Synthesis of bimetallic core/shell nanoparticles via pulse laser ablation and their catalytic effectiveness in dye degradation

Muhammad Siddiq, Zia Ur Rehman, Muhammad Asim Rasheed, Syed Mujtaba ul Hassan, H. Qayyum, Sultan Mehmood, Abdul Qayyum
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Abstract

In this study, a simple two step method is employed to sequentially synthesize bimetallic core/shell nanoparticles (NPs). In the first step, pure mono Au and Ag NPs are prepared via 1064 nm pulsed laser ablations in liquid. In the second step, the Au/Ag substrate immersed in the Au/Ag colloidal solution is exposed to the nanosecond laser at 1064 nm wavelength using various laser energies and ablation periods. The crystalline phase and morphology of the bimetallic core/shell NPs (Au/Ag, Ag/Au) are examined by x-ray diffraction and scanning electron microscopy, respectively. The results showed that highly crystalline, well-dispersed spherical monometallic and bimetallic core/shell NPs can be synthesized via pulse laser ablation in liquid. The average diameter of Au, Ag, Au/Ag, and Ag/Au NPs is 34, 40, 58, and 43 nm, respectively. With increasing laser energy, the plasmonic absorption peak of Au NPs redshifts and that of Ag NPs blueshifts. For core/shell, two plasmonic peaks were observed, each of which shifted with increasing ablation time for shell material. Organic dyes with concentrations of 10−5M of methylene-blue with NaBH4 of 0.05M and methylene-orange with NaBH4 of 0.1M are used to examine the catalytic performance of the NPs. The core/shell NPs performed better than monometallic NPs. In particular, the catalytic degradation efficiency of Au/Ag and Ag/Au NPs is approximately 90% in significantly less time than monometallic Au and Ag NPs.
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通过脉冲激光烧蚀合成双金属核/壳纳米粒子及其在染料降解中的催化作用
本研究采用简单的两步法依次合成双金属核/壳纳米粒子(NPs)。第一步,在液体中通过 1064 纳米脉冲激光烧蚀制备纯的单金和银 NPs。第二步,利用不同的激光能量和烧蚀周期,将浸入金/银胶体溶液中的金/银基底暴露在波长为 1064 纳米的纳秒激光下。通过 X 射线衍射和扫描电子显微镜分别对双金属核/壳 NPs(Au/Ag、Ag/Au)的晶相和形貌进行了研究。结果表明,在液体中通过脉冲激光烧蚀可以合成出高度结晶、分散良好的球形单金属和双金属核/壳 NPs。金、银、金/银和银/金 NPs 的平均直径分别为 34、40、58 和 43 nm。随着激光能量的增加,金纳米粒子的等离子吸收峰会发生红移,而银纳米粒子的等离子吸收峰会发生蓝移。对于核/壳材料,观察到两个等离子峰,其中每个峰都随着壳材料烧蚀时间的增加而移动。使用浓度为 10-5M 的亚甲基蓝(NaBH4 为 0.05M)和亚甲基橙(NaBH4 为 0.1M)有机染料来检验 NPs 的催化性能。核/壳 NPs 的性能优于单金属 NPs。特别是金/银和银/金 NPs 的催化降解效率约为 90%,而所需时间大大少于单金属金和银 NPs。
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