst to reuse in cross-coupling reactions.


2020 ◽  
Author(s):  
Baojian Xiong ◽  
Yue Li ◽  
Yin Wei ◽  
Søren Kramer ◽  
Zhong Lian

Cross-coupling between substrates that can be easily derived from phenols is highly attractive due to the abundance and low cost of phenols. Here, we report a dual nickel/palladium-catalyzed reductive cross-coupling between aryl tosylates and aryl triflates; both substrates can be accessed in just one step from readily available phenols. The reaction has a broad functional group tolerance and substrate scope (>60 examples). Furthermore, it displays low sensitivity to steric effects demonstrated by the synthesis of a 2,2’disubstituted biaryl and a fully substituted aryl product. The widespread presence of phenols in natural products and pharmaceuticals allow for straightforward late-stage functionalization, illustrated with examples such as Ezetimibe and tyrosine. NMR spectroscopy and DFT calculations indicate that the nickel catalyst is responsible for activating the aryl triflate, while the palladium catalyst preferentially reacts with the aryl tosylate.


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