纳米材料气体传感器在生物传感中的应用综述。

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Kurmendra
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引用次数: 5

摘要

背景:纳米材料是各种气体传感应用中使用最多的材料之一,用于检测有毒气体、人体呼吸和其他特定气体传感。基于纳米材料的气体传感器最重要的应用之一是生物传感应用。本文从晶体结构和不同种类的纳米材料的角度对生物传感气体传感器进行了综述。方法:本文首先,通过对该领域现有的高质量同行评议文章进行结构化和系统的调查,严谨地找出研究问题。然后对基于纳米材料的生物传感器相关的论文进行定性回顾,从该领域的最新发展中提供实质性的发现。结果:本文首先根据纳米材料的晶体结构和可用于生物传感的不同类型的纳米材料,对纳米材料气体传感器进行了分类。此外,对纳米材料气体传感器的性能参数,如传感材料、目标气体成分、检测范围(ppm-ppb)、响应时间、工作温度和检测方法等进行了综述。不同的纳米材料由于其结构不同,其传感和形态特性略有不同;因此,可以说纳米材料必须为特定的应用而精心选择。与二维和三维纳米材料相比,一维纳米材料由于结构小型化,在低浓度范围内对气体具有最佳的选择性和灵敏度。然而,与块状半导体材料相比,这些二维和三维纳米材料也具有良好的传感性能。本专利文章中所讨论的聚合物和纳米复合材料为未来的研究打开了大门,并为新一代检测生物分子的气体传感器提供了巨大的潜力。结论:这些纳米材料在传感不同气体的应用方面具有很大的性能,可以用于较低浓度的特定气体颗粒。纳米聚合物和纳米复合材料在用作气体传感器检测生物分子方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanomaterial Gas Sensors for Biosensing Applications: A Review.

Background: Nanomaterial is one of the most used materials for various gas sensing applications to detect toxic gases, human breath, and other specific gas sensing. One of the most important applications of nanomaterial based gas sensors is biosensing applications. In this review article, the gas sensors for biosensing are discussed on the basis of crystalline structure and different categories of nanomaterial.

Methods: In this paper, firstly, rigorous efforts have been made to find out research questions by going through a structured and systematic survey of available peer reviewed high quality articles in this field. The papers related to nanomaterial based biosensors are then reviewed qualitatively to provide substantive findings from the recent developments in this field.

Results: In this mini-review article, firstly, classifications of nanomaterial gas sensors have been presented on the basis of the crystalline structure of nanomaterial and different types of nanomaterial available for biosensing applications. Further, the gas sensors based on nanomaterial for biosensing applications are collected and reviewed in terms of their performance parameters such as sensing material used, target gas component, detection ranges (ppm-ppb), response time, operating temperature and method of detection, etc. The different nanomaterials possess slightly different sensing and morphological properties due to their structure; therefore, it can be said that a nanomaterial must be selected carefully for a particular application. The 1D nanomaterials show the best selectivity and sensitivity for gases available in low concentration ranges due to their miniaturised structure compared to 2D and 3D nanomaterials. However, these 2D and 3D nanomaterials also so good sensing properties compared to bulk semiconductor materials. The polymer and nanocomposites which are also discussed in this patent article have opened the door for future research and have great potential for new generation gas sensors for detecting biomolecules.

Conclusion: These nanomaterials extend great properties towards sensing the application of different gases for a lower concentration of particular gas particles. Nano polymer and nanocomposites have great potential to be used as gas sensors for the detection of biomolecules.

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来源期刊
Recent Patents on Nanotechnology
Recent Patents on Nanotechnology NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
4.70
自引率
10.00%
发文量
50
审稿时长
3 months
期刊介绍: Recent Patents on Nanotechnology publishes full-length/mini reviews and research articles that reflect or deal with studies in relation to a patent, application of reported patents in a study, discussion of comparison of results regarding application of a given patent, etc., and also guest edited thematic issues on recent patents in the field of nanotechnology. A selection of important and recent patents on nanotechnology is also included in the journal. The journal is essential reading for all researchers involved in nanotechnology.
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