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Size saturation in low energy ion beam synthesized Au nanoclusters and their size redistribution with O irradiation

机译:低能离子束合成金纳米团簇的尺寸饱和度及O辐照后的尺寸重新分布

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Embedded Au nanoparticles have been produced in ordinary silica glass by high dose 32 keV Au- ion implantation. Samples implanted with doses higher than 1 X 10(16) cm(-2) are found to show an absorption band peaked around 535 nm, corresponding to the surface plasmon resonance (SPR) of the Au nanoclusters in silica glass. An increase in the SPR peak intensity with increase in dose has been observed upto a dose similar to 4 x 10(16) cm(-2), after which the absorption intensity shows a saturation. This saturation in the SPR intensity has been explained as coming due to a break up of larger An tratroparticles formed near the surface by displacement spikes induced by subsequently incident Au ions against their regrowth from the movement of Au atoms towards the surface. Further high dose 0 implantation at 32 keV has been found to result in a drop in absorption. On the contrary, a 2 MeV O implantation has been found to result in a growth in nanoparticle size resulting in an enhanced absorption. (c) 2005 Elsevier B.V. All rights reserved.
机译:嵌入的Au纳米粒子是通过高剂量32 keV Au离子注入在普通石英玻璃中制成的。发现以高于1 X 10(16)cm(-2)的剂量植入的样品显示出在535 nm附近达到峰值的吸收带,对应于石英玻璃中Au纳米团簇的表面等离子体共振(SPR)。观察到SPR峰值强度随剂量增加而增加,直至达到类似于4 x 10(16)cm(-2)的剂量,此后吸收强度显示饱和。解释了SPR强度的这种饱和是由于较大的An trotro粒子的分解所致,该粒子在表面附近由位移尖峰形成,该位移尖峰是由随后入射的Au离子抵抗其从Au原子向表面的运动所带来的再生而引起的。已发现在32 keV处进一步进行大剂量0注入会导致吸收下降。相反,已经发现2 MeV O注入导致纳米颗粒尺寸的增加,导致吸收增加。 (c)2005 Elsevier B.V.保留所有权利。

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