AI Article Synopsis

  • The study focuses on synthesizing and characterizing new alkyl-substituted NHC-stabilized pnictogenylboranes, where NHC refers to N-heterocyclic carbenes and pnictogens include elements like phosphorus and arsenic.
  • The researchers tested these compounds with nickel carbonyl complexes to assess their donor strength and steric properties using the Tolman Electronic Parameters (TEPs), comparing them to traditional ligands like phosphines.
  • Findings indicate that while these pnictogenyltrielanes are strong donors, their steric influence varies based on the organic substituents, with their donor strength comparable to NHCs but generally weaker than superbasic phosphines.

Article Abstract

A general synthesis and the characterization of novel alkyl-substituted NHC-stabilized pnictogenylboranes NHC ⋅ BH ER (NHC=N-heterocyclic carbene, E=P, As; R =Me , Ph , BuH, Cy , (SiMe ) ) are reported. These compounds were reacted with Ni(CO) to the corresponding complexes of the type [(NHC ⋅ BH ER )Ni(CO) ] to determine their donor strength by Tolman Electronic Parameters (TEPs) and their steric demand as ligands compared to classical phosphines, superbasic phosphines and other commonly applied donor systems. The results show that the NHC-stabilized pnictogenyltrielanes can be considered as being highly basic, while their steric influence depends strongly on the organic residues as well as the donor attached to the {BH } moiety. Although weaker than commonly used superbasic phosphines, the donor strength of pnictogenyltrielanes in general can be classified as of similar strength as NHCs. The steric and electronic properties can easily be modified by alkyl substitution as evident from the TEP trends.

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http://dx.doi.org/10.1002/chem.202303603DOI Listing

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Article Synopsis
  • The study focuses on synthesizing and characterizing new alkyl-substituted NHC-stabilized pnictogenylboranes, where NHC refers to N-heterocyclic carbenes and pnictogens include elements like phosphorus and arsenic.
  • The researchers tested these compounds with nickel carbonyl complexes to assess their donor strength and steric properties using the Tolman Electronic Parameters (TEPs), comparing them to traditional ligands like phosphines.
  • Findings indicate that while these pnictogenyltrielanes are strong donors, their steric influence varies based on the organic substituents, with their donor strength comparable to NHCs but generally weaker than superbasic phosphines.
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