Group 7 carbonyl complexes of a PNN-heteroscorpionate ligand
A series of rhenium and manganese carbonyl complexes of a heteroscorpionate ligand with an atypical N P-donor set has been prepared to better understand their electronic and CO releasing properties. Thus, the ligand, pz TTP, with an , -bis(pyrazol-1-yl)tolyl group decorated with an -situated di( -to...
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Veröffentlicht in: | RSC advances 2024-10, Vol.14 (43), p.31502-31516 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A series of rhenium and manganese carbonyl complexes of a heteroscorpionate ligand with an atypical N
P-donor set has been prepared to better understand their electronic and CO releasing properties. Thus, the ligand, pz
TTP, with an
,
-bis(pyrazol-1-yl)tolyl group decorated with an
-situated di(
-tolyl)phosphanyl reacts with carbonyl group 17 reagents to give [
-(κ
NP-pz
TTP)Re(CO)
Br], 1, and [
-(κ
N
P-pz
TTP)M(CO)
](OTf = O
SCF
), 2-M (M = Re, Mn), if care is taken during the preparation of the manganeses derivative. When heated in CH
CN, 2-Mn slowly transforms to [
,
-(κ
N
P-pz
TTP)Mn(CO)
(NCCH
)](OTf), 3-Mn. In contrast, the corresponding 3-Re can only be prepared from 2-Re using Me
NO; pure 3-Mn can also be prepared by this method. Experimental and density functional calculations at the M06L/Def2-TZVP/PCM(CH
CN) level show that the replacement of a carbonyl with an acetonitrile solvent decreases the oxidation potential by around 0.8 V per carbonyl released, making decarbonylated species potent reductants. At the same time, the electronic spectrum broadens and undergoes a red-shift, making dicarbonyl complexes more susceptible to photo-initiated decarbonylation reactions than tricarbonyls. When 2-Mn or 3-Mn are irradiated in with 390 nm LED light in aerated solutions, [
-Mn(pz
TTP = O)
](OTf)
, 4, along with insoluble manganese oxides are rapidly formed. |
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ISSN: | 2046-2069 2046-2069 |
DOI: | 10.1039/d4ra05287k |