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Two-Photon Sensing of Dopamine by using Au Nanoparticles

机译:使用Au纳米粒子的二巴胺对二巴胺的两光析感测

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In this paper, we demonstrated a gold nanoparticle based two-photon photoluminescence (TPPL) assay for the detection of dopamine with the detection limit of 0.3μM. Protonated dopamine molecules can bind bidentately to surface of gold atoms through the catechol group. The adsorption of dopamine displaces the stabilizing agent of citrate groups, and neutralizes the charge of solution, resulting in non-cross linking aggregation of Au NPs. Aggregation of Au NPs could induce significantly enhanced TPPL. Thus, a simple TPPL assay was designed. We have shown that when Au NPs solution was mixed with dopamine, TPPL intensity increased by about 47 times. The mechanism of sensing assay has been discussed. In addition, the TPPL assay was highly selective to dopamine and it can distinguish from uric acid, ascorbic acid and metal ions.
机译:在本文中,我们证明了一种基于金纳米粒子的两光粒性光致发光(TPPL)测定,用于检测多巴胺,检测限为0.3μm。质子化多巴胺分子可以通过儿茶酚基团二人与金原子的表面结合。多巴胺的吸附取代了柠檬酸盐基团的稳定剂,并中和溶液的电荷,导致Au nps的非交联聚集。 AU NP的聚合可以诱导显着增强的TPPL。因此,设计了简单的TPPL测定。我们已经表明,当Au NPS溶液与多巴胺混合时,TPPL强度增加约47倍。讨论了感测测定的机制。此外,TPPL测定对多巴胺具有高度选择性,并且可以区分尿酸,抗坏血酸和金属离子。

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