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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >'Vanishing mass' in the Sauerbrey world: quartz crystal microbalance study of self-assembled monolayers based on a tripod-branched structure with tuneable molecular flexibility
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'Vanishing mass' in the Sauerbrey world: quartz crystal microbalance study of self-assembled monolayers based on a tripod-branched structure with tuneable molecular flexibility

机译:“消失的质量”在苏勃尔伯景世界中:基于三脚架支化结构的自组装单层的石英晶体微稳定研究,可调分子柔性

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Complex loadings that appear on a surface with flexible spatial organisation can reveal anti-Sauerbrey behaviour due to their variable interfacial architecture even for an ultrathin monomolecular sensitive layer. The presented results demonstrate that compounds with branched and flexible structures may be organised in various spatial architectures with different viscoelastic characteristics. They act not only as a mass loading (Sauerbrey behaviour) but also as a viscous damping (anti-Sauerbrey one) of the QCM resonator at the same time. The concept is illustrated by SAM formed on a QCM silver electrode surface with a tripod-like hydroxamic thioligand (S3HX). The obtained data indicate that the interfacial layer was a combination of two S3HX surface structures-namely, the ordered α-(alpha)-and the disordered σ-(sigma)-conformation of SAM. The sigma-conformation is likely to belong to Sauerbrey-like materials with a negative frequency shift: such a system is sufficiently rigid because of multiple interactions and spatial restrictions due to the so-called "tangle of tendrils". The alfa-conformation with a labile structure and highly ordered flexible spatial organisation is likely to be predominant in anti-Sauerbrey-like samples. Sigma-and alpha-based interfacial ensembles demonstrate different behaviour under gaseous analyte exposure. The possibility of anti-Sauerbrey-like behaviour opens the way for the formation of a unique (oppositely shifted) signal in analytical applications, especially ones that require a false-free detection of highly dangerous xenobiotics.
机译:具有柔性空间组织的表面上出现的复合载荷可以揭示由于其可变界面结构甚至用于超薄单分子敏感层而导致的抗Sauerbrey行为。所提出的结果表明,具有分支和柔性结构的化合物可以在具有不同粘弹性特性的各种空间架构中组织。它们不仅作为大规模装载(Sauerbrey行为),而且同时也是QCM谐振器的粘性阻尼(抗Sauerbrey One)。该概念由在QCM银电极表面上形成的SAM,其中三脚架状的羟肟基硫胺(S3HX)。所获得的数据表明界面层是两个S3HX表面结构的组合 - 即,有序的α-(α) - 和SAM的无序σ-(Sigma)。 Sigma构象可能属于具有负频率偏移的Sauerbrey的材料:这种系统足够刚性,因为由于所谓的“卷须”所谓的“弯曲”,因此具有多种相互作用和空间限制。具有不稳定结构和高度有序的柔性空间组织的ALFA构象可能是抗Sauerbrey样品中的主要部分。基于Sigma和基于α的界面集合在气态分析物暴露下表现出不同的行为。抗Sauerbrey的行为的可能性为在分析应用中形成了独特(对立的偏移)信号的方式,尤其是需要对高危险的异卵感测的假检测的途径。

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