“…Aromatic bridges show higher catalytic rate constants than aliphatic systems. 44–48 The trinuclear complex 4d of the form (P 2 Cu( i )N 2 ) 3 was synthesised and investigated for its catalytically relevant photophysical behaviour during light exposure, and the resulting chromophoric behaviour is discussed. The trinuclear chromophore was combined with the literature-known and benchmarked catalysts [Ni(py-S) 3 ](NEt 4 ) ( 1 ) and [Fe 3 (CO) 12 ] ( 2 ).…”
Inspired by nature, artificial molecular systems are designed to produce hydrogen for chemical storage or as primary source of energy. A class of new trinuclear complexes based on a PNP-ligand...
“…Aromatic bridges show higher catalytic rate constants than aliphatic systems. 44–48 The trinuclear complex 4d of the form (P 2 Cu( i )N 2 ) 3 was synthesised and investigated for its catalytically relevant photophysical behaviour during light exposure, and the resulting chromophoric behaviour is discussed. The trinuclear chromophore was combined with the literature-known and benchmarked catalysts [Ni(py-S) 3 ](NEt 4 ) ( 1 ) and [Fe 3 (CO) 12 ] ( 2 ).…”
Inspired by nature, artificial molecular systems are designed to produce hydrogen for chemical storage or as primary source of energy. A class of new trinuclear complexes based on a PNP-ligand...
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