Akhavan Shahab, Guzelturk Burak, Sharma Vijay Kumar, Demir Hilmi Volkan
UNAM–Institute of Materials Science and Nanotechnology, Department of Electrical and Electronics Engineering, Department of Physics, Bilkent University, Ankara, 06800, Turkey.
Opt Express. 2012 Nov 5;20(23):25255-66. doi: 10.1364/OE.20.025255.
We report a large-area, semi-transparent, light-sensitive nanocrystal skin (LS-NS) platform consisting of single monolayer colloidal nanocrystals. LS-NS devices, which were fabricated over areas up to 48 cm(2) using spray-coating and several cm-squares using dip-coating, are operated on the principle of photogenerated potential buildup, unlike the conventional charge collection. Implementing proof-of-concept devices using CdTe nanocrystals with ligand removal, we observed a substantial sensitivity enhancement factor of ~73%, accompanied with a 3-fold faster response time (<100 ms). With fully sealed nanocrystal monolayers, LS-NS is found to be highly stable under ambient conditions, promising for low-cost large-area UV/visible sensing in windows and facades of smart buildings.
我们报道了一种由单层胶体纳米晶体组成的大面积、半透明、光敏纳米晶体皮肤(LS-NS)平台。LS-NS器件通过喷涂工艺可制备面积达48平方厘米的器件,通过浸涂工艺可制备几平方厘米的器件,其工作原理是光生电势积累,这与传统的电荷收集不同。使用去除配体的碲化镉纳米晶体制作概念验证器件时,我们观察到灵敏度显著提高了约73%,同时响应时间加快了3倍(<100毫秒)。由于纳米晶体单层完全密封,发现LS-NS在环境条件下具有高度稳定性,有望用于智能建筑窗户和外墙的低成本大面积紫外/可见光传感。