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Borate-driven ionic rectifiers based on sugar-bearing single nanochannels

机译:Borate-driven离子整流器基于负有单一纳米通道

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Recently, much scientific effort has been centered on the control of the ionic transport properties of solid state nanochannels and the rational design and integration of chemical systems to induce changes in the ionic transport by means of interactions with selected target molecules. Here, we report the fabrication of a novel nanofluidic device based on solid-state nanochannels, which combines silane chemistry with both track-etched and atomic layer deposition (ALD) technologies. Nanodevice construction involves the coating of bullet-shaped single-pore nanochannels with silica (SiO2) by ALD and subsequent surface modification by reaction between silanol groups exposed on pore walls and N-(3-triethoxysilylpropyl)-gluconamide, in order to create a gluconamide-decorated nanochannel surface. The formation of a boroester derivative resulting from the selective reaction of borate with the appended saccharides leads to important changes in the surface charge density and, concomitantly, in the iontronic properties of the nanochannel. Furthermore, we propose a binding model to rationalize the specific interaction saccharide-borate in the surface. Besides, this unique nanodevice exhibits a highly selective and reversible response towards borate/fructose exposure. On the basis of the surface charge variation resulting from borate binding, the nanochannel can reversibly switch between "ON" and "OFF" states in the presence of borate and fructose, respectively. In addition, this work describes the first report of the functionalization of PET/SiO2 nanochannels by the ALD technique. We believe that this work provides a promising framework for the development of new nanochannel-based platforms suitable for multiple applications, such as water quality monitoring or directed molecular transport and separation.
机译:最近,一直为中心的科学的努力控制的离子传输性质固态纳米通道和理性化学系统的设计和集成引起的离子运输方式的变化与选定目标分子的相互作用。在这里,我们报告的一部小说奈米流体设备基于固态纳米通道,结合硅烷化学track-etched和原子层沉积(ALD)技术。建设涉及的涂层子弹形状单孔纳米通道与石英(二氧化硅)ALD和随后的表面改性硅醇组之间的反应暴露在孔壁上(N) - 3-triethoxysilylpropyl -gluconamide,创建一个gluconamide-decorated纳米通道表面。从硼酸的选择性反应产生的附加的糖类会导致重要表面电荷密度的变化,与此同时,在iontronic属性纳米通道。合理化的具体交互模型saccharide-borate表面。独特的高度选择性和nanodevice展品可逆反应向硼酸/果糖曝光。硼酸变异产生的约束力,纳米通道可以可逆地“ON”之间切换硼酸和“关闭”状态的存在分别为果糖。描述的第一个报告功能化的PET /二氧化硅纳米通道的“肾上腺脑白质退化症”的技术。一个有前途的新发展的框架适合多个nanochannel-based平台应用程序,如水质监测或定向分子运输和分离。

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