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1)  surface plasma resonance absorbtion peak
表面等离子共振吸收峰
2)  surface plasmon resonant bi-peaks
表面等离子体共振吸收双峰
3)  surface plasmon resonance absorption
表面等离子共振吸收
1.
By using Maxwell-Garnett effective medium theory,the optical constants of Ag/AAO nano-ordered array composites have been simulated,the dependence of optical constants of Ag/AAO composites on Ag volume fraction and the relationship between the aspect ratios of Ag nanoparticles and the surface plasmon resonance absorption(SPRA) of Ag nanoparticles have been studied.
运用Maxwell-Garnett有效介质理论,计算了Ag/阳极氧化铝(AAO)纳米有序阵列复合结构的光学常数(250~2 000 nm波段),探讨了Ag组分的体积分数对Ag/AAO光学常数的调制作用和Ag纳米粒子的长径比对其表面等离子共振吸收的影响。
4)  surface plasma resonance absorption
表面等离子体共振吸收
5)  plasma resonance absorption
等离子共振吸收
1.
As the Ag composition decreases,the dipolar plasma resonance absorption peak shifts to the longer wavelength,weakened and gradually expanded,and vice versa.
研究了Ag-AAO纳米有序阵列复合结构的等离子共振吸收特性。
6)  surface plasma resonance
表面等离子共振
1.
Based on surface plasma resonance (SPR) sensor, the relationships between reflected light power and incidence light angle for Al film, Ag film and Au film were studied at the fix wavelength 632.
利用自制的棱镜型表面等离子共振(SPR)传感器,在固定入射光波长632。
2.
It is shown from the calculation results that with the decreasing of the thickness of the ring walls(d/a from 1 to 0),the wavelength of gold nano-ring s surface plasma resonance gets red shift from about 684 nm gradual.
当金纳米环壁厚度d逐渐减小时(d/a由1→0,其中a为环半径),其表面等离子共振吸收频率由684 nm逐渐红移,且速率逐渐增大,而且其等离子共振频率处三阶极化率增强因子F(3)(ωR)随着环壁厚度的减小先增大,而后逐渐减小(d/a≈0。
补充资料:表面吸收器
分子式:
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性质:吸收设备的一种。通常是熔融石英制的横卧圆筒或S形排管,或陶瓷制的吸收坛或吸收罐。吸收剂占其空间的一部分。将原料气体或气体混合物导入器内。使缓缓流过吸收剂液体表面,易溶气体(组分)就被吸收而转入液相。气液接触面积不大,但吸收器的外壁面则较大,易于散去吸收过程中放出的热量。

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