Chengcheng Wang,Xiaodan Gong,Jiashuang Li,Yuhua Chen,Bingzhen Li,Liping Zhang,Shaohai Fu
出处
期刊:Social Science Research Network [Social Science Electronic Publishing] 日期:2022-01-01
标识
DOI:10.2139/ssrn.4005933
摘要
Ultrahigh-sensitivity including both ultralow-color-hysteresis and narrow temperature change is an important requirement of temperature sensors. However, it is an almost impossible challenge for the traditional ternary thermochromic mechanism. Herein, a new class of fluorane dyes was designed and synthesized which was used to fabricate the ultrahigh-sensitivity sensors and smart fabrics via microcapsule technology and screen printing. The new fluorane dyes (M2 and M3) performed excellent thermochromic properties with a narrow color-change temperature range (2.1 o C) and ultralow-color-hysteresis (< 0.5 o C). The ultrahigh-sensitivity property is attributed to the intramolecular proton-coupled electron transfer (PCET) color-change mechanism. Moreover, the effect of particle size and core/shell ratio on the temperature sensitivity of microcapsule was investigated. The optimized microcapsules with 5 μm and 2/1 core/shell showed overall properties including the color-change temperature range as about 2 o C and the ultralow-color-hysteresis as about 0.3 o C. This unique design concept for ultrahigh-sensitivity sensors has great potential in human body care and other flexible sensors or smart fabrics fields.