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Detection of Glucose Based on Gold u26 Silver Nanoparticles using Z-scan Technique

机译:Z扫描技术检测基于金纳米银颗粒的葡萄糖

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摘要

Diabetes is a common chronic disease, characterized by defects in insulin action, secretion or both causing hyperglycemia. Diabetes can have serious long-term complications as it important to control blood glucose levels. Chemical and optical methods are used mainly in measuring glucose levels. Chemical methods require drawing blood several times a day which is uncomfortable for the patient. Optical sensor measurements are affected by physical and chemical parameters and environmental changes.In this study, we propose a method for detecting and quantifying blood glucose levels based on the nonlinear optical properties measurements using the z-scan technique. Gold, silver and gold/silver (core/shell) nanoparticles were synthesized using a wet chemistry where trisodium citrate was used as a reducing agent. A green synthesis method used curcumin and glucose as reducing agents. These nanoparticles are characterized by their plasmon absorbance band, and their shapes and sizes are confirmed by TEM. Glucose conjugated nanoparticles are either synthesized or mixed with glucose. The compositions of these conjugates were confirmed by TEM. Mie theory was used to determine the size of the nanoparticles. Nanoparticles conjugated with glucose were subjected to nonlinearities measurements using the z-scan technique. The z-scan experiments were preformed using 488 nm and 514 nm CW argon-ion laser with adjusting power of 15 – 30 mW to measure the nonlinear refractive index ( ). Z-scan measurements indicated that studied samples exhibited nonlinear optical properties. The experimental results show that the nonlinear refractive index was dependent on the concentration of glucose conjugated with metal particles. Thus, the nonlinear refractive index value of the given glucose sample may be used as a quantifying indicator.
机译:糖尿病是一种常见的慢性疾病,其特征是胰岛素作用,分泌或两者均引起高血糖症。糖尿病具有严重的长期并发症,因为控制血糖水平很重要。化学和光学方法主要用于测量葡萄糖水平。化学方法需要每天抽几次血液,这会使患者不舒服。光学传感器的测量受理化参数和环境变化的影响。在这项研究中,我们提出了一种基于z扫描技术的非线性光学特性测量方法来检测和量化血糖水平的方法。使用湿化学方法合成金,银和金/银(核/壳)纳米粒子,其中柠檬酸三钠用作还原剂。绿色合成方法使用姜黄素和葡萄糖作为还原剂。这些纳米粒子的特征在于其等离激元吸收带,并且其形状和尺寸通过TEM确认。葡萄糖缀合的纳米颗粒可以合成或与葡萄糖混合。这些结合物的组成通过TEM确认。米氏理论用于确定纳米颗粒的尺寸。使用z扫描技术对与葡萄糖结合的纳米颗粒进行非线性测量。 z扫描实验是使用488 nm和514 nm CW氩离子激光器进行的,调节功率为15 – 30 mW,以测量非线性折射率()。 Z扫描测量表明研究的样品表现出非线性光学性质。实验结果表明,非线性折射率取决于与金属颗粒结合的葡萄糖的浓度。因此,给定的葡萄糖样品的非线性折射率值可以用作定量指标。

著录项

  • 作者

    Abdulwahab Fatema;

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  • 年度 2016
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