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Tuning of the near-infrared localized surface plasmon resonance of Cu2-xSe nanoparticles with lysozyme-induced selective aggregation

机译:溶菌酶诱导的选择性聚集作用调节Cu2-xSe纳米粒子的近红外局部表面等离子体共振

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摘要

In this paper, negatively charged Cu2-xSe nanoparticles (NPs), stabilized by poly(styrene sulfonic acid) sodium (PSS) (PSS-Cu2-xSe NPs), were synthesized via a simple templated method, which exhibited strong localized surface plasmon resonance (LSPR) absorption in the near-infrared (NIR) region. It was found that the prepared PSS-Cu2-xSe NPs could be aggregated by lysozymes (Lys) selectively through the electrostatic interaction, since the Lys was positively charged in a neutral medium, producing a red shift of the LSPR band starting from 980 nm to 1300 nm area. With different concentrations of Lys, the LSPR band can be dynamically tuned, and the absorbance ratio of A(1300)/A(980) has a good linear relationship with the concentration of Lys in the range of 5-100 nM, thus supplying an effective way to tune LSPR in the NIR region of semiconductors that might be applied for sensing and photothermal conversion sciences and technologies in the NIR region.
机译:本文通过简单的模板化方法合成了由聚苯乙烯磺酸钠(PSS)(PSS-Cu2-xSe NPs)稳定的带负电荷的Cu2-xSe纳米粒子(NPs),该纳米粒子具有较强的局部表面等离子体共振(LSPR)在近红外(NIR)区域的吸收。发现制备的PSS-Cu2-xSe NPs可以通过静电相互作用被溶菌酶(Lys)选择性地聚集,因为Lys在中性介质中带正电,从而使LSPR带从980 nm开始出现红移。 1300 nm面积。在不同的Lys浓度下,可以动态调谐LSPR谱带,A(1300)/ A(980)的吸光度比与Lys的浓度在5-100 nM范围内具有良好的线性关系,从而提供了在半导体NIR区域中调谐LSPR的有效方法,可用于NIR区域中的传感和光热转换科学和技术。

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