Colloidal Monolayer β-InSe Nanosheets with High Photoresponsivity.

We report a low-temperature colloidal synthesis of single-layer, five-atom-thick, β-InSe nanosheets with lateral sizes tunable from ~300 to ~900 nm, using short aminonitriles (dicyandiamide or cyanamide) as shape controlling agents. The phase and the monolayer nature of the nanosheets were ascertain...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 139; no. 8; pp. 3005 - 3012
Autores principales: Almeida, Guilherme, Dogan, Sedat, Bertoni, Giovanni, Giannini, Cinzia, Gaspari, Roberto, Perissinotto, Stefano, Krahne, Roman, Ghosh, Sandeep, Manna, Liberato
Formato: Resumen
Publicado: American Chemical Society 3/1/2017
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:We report a low-temperature colloidal synthesis of single-layer, five-atom-thick, β-InSe nanosheets with lateral sizes tunable from ~300 to ~900 nm, using short aminonitriles (dicyandiamide or cyanamide) as shape controlling agents. The phase and the monolayer nature of the nanosheets were ascertained by analyzing the intensity ratio between two diffraction peaks from two-dimensional slabs of the various phases, determined by diffraction simulations. These findings were further backed-up by comparing and fitting the experimental X-ray diffraction pattern with Debye formula simulated patterns and with side-view high-resolution transmission electron microscopy imaging and simulation. The β-InSe nanosheets were found to be indirect band gap semiconductors (E = 1.55 eV), and single nanosheet photodetectors demonstrated high photoresponsivity and fast response times.