Synthesis, Molecular Structures and Electrochemical Investigations of [FeFe]‐Hydrogenase Biomimics [Fe2(CO)6‐n(EPh3)n(µ‐edt)] (E = P, As, Sb; n = 1, 2). Issue 42 (10th October 2019)
- Record Type:
- Journal Article
- Title:
- Synthesis, Molecular Structures and Electrochemical Investigations of [FeFe]‐Hydrogenase Biomimics [Fe2(CO)6‐n(EPh3)n(µ‐edt)] (E = P, As, Sb; n = 1, 2). Issue 42 (10th October 2019)
- Main Title:
- Synthesis, Molecular Structures and Electrochemical Investigations of [FeFe]‐Hydrogenase Biomimics [Fe2(CO)6‐n(EPh3)n(µ‐edt)] (E = P, As, Sb; n = 1, 2)
- Authors:
- Ghosh, Shishir
Rahaman, Ahibur
Orton, Georgia
Gregori, Gregory
Bernat, Martin
Kulsume, Ummey
Hollingsworth, Nathan
Holt, Katherine B.
Kabir, Shariff E.
Hogarth, Graeme - Abstract:
- Abstract : A series of ethane‐dithiolate (edt = S(CH2 )2 S) complexes [Fe2 (CO)5 (EPh3 )(µ‐edt)] and [Fe2 (CO)4 (EPh3 )2 (µ‐edt)] (E = P, As, Sb), biomimics of the core of [FeFe]‐hydrogenases, have been prepared and structurally characterised. The introduced ligand(s) occupies apical sites lying trans to the iron‐iron bond. NMR studies reveal that while in the mono‐substituted complexes the Fe(CO)3 moiety undergoes facile trigonal rotation, the Fe(CO)2 (PPh3 ) centres do not rotate on the NMR timescale. The reductive chemistry has been examined by cyclic voltammetry both in the presence and absence of CO and the observed behavior is found to be dependent upon the nature of the substituents. With L = CO or SbPh3 potential inversion is seen leading to a two‐electron reduction, while for others (L = PPh3, AsPh3 ) a quasi‐reversible one‐electron reduction is observed. Protonation studies reveal that [Fe2 (CO)5 (PPh3 )(µ‐edt)] is only partially protonated by excess HBF4 · Et2 O, thus ruling complexes [Fe2 (CO)5 (EPh3 )(µ‐edt)(µ‐H)] + out as a catalytic intermediates, but [Fe2 (CO)4 (PPh3 )2 (µ‐edt)] reacts readily with HBF4 · Et2 O to produce [Fe2 (CO)4 (PPh3 )2 (µ‐edt)(µ‐H)] + . While all new complexes are catalysts for the reduction of protons in MeCN, their poor stability and relatively high reduction potentials does not make them attractive in this respect. Abstract : A series of [FeFe]‐hydrogenase biomimics [Fe2 (CO)5 (EPh3 )(µ‐edt)] and [Fe2 (CO)4 (EPh3 )2 (µ‐edt)] (E = P,Abstract : A series of ethane‐dithiolate (edt = S(CH2 )2 S) complexes [Fe2 (CO)5 (EPh3 )(µ‐edt)] and [Fe2 (CO)4 (EPh3 )2 (µ‐edt)] (E = P, As, Sb), biomimics of the core of [FeFe]‐hydrogenases, have been prepared and structurally characterised. The introduced ligand(s) occupies apical sites lying trans to the iron‐iron bond. NMR studies reveal that while in the mono‐substituted complexes the Fe(CO)3 moiety undergoes facile trigonal rotation, the Fe(CO)2 (PPh3 ) centres do not rotate on the NMR timescale. The reductive chemistry has been examined by cyclic voltammetry both in the presence and absence of CO and the observed behavior is found to be dependent upon the nature of the substituents. With L = CO or SbPh3 potential inversion is seen leading to a two‐electron reduction, while for others (L = PPh3, AsPh3 ) a quasi‐reversible one‐electron reduction is observed. Protonation studies reveal that [Fe2 (CO)5 (PPh3 )(µ‐edt)] is only partially protonated by excess HBF4 · Et2 O, thus ruling complexes [Fe2 (CO)5 (EPh3 )(µ‐edt)(µ‐H)] + out as a catalytic intermediates, but [Fe2 (CO)4 (PPh3 )2 (µ‐edt)] reacts readily with HBF4 · Et2 O to produce [Fe2 (CO)4 (PPh3 )2 (µ‐edt)(µ‐H)] + . While all new complexes are catalysts for the reduction of protons in MeCN, their poor stability and relatively high reduction potentials does not make them attractive in this respect. Abstract : A series of [FeFe]‐hydrogenase biomimics [Fe2 (CO)5 (EPh3 )(µ‐edt)] and [Fe2 (CO)4 (EPh3 )2 (µ‐edt)] (E = P, As, Sb) have been prepared and structurally characterised allowing variations in the pnictide to be systematically probed for the first time; changes to IR spectra and redox potentials being correlated with changes in the nature of the pnictide atom … (more)
- Is Part Of:
- European journal of inorganic chemistry. Issue 42(2019)
- Journal:
- European journal of inorganic chemistry
- Issue:
- Issue 42(2019)
- Issue Display:
- Volume 42, Issue 42 (2019)
- Year:
- 2019
- Volume:
- 42
- Issue:
- 42
- Issue Sort Value:
- 2019-0042-0042-0000
- Page Start:
- 4506
- Page End:
- 4515
- Publication Date:
- 2019-10-10
- Subjects:
- Hydrogenase -- Biomimic -- Pnictides -- Substitution -- Trigonal rotation
Chemistry, Inorganic -- Periodicals
Organometallic chemistry -- Periodicals
Bioinorganic chemistry -- Periodicals
Solid state chemistry -- Periodicals
546 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
- DOI:
- 10.1002/ejic.201900891 ↗
- Languages:
- English
- ISSNs:
- 1434-1948
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3829.730450
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 25142.xml