Mechanism of the oxidative addition of hypervalent iodonium salts to palladium(II) pincer-complexes☆

2010 ◽  
Vol 324 (1-2) ◽  
pp. 56-63 ◽  
Author(s):  
Kálmán J. Szabó
2015 ◽  
Vol 34 (15) ◽  
pp. 3782-3787 ◽  
Author(s):  
Carolin Tschersich ◽  
Beatrice Braun ◽  
Christian Herwig ◽  
Christian Limberg

2020 ◽  
Vol 56 (83) ◽  
pp. 12589-12592
Author(s):  
Wolfram Feuerstein ◽  
Frank Breher

A highly phosphorescent non-palindromic (C^C^N) palladium complex may be prepared by means of a double oxidative addition – comproportionation sequence, which is a new approach for the synthesis of non-palindromic pincer complexes.


Crystals ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 373
Author(s):  
Marek Freindorf ◽  
Seth Yannacone ◽  
Vytor Oliveira ◽  
Niraj Verma ◽  
Elfi Kraka

We systematically investigated iodine–metal and iodine–iodine bonding in van Koten’s pincer complex and 19 modifications changing substituents and/or the transition metal with a PBE0–D3(BJ)/aug–cc–pVTZ/PP(M,I) model chemistry. As a novel tool for the quantitative assessment of the iodine–metal and iodine–iodine bond strength in these complexes we used the local mode analysis, originally introduced by Konkoli and Cremer, complemented with NBO and Bader’s QTAIM analyses. Our study reveals the major electronic effects in the catalytic activity of the M–I–I non-classical three-center bond of the pincer complex, which is involved in the oxidative addition of molecular iodine I2 to the metal center. According to our investigations the charge transfer from the metal to the σ* antibonding orbital of the I–I bond changes the 3c–4e character of the M–I–I three-center bond, which leads to weakening of the iodine I–I bond and strengthening of the metal–iodine M–I bond, facilitating in this way the oxidative addition of I2 to the metal. The charge transfer can be systematically modified by substitution at different places of the pincer complex and by different transition metals, changing the strength of both the M–I and the I2 bonds. We also modeled for the original pincer complex how solvents with different polarity influence the 3c–4e character of the M–I–I bond. Our results provide new guidelines for the design of pincer complexes with specific iodine–metal bond strengths and introduce the local vibrational mode analysis as an efficient tool to assess the bond strength in complexes.


Author(s):  
Daniel Eppel ◽  
Philipp Penert ◽  
Johanna Stemmer ◽  
Christina Bauer ◽  
Matthias Rudolph ◽  
...  

2021 ◽  
Author(s):  
Wolfram Feuerstein ◽  
Frank Breher

We herein report on the synthesis of biphenylenes substituted with a pyridine (N), a phosphine (P) and a carbene (C’) donor as well as a carbene donor with additional pyridine...


2021 ◽  
Author(s):  
Wolfgang Eder ◽  
Daniel Himmelbauer ◽  
Berthold Stöger ◽  
Luis F. Veiros ◽  
Marc Pignitter ◽  
...  

The syntheses of various manganese and iron PCP pincer complexes via a solvothermal oxidative addition methodology is described. Upon reacting [Mn2(CO)10] with the ligands (P(C-Br)PCH2-iPr) (1a) and (P(C-Br)PO-iPr) (1b), Mn(I)...


2019 ◽  
Vol 48 (10) ◽  
pp. 3422-3432 ◽  
Author(s):  
Peyman Hamidizadeh ◽  
S. Masoud Nabavizadeh ◽  
S. Jafar Hoseini

The reactivity of new organoplatinum(ii)–pincer complexes in their oxidative addition reactions with MeI is related to the ancillary ligand and the number of cyclometalated rings present in the coordination sphere of the Pt centre.


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