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Aqueous light driven hydrogen production by a Ru–ferredoxin–Co biohybrid†
S. R. Soltau,J. Niklas,O. G. Poluektov,D. M. Tiede,K. L. Mulfort,L. M. Utschig
Chemical Communications Pub Date : 06/08/2015 00:00:00 , DOI:10.1039/C5CC03006D
Abstract

Herein we report the creation of a novel solar fuel biohybrid for light-driven H2 production utilizing the native electron transfer protein ferredoxin (Fd) as a scaffold for binding of a ruthenium photosensitizer (PS) and a molecular cobaloxime catalyst (Co). EPR and transient optical experiments provide direct evidence of a long-lived (>1.5 ms) Ru(III)–Fd–Co(I) charge separated state formed via an electron relay through the Fd [2Fe–2S] cluster, initiating the catalytic cycle for 2H+ + 2e → H2.

Graphical abstract: Aqueous light driven hydrogen production by a Ru–ferredoxin–Co biohybrid
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