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Ultra-small colloidal heavy-metal-free nanoplatelets for efficient hydrogen generation

Zhao H.
•
Zhang H.
•
Liu G.
altro
Rosei F.
2019
  • journal article

Periodico
APPLIED CATALYSIS. B, ENVIRONMENTAL
Abstract
Metal chalcogenide semiconducting nanoplatelets exhibit a broad absorption spectrum, as well as thickness-dependent optical and electronic properties. As such, they may be used as building blocks in a variety of optoelectronic devices. The direct synthesis of heavy-metal-free ultra-small sized nanoplatelets is still challenging, due to the inherent limits in existing synthetic approaches. Here, we report an efficient template-assisted cation-exchange route to synthesize heavy metal free metal chalcogenide nanoplatelets that are optically active in the near infrared. The SnSe nanoplatelets, whose lateral dimension is 6–10 nm, exhibit a quantum yield of 20%. The nanoplatelets are applied as light absorbers in a photoelectrochemical (PEC) system for hydrogen generation, leading to a saturated photocurrent density of 7.4 mA/cm2, which is a record for PEC devices using heavy metal-free colloidal quantum dots or nanoplatelets under identical measurement conditions. Our results indicate that quasi-zero-dimensional SnSe nanoplatelets hold great potential as efficient light absorbers for emerging optoelectronic technologies.
DOI
10.1016/j.apcatb.2019.03.028
WOS
WOS:000465051700024
Archivio
https://hdl.handle.net/11368/3046220
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85063039203
https://www.sciencedirect.com/science/article/pii/S0926337319302449?via=ihub
Diritti
closed access
license:copyright editore
license uri:iris.pri02
FVG url
https://arts.units.it/request-item?handle=11368/3046220
Soggetti
  • Cation exchange

  • Hydrogen generation

  • Nanoplatelet

  • Optoelectronic techno...

  • SnSe

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