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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Dependence of Surface-Enhanced Infrared Absorption (SEIRA) Enhancement and Spectral Quality on the Choice of Underlying Substrate: A Closer Look at Silver (Ag) Films Prepared by Physical Vapor Deposition (PVD)
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Dependence of Surface-Enhanced Infrared Absorption (SEIRA) Enhancement and Spectral Quality on the Choice of Underlying Substrate: A Closer Look at Silver (Ag) Films Prepared by Physical Vapor Deposition (PVD)

机译:表面增强红外吸收(SEIRA)增强和光谱质量对下层基板选择的依赖性:通过物理气相沉积(PVD)制备的银(Ag)膜的近距离观察

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摘要

Silver (Ag) films of varying thickness were simultaneously deposited using physical vapor deposition (PVD) onto six infrared (IR) substrates (BaF_(2), CaF_(2), Ge, AMTIR, KRS-5, and ZnSe) in order to correlate the morphology of the deposited film with optimal SEIRA response and spectral band symmetry and quality. Significant differences were observed in the surface morphology of the deposited silver films, the degree of enhancement provided, and the spectral appearance of para-nitrobenzoic acid (PNBA) cast films for each silver-coated substrate. These differences were attributed to each substrate's chemical properties, which dictate the morphology of the Ag film and ultimately determine the spectral appearance of the adsorbed analyte and the magnitude of SEIRA enhancement. Routine SEIRA enhancement factors (EFs) for all substrates were between 5 and 150. For single-step Ag depositions, the following ranking identifies the greatest SEIRA enhancement factor and the maximum absorption of the 1345 cm~(-1) spectral marker of PNBA at the optimal silver thickness for each substrate: BaF_(2) (EF velence 85 +- 19, 0.059 A, 10 nm Ag) > CaF_(2) (EF velence 75 +- 30, 0.052 A, 10 nm Ag) > Ge (EF velence 45 +- 8, 0.019 A, 5 nm Ag) > AMTIR (EF velence 38 +- 8, 0.024 A, 15 nm Ag) > KRS-5 (EF velence 24 +- 1, 0.015 A, 12 nm Ag) > ZnSe (EF velence 9 +- 5, 0.008 A, 8 nm Ag). A two-step deposition provides 59percent larger EFs than single-step depositions of Ag on CaF_(2). A maximum EF of 147 was calculated for a cast film of PNBA (surface coverage velence 341 ng/cm~(2)) on a 10 nm two-step Ag film on CaF_(2) (0.102 A, 1345 cm~(-1) symmetric NO_(2) stretching band). The morphology of the two-step Ag film has smaller particles and greater particle density than the single-step Ag film.
机译:使用物理气相沉积(PVD)将不同厚度的银(Ag)膜同时沉积到六个红外(IR)基板(BaF_(2),CaF_(2),Ge,AMTIR,KRS-5和ZnSe)上,以便将沉积薄膜的形态与最佳SEIRA响应以及光谱的对称性和质量相关联。对于每个镀银的基材,在沉积的银膜的表面形态,提供的增强程度以及对硝基苯甲酸(PNBA)流延膜的光谱外观方面观察到了显着差异。这些差异归因于每种基质的化学性质,这些化学性质决定了Ag膜的形态,并最终确定了吸附分析物的光谱外观和SEIRA增强的幅度。所有基材的常规SEIRA增强因子(EFs)在5至150之间。对于单步Ag沉积,以下排名确定了最大SEIRA增强因子和PNBA在1345 cm〜(-1)光谱标记处的最大吸收每个基板的最佳银厚度:BaF_(2)(EF velence 85 +-19,0.059 A,10 nm Ag)> CaF_(2)(EF velence 75 +-30,0.052 A,10 nm Ag)> Ge( EF velence 45 +-8,0.019 A,5 nm Ag)> AMTIR(EF velence 38 +-8,0.024 A,15 nm Ag)> KRS-5(EF velence 24 +-1,0.015 A,12 nm Ag) > ZnSe(EF velence 9±5,0.008A,8nm Ag)。与在CaF_(2)上进行单步沉积的银相比,两步沉积提供的EFs大59%。对于在CaF_(2)(0.102 A,1345 cm〜(-1)上的10 nm两步Ag膜上的PNBA流延膜(表面覆盖率341 ng / cm〜(2))计算出的最大EF为147。 )对称的NO_(2)拉伸带)。与单步Ag膜相比,两步Ag膜的形态具有更小的颗粒和更大的颗粒密度。

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