Environment-Friendly Synthesis of Undoped and Cu doped ZnO Nanoparticles and Study of their Optical Absorption Properties towards Biological Applications

P. Samanta, T. Kamilya
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Abstract

Wet chemical method is a simple and cost-effective way to synthesize nanoparticles of high yield and mass production compared to other conventional methods. Besides, it does not require the maintenance of rigorous experimental conditions like high temperature, low pressure or flow of carrier gases. We have followed a simple wet chemical method to synthesize pure and Cu doped ZnO nanoparticles. Absorption spectroscopic study yields the absorption behavior of a material over a wide range of the electromagnetic spectrum. Absorption study of the synthesized undoped ZnO and Cu/ZnO reveals that doping with Cu decreases the absorption coefficient. It clearly indicates that the scattering of photons by phonons reduces due to Cu doping. The Urbach energy is an important parameter to understand the degree of disorder of phonon states in a material. It also enables us to study the dependence of the absorption coefficient on the wave-length of incident photons of energies lower than the band gap energy. For pure ZnO, the Urbach energy was calculated to be 0.511 eV and decreased to 0.483 eV upon doping with Cu in ZnO. The extinction coefficient was also calculated to understand the optical absorption process in the material.
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未掺杂和Cu掺杂ZnO纳米粒子的环境友好合成及其光吸收性能在生物应用中的研究
与其他传统方法相比,湿化学法是一种简单、经济、高效的纳米颗粒合成方法。此外,它不需要维持高温、低压或载气流动等严格的实验条件。我们采用一种简单的湿化学方法合成了纯氧化锌纳米粒子和铜掺杂氧化锌纳米粒子。吸收光谱研究产生了一种材料在广泛的电磁波谱范围内的吸收行为。对合成的未掺杂ZnO和Cu/ZnO的吸收研究表明,Cu的掺杂降低了吸收系数。这清楚地表明,由于铜的掺杂,光子被声子散射的能力降低了。乌尔巴赫能量是理解材料中声子态无序程度的重要参数。它还使我们能够研究吸收系数与入射能量低于带隙能量的光子波长的关系。对于纯ZnO,计算得到的乌尔巴赫能为0.511 eV,而在ZnO中掺杂Cu后,乌尔巴赫能降至0.483 eV。计算消光系数以了解材料的光吸收过程。
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