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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Long-Standing Stability of Silver Nanorod Array Substrates Functionalized Using a Series of Thiols for a SERS-Based Sensing Application
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Long-Standing Stability of Silver Nanorod Array Substrates Functionalized Using a Series of Thiols for a SERS-Based Sensing Application

机译:使用一系列基于SERS的感测应用程序官能化的银纳米峰阵列衬底的长立体稳定性

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Silver nanorod (AgNR) array substrates were fabricated using an oblique angle thermal evaporation technique; their long-term stability, surface uniformity and reproducibility, which are primary requirements for their widespread realistic application and commercialization, were assessed using surface-enhanced Raman scattering (SERS) spectroscopy. The nanorod surfaces were functionalized using a series of organic thiols, which range from hydrophilic to hydrophobic, to mimic various conditions that often arise during detection of hydrophilic/phobic analytes in a realistic application field. A group of these functionalized substrates was stored in ambient laboratory atmosphere; another in light minimized, moisture-free vacuum; while another was stowed carefully and neatly in water to mimic realistic conditions. The effects of these storing conditions were studied. A surfactant was added to the water to maintain consistent surface wetting in the third group. SERS spectra of nanorod substrates prior to functionalization were also recorded to investigate the effect of adventitious carbonaceous contaminants. A meticulous systematic study on the reproducibility of SERS signals was carried out: spot-to-spot, substrate-to-substrate, batch-to-batch, day-to-day. The relative standard deviation (RSD) shown by the SERS signals acquired from various spots of a single substrate was less than 3%, which is very similar to the only account reported so far, in which RSD is reported as 2%. The wetting behavior of these thiol functionalized AgNR substrates are investigated using static contact angle measurements. The functionalized substrates have exhibited excellent long-standing stability over a period of six months when stored appropriately; hence, they are highly suitable for mass production towards realistic application.
机译:使用倾斜角热蒸发技术制造银纳米棒(AGNR)阵列基板;使用表面增强的拉曼散射(SERS)光谱评估它们对其广泛的现实应用和商业化的主要要求,它们的长期稳定性,表面均匀性和再现性是主要要求。使用一系列有机硫醇官能化的纳米棒表面,该有机硫醇范围从亲水到疏水,以模仿在逼真的应用领域中的亲水/泛磷酸分析物期间经常出现的各种条件。将一组这些官能化底物储存在环境实验室气氛中;另一个在光线上最小化,无湿真空;虽然另一个人在水中仔细和整齐地占用以模仿现实的条件。研究了这些储存条件的影响。将表面活性剂加入到水中以保持第三组的一致表面润湿。还记录了在功能化之前的纳米棒底物的SERS光谱,以研究不偶达碳素污染物的作用。对SERS信号的再现性进行细致的系统研究:点斑点,底物 - 底物,底物,分批 - 批次,日常。由单个基板的各个斑点所获取的SERS信号所示的相对标准偏差(RSD)小于3%,这与迄今为止报告的唯一账户非常相似,其中RSD报告为2%。使用静态接触角测量研究这些硫醇官能化AGNR基材的润湿行为。官能化的基材在适当储存时在六个月内表现出优异的长期稳定性;因此,它们非常适合批量生产迈向现实应用。

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