A highly sensitive ratiometric near-infrared nanosensor based on erbium-hyperdoped silicon quantum dots for iron(Ⅲ) detection

IF 4.8 4区 物理与天体物理 Q2 PHYSICS, CONDENSED MATTER
Kun Wang, Wenxuan Lai, Zhenyi Ni, Deren Yang and Xiaodong Pi
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引用次数: 0

Abstract

Ratiometric fluorescent detection of iron(Ⅲ) (Fe3+) offers inherent self-calibration and contactless analytic capabilities. However, realizing a dual-emission near-infrared (NIR) nanosensor with a low limit of detection (LOD) is rather challenging. In this work, we report the synthesis of water-dispersible erbium-hyperdoped silicon quantum dots (Si QDs:Er), which emit NIR light at the wavelengths of 810 and 1540 nm. A dual-emission NIR nanosensor based on water-dispersible Si QDs:Er enables ratiometric Fe3+ detection with a very low LOD (0.06 μM). The effects of pH, recyclability, and the interplay between static and dynamic quenching mechanisms for Fe3+ detection have been systematically studied. In addition, we demonstrate that the nanosensor may be used to construct a sequential logic circuit with memory functions.
基于铒-超掺杂硅量子点的高灵敏近红外比率测量法纳米传感器,用于铁(Ⅲ)检测
铁(Ⅲ)(Fe3+)的比率荧光检测具有固有的自校准和非接触分析能力。然而,实现具有低检测限(LOD)的双发射近红外(NIR)纳米传感器却相当具有挑战性。在这项工作中,我们报告了水可分散铒超掺杂硅量子点(Si QDs:Er)的合成过程,该量子点可发射波长为 810 纳米和 1540 纳米的近红外光。基于可在水中分散的 Si QDs:Er 的双发射近红外纳米传感器能以极低的 LOD(0.06 μM)实现比率法检测 Fe3+。我们系统地研究了 pH 值、可回收性以及静态和动态淬灭机制对 Fe3+ 检测的影响。此外,我们还证明了该纳米传感器可用于构建具有记忆功能的顺序逻辑电路。
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来源期刊
Journal of Semiconductors
Journal of Semiconductors PHYSICS, CONDENSED MATTER-
CiteScore
6.70
自引率
9.80%
发文量
119
期刊介绍: Journal of Semiconductors publishes articles that emphasize semiconductor physics, materials, devices, circuits, and related technology.
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