首页> 外文会议>Meeting of the Electrochemical Society;International Meeting on Chemical Sensors >Templating Colloidal Sieves for Tuning Nanotube Surface Interactions and Optical Sensor Responses
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Templating Colloidal Sieves for Tuning Nanotube Surface Interactions and Optical Sensor Responses

机译:用于调谐纳米管表面相互作用和光学传感器响应的模板胶体筛

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Surfactants offer a tunable approach for modulating the exposed surface area of a nanoparticle. They further present a scalable and cost-effective means for suspending single-walled carbon nanotubes (SWCNTs), which have demonstrated practical use as fluorescence sensors. Though surfactant suspensions show record quantum yields for SWCNTs in aqueous solutions, they lack the selectivity that is vital for optical sensing. We present a new method for controlling the selectivity of optical SWCNT sensors through colloidal templating of the exposed surface area. Colloidal nanotube sensors were obtained using various concentrations of sodium cholate, and their performances were compared to DNA-SWCNT optical sensors. Sensor responses were recorded against a library of bioanalytes, including neurotransmitters, amino acids, and sugars. We report an intensity response towards dopamine and serotonin for all sodium cholate-suspended SWCNT concentrations. We further identify a selective, 14.1 nm and 10.3 nm wavelength red-shifting response to serotonin for SWCNTs suspended in 1.5 and 0.5 mM sodium cholate, respectively. Through controlled, adsorption-based tuning of the nanotube surface, this study demonstrates the applicability of sub-critical colloidal suspensions to achieve selectivities exceed- ing those previously reported for DNA-SWCNT sensors.
机译:表面活性剂提供一种可调谐方法,用于调节纳米颗粒的暴露表面积。它们进一步提出了一种可伸缩和成本效益的方法,用于悬浮单壁碳纳米管(SWCNT),其证明了实际用途作为荧光传感器。虽然表面活性剂悬浮液显示了水溶液中SWCNT的记录量子产率,但它们缺乏对光学感测至关重要的选择性。我们提出了一种用于通过露出表面积的胶体模板来控制光学SWCNT传感器的选择性的新方法。使用各种浓度的胆碱获得胶体纳米管传感器,将它们的性能与DNA-SWCNT光学传感器进行比较。对生物分析物文库记录传感器响应,包括神经递质,氨基酸和糖。我们向所有胆酸钠悬浮的SWCNT浓度报告对多巴胺和血清素的强度反应。我们进一步鉴定了Serotonin的选择性,14.1nm和10.3nm波长红转移响应,用于悬浮在1.5和0.5mM胆碱中的SWCNT。通过受控的基于吸附的纳米管表面调整,本研究表明亚关键胶体悬浮液的适用性来实现超过先前针对DNA-SWCNT传感器报告的选择性的选择性。

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