材料科学
纳米复合材料
发光
膜
聚合物
纳米尺度
热稳定性
大气温度范围
咪唑酯
基质(化学分析)
荧光
纳米技术
光电子学
化学工程
复合材料
化学
光学
物理
工程类
气象学
生物化学
作者
Yanyun Ding,Yantong Lu,Kuangli Yu,Shuo Wang,Dian Zhao,Banglin Chen
标识
DOI:10.1002/adom.202100945
摘要
Abstract Accurate measurement of temperature is crucial in many branches of medicine, science, and engineering, and often requires temperature sensors that are noninvasive, of high accuracy, and can spatially resolve thermal fluctuations at the nanoscale. Here a new type of flexible and tailorable mixed‐matrix membranes (MMMs) is introduced, which feature dual‐emitting metal–organic framework (MOF)‐based nanocomposites embedded in polymer matrix, and its potential use in luminescence temperature sensing is evaluated. The as‐prepared “Cdots&RB@ZIF‐8 2 ‐MMM” inherits the luminescence properties of the incorporated Cdots&RB@zeolitic‐imidazolate‐framework (ZIF)‐8 2 nanocomposite and possesses the luminescence of both the blue‐emitting carbon dots (Cdots) and the green‐emitting rhodamine B (RB). Since the fluorescence resonance energy transfer between the two guest emitters is thermally correlated, the thermometric parameter ( I C / I RB ) of the Cdots&RB@ZIF‐8 2 ‐MMM has excellent linear response in the physiological temperature range, with favorable relative sensitivity, spectral repeatability, and structural stability. The new ratiometric membranous thermometers proposed here should initiate further interest in luminescent MOF/polymer hybrids and their diverse sensing applications.
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