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用于创建单壁碳纳米管平台的快速系统的开发与评估

Development and Evaluation of an Expedited System for Creation of Single Walled Carbon Nanotube Platforms.

作者信息

Ramirez Ivon Acosta, Sadak Omer, Sohail Wali, Huang Xi, Lu Yongfeng, Iverson Nicole M

机构信息

Department of Biological Systems Engineering, University of Nebraska-Lincoln, Lincoln, NE 68503-0908, USA.

Department of Electrical and Electronics Engineering, Ardahan University, Ardahan 75000, Turkey.

出版信息

Carbon Lett (Korean Carbon Soc). 2024 Jun;34(5):1343-1354. doi: 10.1007/s42823-024-00691-8. Epub 2024 Feb 24.

Abstract

Single-walled carbon nanotubes (SWNT) have a strong and stable near-infrared (nIR) fluorescence that can be used to selectively detect target analytes, even at the single molecule level, through changes in either their fluorescence intensity or emission peak wavelength. SWNTs have been employed as NIR optical sensors for detecting a variety of analytes. However, high costs, long fabrication times, and poor distributions limit the current methods for immobilizing SWNT sensors on solid substrates. Recently, our group reported a protocol for SWNT immobilization with high fluorescence yield, longevity, fluorescence distribution, and sensor response, unfortunately this process takes 5 days to complete. Herein we report an improved method to immobilize SWNT sensors that only takes 2 days and results in higher fluorescence intensity while maintaining a high level of SWNT distribution. We performed surface morphology and chemical composition tests on the original and new synthesis methods and compared the sensor response rates. The development of this new method of attaching SWNT sensors to a platform allows for creation of a sensing system in just 2 days without sacrificing the advantageous characteristics of the original, 5-day platforms.

摘要

单壁碳纳米管(SWNT)具有强烈且稳定的近红外(NIR)荧光,通过其荧光强度或发射峰波长的变化,可用于选择性检测目标分析物,甚至在单分子水平也是如此。单壁碳纳米管已被用作近红外光学传感器来检测各种分析物。然而,高成本、长制备时间和分布不佳限制了当前将单壁碳纳米管传感器固定在固体基质上的方法。最近,我们小组报道了一种具有高荧光产率、寿命、荧光分布和传感器响应的单壁碳纳米管固定化方案,不幸的是,这个过程需要5天才能完成。在此,我们报告一种改进的单壁碳纳米管传感器固定化方法,该方法只需2天,并且在保持高水平单壁碳纳米管分布的同时,能产生更高的荧光强度。我们对原始合成方法和新合成方法进行了表面形态和化学成分测试,并比较了传感器响应率。这种将单壁碳纳米管传感器连接到平台的新方法的开发,使得在短短2天内就能创建一个传感系统,而不会牺牲原始的5天平台的优势特性。

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