| Literature DB >> 31090985 |
Meiran Zhang1,2, Wei Zheng1,2, Yan Liu1, Ping Huang1, Zhongliang Gong1, Jiaojiao Wei1, Yu Gao1, Shanyong Zhou1, Xingjun Li1, Xueyuan Chen1.
Abstract
Lanthanide (Ln3+ )-doped luminescent nanoparticles (NPs) with emission in the second near-infrared (NIR-II) biological window have shown great promise but their applications are currently limited by the low absorption efficiency of Ln3+ owing to the parity-forbidden 4f→4f electronic transition. Herein, we developed a strategy for the controlled synthesis of a new class of NIR-II luminescent nanoprobes based on Ce3+ /Er3+ and Ce3+ /Nd3+ co-doped CaS NPs, which can be effectively excited by using a low-cost blue light-emitting diode chip. Through sensitization by the allowed 4f→5d transition of Ce3+ , intense NIR-II luminescence from Er3+ and Nd3+ with quantum yields of 9.3 % and 7.7 % was achieved, respectively. By coating them with a layer of amphiphilic phospholipids, these NPs exhibit excellent stability in water and can be exploited as sensitive NIR-II luminescent nanoprobes for the accurate detection of an important disease biomarker, xanthine, with a detection limit of 32.0 nm.Entities:
Keywords: CaS; biosensors; lanthanides; nanoprobes; near-infrared-II luminescence
Year: 2019 PMID: 31090985 DOI: 10.1002/anie.201905040
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336