Highly efficient photothermal effect by atomic-thickness confinement in two-dimensional ZrNCl nanosheets

ACS Nano. 2015 Feb 24;9(2):1683-91. doi: 10.1021/nn506473m. Epub 2015 Jan 21.

Abstract

We report a giant photothermal effect arising from quantum confinement in two-dimensional nanomaterials. ZrNCl ultrathin nanosheets with less than four monolayers of graphene-like nanomaterial successfully generated synergetic effects of larger relaxation energy of photon-generated electrons and intensified vibration of surface bonds, offering predominantly an enhancement of the electron-phonon interaction to a maximized extent. As a result, they could generate heat flow reaching an ultrahigh value of 5.25 W/g under UV illumination with conversion efficiency up to 72%. We anticipate that enhanced electron-phonon coupling in a quantum confinement system will be a powerful tool for optimizing photothermal conversion of inorganic semiconductors.

Keywords: electron−phonon interaction; energy conversion; photothermal effect; quantum confinement; ultrathin nanosheets.

Publication types

  • Research Support, Non-U.S. Gov't