Flaky nano-crystalline SnSe2 thin films for photoelectrochemical current generation

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Abstract

We report chemical vapor deposition (CVD) and photoelectrochemical properties of large-area thin films of nano-crystalline SnSe2 on conducting FTO glass. We show that densely packed, randomly oriented SnSe2 nanoflakes can be grown by reacting vapors of tin monoselenide (SnSe) and selenium at 550 °C without compromising the electrical properties of FTO. We demonstrate that SnSe2/FTO is photoelectrochemically active in visible to near-UV wavelengths (350-700 nm) and exhibits incident-photon-to-current-efficiency (IPCE) as high as 3.7% at 0 V versus the Ag/AgCl/1 M KCl reference electrode under 350 nm light illumination.

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Shao, X., Li, S., & Tang, D. M. (2018). Flaky nano-crystalline SnSe2 thin films for photoelectrochemical current generation. RSC Advances, 8(56), 32157–32163. https://doi.org/10.1039/c8ra04639e

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