Copper coordination complexes have emerged as a group of transition metal complexes that play important roles in solar energy conversion, utilization and storage, and have the potential to replace the quintessential commonly used transition metals, like Co, Pt, Ir and Ru as light sensitizers, redox mediators, electron donors and catalytic centers. The applications of copper coordination compounds in chemistry and energy related technologies are many and demonstrate their rightful place as sustainable, low toxicity and Earth-abundant alternative materials. In this perspective we show the most recent impact made by copper coordination complexes in dye-sensitized solar cells and other energy relevant applications.

Copper Coordination Complexes for Energy-Relevant Applications

Iacopo Benesperi
Co-first
;
2020-01-01

Abstract

Copper coordination complexes have emerged as a group of transition metal complexes that play important roles in solar energy conversion, utilization and storage, and have the potential to replace the quintessential commonly used transition metals, like Co, Pt, Ir and Ru as light sensitizers, redox mediators, electron donors and catalytic centers. The applications of copper coordination compounds in chemistry and energy related technologies are many and demonstrate their rightful place as sustainable, low toxicity and Earth-abundant alternative materials. In this perspective we show the most recent impact made by copper coordination complexes in dye-sensitized solar cells and other energy relevant applications.
2020
13
9
2198
2198
copper coordination complexes; dye-sensitized solar cells; organic light-emitting diodes; lithium ion batteries; redox flow batteries; solar fuels; water oxidation catalysts
Iacopo Benesperi; Reena Singh; Marina Freitag
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1887457
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