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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Rational Design of Fractal Gold Nanosphere Assemblies with Optimized Photothermal Conversion Using a Quantitative Structure Property Relationship (QSPR) Approach
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Rational Design of Fractal Gold Nanosphere Assemblies with Optimized Photothermal Conversion Using a Quantitative Structure Property Relationship (QSPR) Approach

机译:使用定量结构性能关系(QSPR)方法优化光热转化分形金纳米组件的理性设计

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摘要

Assemblies of plasmonic nanoparticles have been proposed for various applications, including photothermal therapy, exploiting surface plasmon coupling phenomena. However, the rational design of fractal nanoparticle assembly remains challenging due to the lack of structural characterizations and modelization of real systems. Here we used the quantitative structure property relationship (QSPR) approach, driven by experimental data and statistical analysis, to establish a relationship between structural descriptors of fractal gold nanoparticle (GNP) aggregates and their light-to-heat conversion. A total of 160 assemblies of various size spherical GNPs with different polyelectrolyte chains were synthesized, which differ in their global charge, size, mass fractal dimension, and plasmonic properties. Fifteen independent descriptors of structure and properties were extracted and further analyzed by QSPR. Principal component analysis and multilinear regression reveal that light-to-heat conversion is mainly governed by the structure of the aggregates and not by the characteristics of the building blocks. This highlights the key role of the fractal dimension of the aggregate and of the ratio of GNP/polyelectrolyte mass to optimize photothermal effects. Rational criteria to optimize light-to-heat conversion within nonideal fractal assemblies of GNP were identified, relaxing on the choice of other parameters, such as GNP or aggregate size, that can be adapted to the desired biomedical applications.
机译:已经提出了阶级纳米颗粒的组件,用于各种应用,包括光热疗法,利用表面等离子体耦合现象。然而,由于缺乏结构特征和实际系统的建模,分形纳米粒子组件的合理设计仍然具有挑战性。在这里,我们使用了通过实验数据驱动的定量结构性质关系(QSPR)方法和统计分析,建立分形金纳米粒子(GNP)聚集体的结构描述符和其光 - 热转化之间的关系。合成了具有不同聚电解质链的各种尺寸球形GNP的总共160个组件,其全局电荷,尺寸,质量分形尺寸和等离子体性能不同。提取十五个独立描述的结构和性质,并通过QSPR进一步分析。主要成分分析和多线性回归揭示了光到热转换主要由聚集体的结构控制,而不是由构建块的特性控制。这突出了聚集体分形尺寸的关键作用和GNP /聚电解质质量的比例优化光热效应。鉴定了优化GNP非膜分形组件内的光热转换的合理标准,在选择其他参数(例如GNP或骨料尺寸)上放松,这可以适应所需的生物医学应用。

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