z-logo
open-access-imgOpen Access
Mechanistic Study of Hydroamination of Alkyne through Tantalum-Based Silica-Supported Surface Species
Author(s) -
Maha A. Aljuhani,
Ziyun Zhang,
Samir Barman,
Mohamad El Eter,
Laura Failvene,
Samy OuldChikh,
Erjia Guan,
Edy AbouHamad,
AbdulHamid Emwas,
Jérémie D. A. Pelletier,
Bruce C. Gates,
Luigi Cavallo,
JeanMarie Basset
Publication year - 2019
Publication title -
acs catalysis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.898
H-Index - 198
ISSN - 2155-5435
DOI - 10.1021/acscatal.9b02184
Subject(s) - hydroamination , alkyne , tantalum , chemistry , metallacycle , catalysis , density functional theory , aryl , photochemistry , combinatorial chemistry , computational chemistry , organic chemistry , x ray crystallography , physics , optics , alkyl , diffraction
Selective hydroamination of terminal alkynes with primary aryl amines is catalyzed by an unprecedented well-defined silica-supported tantalum complex [(≡Si–O−)Ta(η1σ-NEtMe)2(=NtBu)]. A molecular-level characterization of the surface organometallic Ta species was done with the help of characterization techniques including in situ infrared, 1H and 13C solid-state NMR (including double and triple quanta sequencing), and X-ray absorption spectroscopies. These were complemented by the state-of-the-art DNP-SENS 15N characterization. Several catalytic intermediates have been isolated, in particular the 4-membered metallacycle ring intermediate resulting from the anti-Markovnikov addition of the alkyne to the surface tantalum imido. A mechanism is proposed that is on the isolation of all intermediates. A density functional theory (DFT) calculation has confirmed all the elementary steps and intermediates that were fully characterized.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom