Toward control of electron transfer in donor-acceptor molecules by bond-specific infrared excitation.

Delor, Milan; Scattergood, Paul A; Sazanovich, Igor V; Parker, Anthony W; Greetham, Gregory M; Meijer, Anthony J H M; Towrie, Michael; Weinstein, Julia A · Science · 2014

basic_science · Level V

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Abstract

Electron transfer (ET) from donor to acceptor is often mediated by nuclear-electronic (vibronic) interactions in molecular bridges. Using an ultrafast electronic-vibrational-vibrational pulse-sequence, we demonstrate how the outcome of light-induced ET can be radically altered by mode-specific infrared (IR) excitation of vibrations that are coupled to the ET pathway. Picosecond narrow-band IR excitation of high-frequency bridge vibrations in an electronically excited covalent trans-acetylide platinum(II) donor-bridge-acceptor system in solution alters both the dynamics and the yields of competing ET pathways, completely switching a charge separation pathway off. These results offer a step toward quantum control of chemical reactivity by IR excitation.