Flexible, Fibrous, and Rigid Chemiresistive VOC Sensors with Nanoparticle‐Structured Interfaces

Author:

Shang Guojun1,Dinh Dong2,Cheng Han‐Wen13,Gebre Lidia1,Yuan Tony4,Yan Shan1,Luo Jin1,Lu Susan2,Zhong Chuan‐Jian1ORCID

Affiliation:

1. Department of Chemistry State University of New York at Binghamton Binghamton NY 13902 USA

2. Systems Science and Industrial Engineering State University of New York at Binghamton Binghamton NY 13902 USA

3. Laboratory of Advanced Materials Shanghai Key Lab of Molecular Catalysis and Innovative Materials Fudan University Shanghai 200438 P. R. China

4. Center for Biotechnology (4D Bio3) Uniformed Services University of Health Sciences Bethesda MD 20814 USA

Abstract

AbstractAs one of the noninvasive screening and diagnostic tools for human breath monitoring of various diseases, chemiresistive devices with nanomaterials as the sensing interfaces for detecting volatile organic compounds (VOCs) have attracted increasing interests. A key challenge for the practical applications is an effective integration of all components in a system level. By integrating with the system components, it provides reliable and rapid results as a fast‐screening method for healthcare, safety, and environmental monitoring. This paper highlights some of the latest developments in chemiresistive sensors designed for the detection of VOCs and human breaths. It begins with a brief introduction to the fundamental principles of chemiresistive sensors with nanoparticle‐structured sensing interfaces. This is followed by a discussion of the recent fabrication methods, with an emphasis on nanostructured materials. Some of the recent examples will be highlighted in terms of recent innovative approaches to sensor applications and system integrations. Challenges and opportunities will also be discussed for the advancement and refinement of the chemiresistive sensor technologies in breath screening and monitoring of diseases.

Funder

National Science Foundation

Geneva Foundation

Publisher

Wiley

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