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纤维素纳米材料在传感器中的作用和性能研究综述。

A Review on the Role and Performance of Cellulose Nanomaterials in Sensors.

机构信息

Nanotechnology National Laboratory for Agriculture, Embrapa Instrumentação, 13560-970, São Carlos, São Paulo, Brazil.

Science and Technology Institute, Federal University of Alfenas, Rodovia José Aurélio Vilela, 11999, BR 267, Km 533, CEP 37715-400, Poços de Caldas, Minas Gerais, Brazil.

出版信息

ACS Sens. 2021 Jul 23;6(7):2473-2496. doi: 10.1021/acssensors.1c00473. Epub 2021 Jun 28.

Abstract

Sensors and biosensors play a key role as an analytical tool for the rapid, reliable, and early diagnosis of human diseases. Such devices can also be employed for monitoring environmental pollutants in air and water in an expedited way. More recently, nanomaterials have been proposed as an alternative in sensor fabrication to achieve gains in performance in terms of sensitivity, selectivity, and portability. In this direction, the use of cellulose nanomaterials (CNM), such as cellulose nanofibrils (CNF), cellulose nanocrystals (CNC), and bacterial cellulose (BC), has experienced rapid growth in the fabrication of varied types of sensors. The advantageous properties are related to the supramolecular structures that form the distinct CNM, their biocompatibility, and highly reactive functional groups that enable surface functionalization. The CNM can be applied as hydrogels and xerogels, thin films, nanopapers and other structures interesting for sensor design. Besides, CNM can be combined with other materials (e.g., nanoparticles, enzymes, carbon nanomaterials, etc.) and varied substrates to advanced sensors and biosensors fabrication. This review explores recent advances on CNM and composites applied in the fabrication of optical, electrical, electrochemical, and piezoelectric sensors for detecting analytes ranging from environmental pollutants to human physiological parameters. Emphasis is given to how cellulose nanomaterials can contribute to enhance the performance of varied sensors as well as expand novel sensing applications, which could not be easily achieved using standard materials. Finally, challenges and future trends on the use of cellulose-based materials in sensors and biosensors are also discussed.

摘要

传感器和生物传感器在快速、可靠和早期诊断人类疾病方面发挥着关键作用。这些设备还可以用于快速监测空气和水中的环境污染物。最近,纳米材料已被提议作为传感器制造的替代品,以在灵敏度、选择性和便携性方面获得性能提升。在这一方向上,纤维素纳米材料(CNM)的使用,如纤维素纳米纤维(CNF)、纤维素纳米晶(CNC)和细菌纤维素(BC),在各种类型传感器的制造中经历了快速增长。有利的特性与形成独特 CNM 的超分子结构、生物相容性以及能够进行表面功能化的高反应性官能团有关。CNM 可以作为水凝胶和干凝胶、薄膜、纳米纸和其他对传感器设计有兴趣的结构来应用。此外,CNM 可以与其他材料(例如,纳米粒子、酶、碳纳米材料等)和各种基底结合,用于先进的传感器和生物传感器制造。本综述探讨了 CNM 及其复合材料在制造光学、电气、电化学和压电传感器方面的最新进展,用于检测从环境污染物到人类生理参数的各种分析物。重点介绍了纤维素纳米材料如何有助于提高各种传感器的性能,并扩展新的传感应用,而这些应用使用标准材料是不容易实现的。最后,还讨论了在传感器和生物传感器中使用基于纤维素的材料所面临的挑战和未来趋势。

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