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首页> 外文期刊>Science in China. Series B, Chemistry >Absorption, fluorescence and resonance Rayleigh scattering spectral characteristics of interaction of gold nanoparticle with safranine T
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Absorption, fluorescence and resonance Rayleigh scattering spectral characteristics of interaction of gold nanoparticle with safranine T

机译:金纳米粒子与番红花T相互作用的吸收,荧光和共振瑞利散射光谱特性

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The interaction between gold nanoparticle and safranine T (ST) has been studied with resonance Rayleigh scattering (RRS) spectra, absorption and fluorescence spectra. In the pH 5 solution, citrate [(H_2L)~(2-)] self-assembles on the surface of positively-charged gold nanoparticle, which results in the [(Au)_n(H_2L)_m]~(x-) complex. In other words, one of carboxylate oxygens in (H_2L)~(2-) moves inward and combines with gold nanoparticle. The other carboxylate oxygens moves outward to form a supermolecular complex anion with x negative charges. Then by virtue of electrostatic attraction, hydrophobic force and charge transfer action, the complex anion binds with ST cation to form a new ion-association complex. Here (H_2L)~(2-) acts as a bridge. The formation of the complex results in the significant enhancement of RRS intensity, the appearance of new RRS spectrum, the red shift of plasma absorption band of gold nanoparticle as well as the decrease in the absorbance and fluorescence quenching for safranine T. In this work, the interaction between gold nanoparticle and ST on the RRS, absorption and fluorescence spectra has been investigated. The reason why RRS intensity increases greatly and the reaction mechanism have been inquired. The results show that RRS spectra can not only be used to study nanoparticle and reaction product, but also are a sensitive means to characterize and detect nanoparti-cles.
机译:用共振瑞利散射(RRS)光谱,吸收光谱和荧光光谱研究了金纳米粒子与番红花T(ST)之间的相互作用。在pH 5溶液中,柠檬酸盐[(H_2L)〜(2-)]在带正电的金纳米粒子表面自组装,形成[(Au)_n(H_2L)_m]〜(x-)络合物。换句话说,(H_2L)〜(2-)中的羧酸氧之一向内移动并与金纳米粒子结合。其他羧酸氧向外移动,形成带有x个负电荷的超分子络合物阴离子。然后,借助静电吸引,疏水力和电荷转移作用,络合物阴离子与ST阳离子结合形成新的离子缔合络合物。在这里(H_2L)〜(2-)充当桥梁。复合物的形成导致RRS强度显着增强,新的RRS光谱出现,金纳米粒子的血浆吸收带发生红移以及藏红花T的吸光度降低和荧光猝灭。在这项工作中,研究了金纳米粒子与ST之间在RRS,吸收和荧光光谱上的相互作用。已经探究了RRS强度大大增加的原因和反应机理。结果表明,RRS光谱不仅可以用于研究纳米粒子和反应产物,而且是表征和检测纳米粒子的灵敏手段。

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