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Nano-morphology induced additional surface plasmon resonance enhancement of SERS sensitivity in Ag/GaN nanowall network

机译:纳米形态诱导了Ag / GaN纳米壁网络中SERS敏感性的其他表面等离子体激元共振增强

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摘要

The GaN nanowall network, formed by opening the screw dislocations by kinetically controlled MBE growth, possesses a large surface and high conductivity. Sharp apexed nanowalls show higher surface electron concentration in the band-tail states, in comparison to blunt apexed nanowalls. Uncapped silver nanoparticles are vapor deposited on the blunt and sharp GaN nanowall networks to study the morphological dependence of band-edge plasmon-coupling. Surface enhanced Raman spectroscopy studies performed with a rhodamine 6G analyte on these two configurations clearly show that the sharp nanowall morphology with smaller Ag nanoparticles shows higher enhancement of the Raman signal. A very large enhancement factor of 2.8 x 10(7) and a very low limit of detection of 10(-10) M is observed, which is attributed to the surface plasmon resonance owing to the high surface electron concentration on the GaN nanowall in addition to that of the Ag nanoparticles. The significantly higher sensitivity with same-sized Ag nanoparticles confirms the unconventional role of morphology-dependent surface charge carrier concentration of GaN nanowalls in the enhancement of Raman signals.
机译:通过通过动力学控制的MBE生长来打开螺旋位错而形成的GaN纳米壁网络具有较大的表面和较高的电导率。与钝顶的纳米壁相比,尖峰的纳米壁在带尾状态下显示出更高的表面电子浓度。将未封端的银纳米颗粒气相沉积在钝的和尖锐的GaN纳米壁网络上,以研究带边缘等离子体激元耦合的形态依赖性。用罗丹明6G分析物对这两种构型进行的表面增强拉曼光谱研究清楚地表明,具有较小Ag纳米颗粒的尖锐纳米壁形态显示出更高的拉曼信号增强。观察到2.8 x 10(7)的非常大的增强因子和10(-10)M的非常低的检测极限,这归因于GaN纳米壁上的高表面电子浓度导致表面等离子体共振。相当于银纳米粒子。相同尺寸的Ag纳米颗粒具有显着更高的灵敏度,这证实了GaN纳米壁的形态依赖表面电荷载流子浓度在拉曼信号增强中具有非常规作用。

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