化学发光
化学
激进的
硫脲
试剂
定时器
化学反应
鲁米诺
动力学
光化学
活性氧
化学种类
化学生物学
化学动力学
超氧化物
组合化学
有机化学
生物化学
计算机科学
计算机硬件
物理
量子力学
酶
微控制器
作者
Tianhua Zheng,Wei Nie,Lu Yu,Jiangnan Shu,Yaohua Li,Changlin Tian,Wei Wang,Hua Cui
标识
DOI:10.1073/pnas.2207693119
摘要
Although the onset time of chemical reactions can be manipulated by mechanical, electrical, and optical methods, its chemical control remains highly challenging. Herein, we report a chemical timer approach for manipulating the emission onset time of chemiluminescence (CL) reactions. A mixture of Mn 2+ , NaHCO 3 , and a luminol analog with H 2 O 2 produced reactive oxygen species (ROS) radicals and other superoxo species (superoxide containing complex) with high efficiency, accompanied by strong and immediate CL emission. Surprisingly, the addition of thiourea postponed CL emission in a concentration-dependent manner. The delay was attributed to a slow-generation-scavenging mechanism, which was found to be generally applicable not only to various types of CL reagents and ROS radical scavengers but also to popular chromogenic reactions. The precise regulation of CL kinetics was further utilized in dynamic chemical coding with improved coding density and security. This approach provides a powerful platform for engineering chemical reaction kinetics using chemical timers, which is of application potential in bioassays, biosensors, CL microscopic imaging, microchips, array chips, and informatics.
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