Volatile Organic Compounds (VOCs) necessitate precise monitoring across multiple domains including industrial, environmental, and health sectors. Carbon-based nanomaterials like carbon nanotubes, graphene, and graphene oxide stand out for their remarkable properties suited for VOC sensing. This review delves into the latest developments in this field, detailing these nanomaterials’ synthesis, structural traits, and detection mechanisms. Key areas of focus include their responsiveness, accuracy, and reaction times to various VOCs. Enhancements in sensor performance via functionalization, composites, and design optimization are also explored, along with discussions on current challenges and future directions for the application of these materials in cutting-edge VOC sensing solutions.

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A Review on Carbon-Based Nanomaterials for the Detection of Volatile Organic Compounds

  • Krishan Kumar Dhanka,
  • Arjun Kumawat,
  • Vinod Kumar,
  • Sachin Saini,
  • Subodh Srivastava

摘要

Volatile Organic Compounds (VOCs) necessitate precise monitoring across multiple domains including industrial, environmental, and health sectors. Carbon-based nanomaterials like carbon nanotubes, graphene, and graphene oxide stand out for their remarkable properties suited for VOC sensing. This review delves into the latest developments in this field, detailing these nanomaterials’ synthesis, structural traits, and detection mechanisms. Key areas of focus include their responsiveness, accuracy, and reaction times to various VOCs. Enhancements in sensor performance via functionalization, composites, and design optimization are also explored, along with discussions on current challenges and future directions for the application of these materials in cutting-edge VOC sensing solutions.