受体
化学
结合位点
腺苷受体
敌手
立体化学
腺苷
配体(生物化学)
兴奋剂
生物化学
作者
James H. Fergus,R.F. Bruns,Edward W. Badger,James A. Bristol,Jon D. Hartman,Lisa A. Santay,Sheryl J. Hays,Carol Huang
出处
期刊:Fed. Proc., Fed. Am. Soc. Exp. Biol.; (United States)
日期:1986-03-05
标识
DOI:10.1021/acs.analchem.4c02353
摘要
The electrochemiluminescence (ECL) effectiveness of the tris(bipyridine) ruthenium(II) (Ru(bpy)32+) system is hampered by aggregation-caused quenching (ACQ) in optoelectronic systems as a result of π-π accumulation of the aromatic ring structure. In this work, a negatively charged tetraphenylvinyl molecule (TPE-2SO3Na, TPE-4SO3Na) was synthesized to modify the electrode interface, and the π-π accumulation between Ru(bpy)32+ molecules was transformed into the π-π interaction between Ru(bpy)32+ and TPE molecules. Interestingly, the ECL signal intensity of the Ru(bpy)32+-tripropylamine (TPA) system in the presence of TPE-2SO3Na was increased by about 15 times due to the π-π action and electrostatic action. In comparison with traditional physical packaging with porous zeolites, metal-organic frameworks (MOFs), and covalent organic frameworks (COFs), the fabricated electrode interface modification strategy was simple and efficient to avoid π-π accumulation in aqueous solutions. Our success will inspire other researchers to investigate the supramolecular interaction (π-π interaction, electrostatic interaction, hydrophilic interaction, and host-guest interaction) at the electrode interface to amplify the ECL intensities of Ru(bpy)32+.
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