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High sensitivity localized surface plasmon resonance sensor of gold nanoparticles: Surface density effect for detection of boric acid

机译:金纳米粒子的高灵敏度局部表面等离子体共振传感器:用于检测硼酸的表面密度效应

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This paper presents the study on localized surface plasmon resonance (LSPR) of gold nanoparticles (AuNPs) sensor and its detection towards the presence of boric acid (H3BO3). Boric acid is a substance commonly used as consumer products and also been used in food preparations to increase elasticity, better texture and crispiness. However, this chemical was claimed as non-permitted preservative and additive in food preparation. In this study, spherical AuNPs were grown on quartz substrate using Seed Mediated Growth Technique (SMGT) with variations seeding process. The plasmonic responses of the AuNPs in deionized water and in various concentration of boric acid solution based on optical absorption spectra of the AUNPs samples were recorded. The changes of the resonance peak intensity and position of the spectra were used as sensing parameters. It was found that the surface density of nanoparticles grown on the AuNPs samples affected the plasmonic responses and the sensing sensitivity of the AuNPs samples.
机译:本文介绍了金纳米粒子(AuNPs)传感器的局部表面等离子体共振(LSPR)及其对硼酸(H 3 BO 3 )存在的检测的研究。硼酸是一种常用作消费品的物质,也可用于食品制备中以增加弹性,更好的质地和脆性。但是,该化学品被宣称是食品制备中不允许的防腐剂和添加剂。在这项研究中,球形的AuNPs使用种子介导生长技术(SMGT)在变种过程中生长在石英基板上。基于AUNPs样品的光吸收光谱,记录了去离子水和各种浓度的硼酸溶液中AuNPs的等离子体响应。共振峰强度和光谱位置的变化用作感测参数。发现在AuNPs样品上生长的纳米颗粒的表面密度影响AuNPs样品的等离子体响应和感测灵敏度。

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