| Literature DB >> 30911741 |
Xiongbin Wang1, Junjie Hao, Jiaji Cheng, Junzi Li, Jun Miao, Ruxue Li, Yiwen Li, Jiagen Li, Yuhui Liu, Xi Zhu, Yanjun Liu, Xiao Wei Sun, Zikang Tang, Marie-Hélène Delville, Tingchao He, Rui Chen.
Abstract
As opposed to traditional photoluminescence and ultra-violet based optical sensing, we present here a sensing system based on resolved optically active polarization with promising applications. It is based on the ultrathin CdSe nanoplatelets (NPLs) when modified with either l or d-cysteine molecules (l/d-cys) as bio-to-nano ligands. The chiral ligand transfers its chiroptical activity to the achiral nanoplatelets with an anisotropy factor of ∼10-4, which unlocks the chiral excitonic transitions and allows lead ion detection with a limit of detection (LOD) as low as 4.9 nM. Simulations and modelling based on time-dependent density functional theory (TD-DFT) reveal the chiral mechanism of l/d-cys capped CdSe NPLs. The presented CD-based sensing system illustrates an alternative possibility of using chiral CdSe NPLs as competitive chiral sensors for heavy metal ion detection.Entities:
Year: 2019 PMID: 30911741 DOI: 10.1039/c8nr10506e
Source DB: PubMed Journal: Nanoscale ISSN: 2040-3364 Impact factor: 7.790