Quenching of photoluminescence from copolymer pendant Ru(bpy)32+complexes by colloidal Prussian Blue

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Feng Zhao, Jian Zhang, Xiaohuai Hou, Toshiyuki Abe and Masao Kaneko


Abstract

Static quenching of photoluminescence from nine copolymer pendant Ru(bpy)32+ complexes [pendant Ru(bpy)32+] by colloidal Prussian Blue (PB) has been studied. The quenching behavior was analyzed in terms of a stepwise complex formation mechanism between pendant Ru(bpy)32+ and negatively charged PB which obeys Poisson statistics. Seven of the pendant Ru(bpy)32+ complexes exhibited stronger tendency to bind onto colloidal PB particles in comparison with the free Ru(bpy)32+ complex. This was ascribed to the characteristics of the polymer–pendant Ru(bpy)32+ complexes, such as electrostatic and coordination effect, hydrophilicity/hydrophobicity and steric hindrance of the polymer. The importance of these factors to influence the interaction of the pendant Ru(bpy)32+ with colloidal PB particles has been discussed.


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