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AIEgens 功能化的无机-有机杂化材料:制备与应用。

AIEgens-Functionalized Inorganic-Organic Hybrid Materials: Fabrications and Applications.

机构信息

Department of Materials Science, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.

出版信息

Small. 2016 Dec;12(47):6478-6494. doi: 10.1002/smll.201601484. Epub 2016 Aug 11.

Abstract

Inorganic materials functionalized with organic fluorescent molecules combine advantages of them both, showing potential applications in biomedicine, chemosensors, light-emitting, and so on. However, when more traditional organic dyes are doped into the inorganic materials, the emission of resulting hybrid materials may be quenched, which is not conducive to the efficiency and sensitivity of detection. In contrast to the aggregation-caused quenching (ACQ) system, the aggregation-induced emission luminogens (AIEgens) with high solid quantum efficiency, offer new potential for developing highly efficient inorganic-organic hybrid luminescent materials. So far, many AIEgens have been incorporated into inorganic materials through either physical doping caused by aggregation induced emission (AIE) or chemical bonding (e.g., covalent bonding, ionic bonding, and coordination bonding) caused by bonding induced emission (BIE) strategy. The hybrid materials exhibit excellent photoactive properties due to the intramolecular motion of AIEgens is restricted by inorganic matrix. Recent advances in the fabrication of AIEgens-functionalized inorganic-organic hybrid materials and their applications in biomedicine, chemical sensing, and solid-state light emitting are presented.

摘要

功能化的无机材料与有机荧光分子相结合,兼具两者的优点,在生物医学、化学传感器、发光等方面具有潜在的应用。然而,当更多传统的有机染料掺杂到无机材料中时,所得的杂化材料的发射可能会被猝灭,这不利于检测的效率和灵敏度。与聚集诱导猝灭(ACQ)体系相比,具有高固体量子效率的聚集诱导发射发光团(AIEgens)为开发高效的无机-有机杂化发光材料提供了新的潜力。到目前为止,许多 AIEgens 通过聚集诱导发射(AIE)引起的物理掺杂或通过键合诱导发射(BIE)策略引起的化学键(例如,共价键、离子键和配位键)结合到无机材料中。由于无机基质限制了 AIEgens 的分子内运动,杂化材料表现出优异的光活性。本文介绍了 AIEgens 功能化的无机-有机杂化材料的制备及其在生物医学、化学传感和固态发光方面的应用的最新进展。

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