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A pentadentate nitrogen-rich copper electrocatalyst for water reduction with pH-dependent molecular mechanisms.
Ekanayake, Danushka M; Kulesa, Krista M; Singh, Jaffarguriqbal; Kpogo, Kenneth K; Mazumder, Shivnath; Bernhard Schlegel, H; Verani, Cláudio N.
Afiliação
  • Ekanayake DM; Department of Chemistry, Wayne State University, 5101 Cass Ave, Detroit, MI 48202, USA. cnverani@chem.wayne.edu.
  • Kulesa KM; Department of Chemistry, Wayne State University, 5101 Cass Ave, Detroit, MI 48202, USA. cnverani@chem.wayne.edu.
  • Singh J; Department of Chemistry, Hofstra University, Berliner Hall, Hempstead, NY 11549, USA. shivnath.mazumder@hofstra.edu.
  • Kpogo KK; Department of Chemistry, Wayne State University, 5101 Cass Ave, Detroit, MI 48202, USA. cnverani@chem.wayne.edu.
  • Mazumder S; Department of Chemistry, Hofstra University, Berliner Hall, Hempstead, NY 11549, USA. shivnath.mazumder@hofstra.edu.
  • Bernhard Schlegel H; Department of Chemistry, Wayne State University, 5101 Cass Ave, Detroit, MI 48202, USA. cnverani@chem.wayne.edu.
  • Verani CN; Department of Chemistry, Wayne State University, 5101 Cass Ave, Detroit, MI 48202, USA. cnverani@chem.wayne.edu.
Dalton Trans ; 46(48): 16812-16820, 2017 Dec 12.
Article em En | MEDLINE | ID: mdl-28875204
ABSTRACT
The new pentadentate 3d9 complex [CuII(LN2Py3)](PF6)2 (1) based on a nitrogen-rich framework acts as an electrocatalyst toward dihydrogen production from water. This species is active at pHs 7 and 2.5 yielding respective TON3h values of 1670 and 3900. Comparison of the molecular structure of 1 with that of the reduced [CuI(LN2Py3)]PF6 (2) evidences elongated Cu-N bond lengths resulting from an increased electron density around the 3d10 CuI center. The absence of nanoparticulate formation indicates that molecular mechanisms prevail at both pHs. Furthermore, experimental and DFT data support that distinct mechanisms are operative while the metal center plays a key role at pH 7, one dangling pyridine moiety gets protonated at pH 2.5 and becomes actively involved in a relay mechanism. In both cases the CuIII-H- intermediate seems to be bypassed by PCET processes.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article