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Charge transfer-induced enhancement of a Raman signal in a hybrid Ag-GaN nanostructure

机译:电荷传递诱导的杂交Ag-GaN纳米结构中拉曼信号的增强

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摘要

A hybrid system consisting of Ag nanoparticles dispersed onto a GaN nanowall network (GaN NWN) exhibited characteristic optical properties and electronic band structure. Surface-sensitive XPS studies of this high-surface-area system revealed the presence of a high surface charge carrier concentration due to dangling bonds, which resulted in a high metal-like surface conductivity. The low coverage of absorbed Ag led to the nanocluster formation, facilitating charge transfer from GaN to Ag, and thereby further increasing the surface charge carriers. Photoluminescence studies revealed the presence of a high density of band tail states at the conduction band, which is significantly (14-fold) larger than in the GaN epilayer. Raman studies show an increase (2.46-fold) in the interfacial strain at the Ag/GaN interface after the deposition of the Ag nanoparticles. We show that these surface modifications increase the density of hot spots, resulting in an intense Raman signal with an enhancement factor of 10(7). The role of the charge transfer between Ag nanoparticles and GaN NWN in the enhancement of Raman signal has been demonstrated.
机译:将由分散在GaN纳米瓦尔网络(GaN NWN)上的Ag纳米颗粒组成的混合系统表现出特征光学性能和电子带结构。这种高表面积系统的表面敏感XPS研究揭示了由于悬空粘合引起的高表面电荷载流子的存在,这导致高金属状表面电导率。吸收的AG的低覆盖率导致纳米簇形成,促进从GaN到Ag的电荷转移,从而进一步增加表面电荷载体。光致发光研究揭示了在导通带处存在高密度的带尾态,其显着比GaN癫痫仪大致(14倍)。拉曼研究表明,Ag纳米颗粒沉积后Ag / GaN界面的界面菌株中的互晶菌株增加(2.46倍)。我们表明,这些表面修改增加了热点的密度,导致具有10(7)的增强因子的强烈拉曼信号。已经证明了Ag纳米粒子和GaN NWN在拉曼信号增强中的电荷转移的作用。

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    《RSC Advances》 |2019年第49期|共7页
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  • 正文语种 eng
  • 中图分类 化学;
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