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Influence of dose on particle size of colloidal silver nanoparticles synthesized by gamma radiation

机译:剂量对γ射线合成胶态银纳米颗粒粒径的影响

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Colloidal silver nanoparticles were synthesized by y-irradiation-induced reduction method of an aqueous solution containing silver nitrate as a precursor in various concentrations between 7.40 x 10~(-4) and 1.84 x 10~(-3) M, polyvinyl pyrrolidone for capping colloidal nanoparticles, isopropanol as radical scavenger of hydroxyl radicals and deionised water as a solvent. The irradiations were carried out in a ~(60)Co y source chamber at doses up to 70 kGy. The optical absorption spectra were measured using UV-vis spectrophotometer and used to study the particle distribution and electronic structure of silver nanoparticles. As the radiation dose increases from 10 to 70 kGy, the absorption intensity increases with increasing dose. The absorption peak λ_(max) blue shifted from 410 to 403 nm correspond to the increase of absorption conduction electron energy from 3.02 to 3.08 eV, indicating the particle size decreases with increasing dose. The particle size was determined by photon cross correlation spectroscopy and the results showed that the particle diameter decreases exponentially with the increase of dose. The transmission electron microscopy images were taken at doses of 20 and 60 kGy and the results confirmed that as the dose increases the diameter of colloidal silver nanoparticle decreases and the particle distribution increases.
机译:胶体银纳米颗粒是通过y射线诱导还原法合成的,该溶液含有浓度为7.40 x 10〜(-4)至1.84 x 10〜(-3)M,用于封端的聚乙烯吡咯烷酮的硝酸银为前体的水溶液。胶体纳米粒子,异丙醇作为羟基自由基的清除剂和去离子水作为溶剂。辐射是在〜(60)Co y源室中进行的,剂量最高为70 kGy。使用紫外可见分光光度计测量光吸收光谱,并用于研究银纳米粒子的粒子分布和电子结构。随着辐射剂量从10 kGy增加到70 kGy,吸收强度随剂量增加而增加。吸收峰λ_(max)blue从410 nm变为403 nm,对应于吸收传导电子能从3.02 eV增大到3.08 eV,表明粒径随剂量增加而减小。用光子互相关光谱法测定了粒径,结果表明粒径随剂量的增加呈指数减小。透射电子显微镜图像是在20和60 kGy的剂量下拍摄的,结果证实,随着剂量的增加,胶体银纳米颗粒的直径减小,并且颗粒分布增加。

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