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基于水凝胶和有机水凝胶的可拉伸、超灵敏、透明、室温实时 NO 传感器及其机制。

Hydrogel- and organohydrogel-based stretchable, ultrasensitive, transparent, room-temperature and real-time NO sensors and the mechanism.

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies and the Guangdong Province Key Laboratory of Display Material and Technology, School of Electronics and Information Technology, Sun Yat-sen University, Guangzhou 510275, China.

National Engineering Research Center of Novel Equipment for Polymer Processing, Key Laboratory of Polymer Processing Engineering (SCUT), Ministry of Education, South China University of Technology, Guangzhou, 510641, China.

出版信息

Mater Horiz. 2022 Jul 4;9(7):1921-1934. doi: 10.1039/d2mh00284a.

Abstract

Highly stretchable, sensitive and room-temperature nitrogen dioxide (NO) sensors are fabricated by exploiting intrinsically stretchable, transparent and ion-conducting hydrogels and active metals as the novel transducing materials and electrodes, respectively. The NO sensor exhibits high sensitivity (60.02% ppm), ultralow theoretical limit of detection (6.8 ppb), excellent selectivity, linearity and reversibility at room temperature. Notably, the sensitivity can be maintained even under 50% tensile strain. For the first time, it's found that the metal electrodes significantly impact the sensing performance. Specifically, the sensitivity is boosted from 31.18 to 60.02% ppm by replacing the anodic silver with copper-tin alloy. Importantly, by applying specially designed sensing tests, and microscopic and composition analyses, we have obtained the inherent NO sensing mechanism: the anodic metal tends to be oxidized and the NO molecules tend to react in the cathode-gel interface. The introduction of glycerol converts the hydrogel into the organohydrogel with remarkably enhanced anti-drying and anti-freezing capacities and toughness, which effectively improved the long-time stability of the sensors. Importantly, we execute sound/light alarms and a wireless smartphone alarm by utilizing a designed circuit board and applet. This work gives an incisive investigation for the preparation, performance improvement, mechanism and application of hydrogel-based NO sensors, promoting the evolution of hydrogel ionotronics.

摘要

利用具有内在拉伸性、透明性和离子导电性的水凝胶和活性金属分别作为新型换能材料和电极,制备了高拉伸性、灵敏且在室温下工作的二氧化氮(NO)传感器。该 NO 传感器在室温下表现出高灵敏度(60.02% ppm)、超低理论检测限(6.8 ppb)、出色的选择性、线性和可逆性。值得注意的是,即使在 50%的拉伸应变下,其灵敏度也能得以保持。首次发现金属电极对传感性能有显著影响。具体而言,通过用铜锡合金代替阳极银,灵敏度从 31.18% ppm提升至 60.02% ppm。重要的是,通过专门设计的传感测试、微观和成分分析,我们获得了内在的 NO 传感机制:阳极金属倾向于被氧化,NO 分子倾向于在阴极-凝胶界面发生反应。甘油的引入将水凝胶转化为具有显著增强的抗干燥和抗冻结能力和韧性的有机水凝胶,这有效地提高了传感器的长期稳定性。重要的是,我们利用设计的电路板和小程序执行声音/灯光警报和无线智能手机警报。这项工作对水凝胶基 NO 传感器的制备、性能提升、机制和应用进行了深入研究,推动了水凝胶离子电子学的发展。

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