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单激发双波段发光混合碳点-铽螯合物纳米温度计

Single Excited Dual Band Luminescent Hybrid Carbon Dots-Terbium Chelate Nanothermometer.

作者信息

Zairov Rustem R, Dovzhenko Alexey P, Sarkanich Kirill A, Nizameev Irek R, Luzhetskiy Andrey V, Sudakova Svetlana N, Podyachev Sergey N, Burilov Vladimir A, Vatsouro Ivan M, Vomiero Alberto, Mustafina Asiya R

机构信息

Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center, Russian Academy of Sciences, Arbuzov Str., 8, 420088 Kazan, Russia.

Department of Physical Chemistry, Kazan (Volga Region) Federal University, Kremlyovskaya Str., 18, 420008 Kazan, Russia.

出版信息

Nanomaterials (Basel). 2021 Nov 15;11(11):3080. doi: 10.3390/nano11113080.

Abstract

The report introduces hybrid polyelectrolyte-stabilized colloids combining blue and green-emitting building blocks, which are citrate carbon dots (CDs) and [TbL] chelate complexes with 1,3-diketonate derivatives of calix[4]arene. The joint incorporation of green and blue-emitting blocks into the polysodium polystyrenesulfonate (PSS) aggregates is carried out through the solvent-exchange synthetic technique. The coordinative binding between Tb centers and CD surface groups in initial DMF solutions both facilitates joint incorporation of [TbL] complexes and the CDs into the PSS-based nanobeads and affects fluorescence properties of [TbL] complexes and CDs, as well as their ability for temperature sensing. The variation of the synthetic conditions is represented herein as a tool for tuning the fluorescent response of the blue and green-emitting blocks upon heating and cooling. The revealed regularities enable developing either dual-band luminescent colloids for monitoring temperature changes within 25-50 °C through double color emission or transforming the colloids into ratiometric temperature sensors via simple concentration variation of [TbL] and CDs in the initial DMF solution. Novel hybrid carbon dots-terbium chelate PSS-based nanoplatform opens an avenue for a new generation of sensitive and customizable single excited dual-band nanothermometers.

摘要

该报告介绍了一种混合聚电解质稳定的胶体,它结合了发射蓝光和绿光的构建单元,即柠檬酸盐碳点(CDs)和与杯[4]芳烃的1,3 - 二酮衍生物形成的[TbL]螯合物。通过溶剂交换合成技术,将发射绿光和蓝光的构建单元共同引入聚聚苯乙烯磺酸钠(PSS)聚集体中。在初始的N,N - 二甲基甲酰胺(DMF)溶液中,Tb中心与CD表面基团之间的配位结合既促进了[TbL]配合物和CDs共同掺入基于PSS的纳米珠中,又影响了[TbL]配合物和CDs的荧光性质及其温度传感能力。本文将合成条件的变化作为一种工具,用于调节发射蓝光和绿光的构建单元在加热和冷却时的荧光响应。所揭示的规律使得能够开发出用于通过双色发射监测25 - 50°C温度变化的双波段发光胶体,或者通过在初始DMF溶液中简单改变[TbL]和CDs的浓度,将胶体转变为比率型温度传感器。新型基于碳点 - 铽螯合物 - PSS的混合纳米平台为新一代灵敏且可定制的单激发双波段纳米温度计开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a676/8618998/69e18aab9fa6/nanomaterials-11-03080-g001.jpg

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