Hydroxyapatite Modified with Silver Nanoparticles for Recording the SERS Spectra of Differently Charged Analytes

IF 0.8 4区 化学 Q4 SPECTROSCOPY
A. Yu. Panarin, P. Mojzes, E. N. Kurtaliev, O. S. Kulakovich, S. N. Terekhov
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引用次数: 0

Abstract

The surface of hydroxyapatite (HA) was functionalized with silver nanoparticles by reducing silver nitrate in the presence of glucose or hydrazine hydrochloride. Two types of (HA)Ag nanocomposite were obtained presumably possessing excess negative charge ((HA)Ag-I) or positive charge ((HA)Ag-II). Plasmonic coatings of (HA)Ag-I and (HA)Ag-II nanoparticles were formed on the surface of glass substrates using the droplet deposition method and their structural and spectral properties were studied. A comparative study of the intensity of surface-enhanced Raman scattering (SERS) spectra of cationic and anionic porphyrins CuTMpyP4 and CuTPPS4 as well as rhodamine 6G adsorbed on the surface of both types of nanocomposites was carried out. Plasmonic structures (HA)Ag-I provide the greatest enhancement of the SERS signal for the cationic porphyrin CuTMpyP4, while high spectral intensity is observed for the anionic porphyrin CuTPPS4 adsorbed on films of the (HA)Ag-II composite, which is almost forty times higher than for (HA)Ag-I. For Rh6G molecules with charge +1, the efficiency of the SERS signal amplification by (HA)Ag-II nanostructures is several times higher than by plasmonic films of (HA)Ag-I. Hence, feasibility was demonstrated for obtaining various SERS-active substrates with highly-efficient SERS enhancement for both anionic and cationic analyte molecules by changing the synthesis conditions.

用银纳米粒子修饰羟基磷灰石以记录带不同电荷的分析物的 SERS 光谱
在葡萄糖或盐酸肼存在下,通过还原硝酸银,羟基磷灰石(HA)表面被银纳米粒子功能化。推测得到了两种类型的(HA)银纳米复合材料,分别具有过量负电荷((HA)Ag-I)或正电荷((HA)Ag-II)。利用液滴沉积法在玻璃基底表面形成了(HA)Ag-I 和 (HA)Ag-II 纳米粒子的等离子涂层,并研究了它们的结构和光谱特性。对阳离子和阴离子卟啉 CuTMpyP4 和 CuTPPS4 以及吸附在这两种纳米复合材料表面的罗丹明 6G 的表面增强拉曼散射(SERS)光谱强度进行了比较研究。等离子结构(HA)Ag-I 对阳离子卟啉 CuTMpyP4 的 SERS 信号增强最大,而吸附在(HA)Ag-II 复合材料薄膜上的阴离子卟啉 CuTPPS4 的光谱强度很高,几乎是(HA)Ag-I 的 40 倍。对于电荷+1的 Rh6G 分子,(HA)Ag-II 纳米结构的 SERS 信号放大效率是(HA)Ag-I 等离子薄膜的数倍。因此,通过改变合成条件,获得对阴离子和阳离子分析分子都具有高效 SERS 增强作用的各种 SERS 活性基底是可行的。
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来源期刊
CiteScore
1.30
自引率
14.30%
发文量
145
审稿时长
2.5 months
期刊介绍: Journal of Applied Spectroscopy reports on many key applications of spectroscopy in chemistry, physics, metallurgy, and biology. An increasing number of papers focus on the theory of lasers, as well as the tremendous potential for the practical applications of lasers in numerous fields and industries.
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