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用于温度成像的米级化学发光碳纳米点薄膜

Meter-scale chemiluminescent carbon nanodot films for temperature imaging.

作者信息

Zheng Guang-Song, Shen Cheng-Long, Lou Qing, Han Jiang-Fan, Ding Zhong-Zheng, Deng Yuan, Wu Meng-Yuan, Liu Kai-Kai, Zang Jin-Hao, Dong Lin, Shan Chong-Xin

机构信息

Henan Key Laboratory of Diamond Optoelectronic Material and Devices, Key Laboratory of Material Physics, Ministry of Education, School of Physics and Microelectronics, Zhengzhou University, Zhengzhou 450052, China.

出版信息

Mater Horiz. 2022 Oct 3;9(10):2533-2541. doi: 10.1039/d2mh00495j.

DOI:10.1039/d2mh00495j
PMID:35829660
Abstract

Chemiluminescence (CL), as one class of luminescence driven by chemical reaction, exhibits obvious temperature-dependence in its light emission process. Herein, temperature-dependent CL emission of carbon nanodots (CDs) in the chemical reaction of peroxalate and hydrogen peroxide is demonstrated and temperature imaging based on the temperature-dependent CL has been established for the first time. In detail, the temperature-dependent CL emission of CDs in the chemical reaction of peroxalate and hydrogen peroxide is observed, and the linear relationship between the CL intensity and temperature is demonstrated in both the CL solution and film, enabling their applications in temperature sensing and imaging capabilities. The increase of the CL emission with temperature can be attributed to the accelerated electron exchange between the CDs and intermediate generated in the peroxalate system. Meter-scale chemiluminescent CD films have been constructed. The CL sensor based on the films presents a high spatial resolution of 0.4 mm and an outstanding sensitivity of 0.08 °C, which is amongst the best values for the thermographic luminophores. With the unique temperature response and flexible properties, non-planar, meter-scale and sensitive palm temperature imaging has been achieved. These findings present new opportunities for designing CL-based temperature probes and thermography.

摘要

化学发光(CL)作为一类由化学反应驱动的发光现象,在其发光过程中表现出明显的温度依赖性。在此,展示了草酸盐与过氧化氢化学反应中碳纳米点(CDs)的温度依赖性CL发射,并首次基于温度依赖性CL建立了温度成像。具体而言,观察到草酸盐与过氧化氢化学反应中CDs的温度依赖性CL发射,并且在CL溶液和薄膜中均证明了CL强度与温度之间的线性关系,使其能够应用于温度传感和成像。CL发射随温度的增加可归因于CDs与草酸盐体系中产生的中间体之间加速的电子交换。构建了米级化学发光CD薄膜。基于该薄膜的CL传感器具有0.4 mm的高空间分辨率和0.08 °C的出色灵敏度,这是热成像发光体的最佳值之一。凭借独特的温度响应和灵活的特性,实现了非平面、米级和灵敏的手掌温度成像。这些发现为设计基于CL的温度探针和热成像提供了新的机会。

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