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Porous TiO2-Based Gas Sensors for Cyber Chemical Systems to Provide Security and Medical Diagnosis

机译:多孔TiO2基气体传感器用于网络化学系统可提供安全性和医疗诊断

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摘要

Gas sensors play an important role in our life, providing control and security of technical processes, environment, transportation and healthcare. Consequently, the development of high performance gas sensor devices is the subject of intense research. TiO2, with its excellent physical and chemical properties, is a very attractive material for the fabrication of chemical sensors. Meanwhile, the emerging technologies are focused on the fabrication of more flexible and smart systems for precise monitoring and diagnosis in real-time. The proposed cyber chemical systems in this paper are based on the integration of cyber elements with the chemical sensor devices. These systems may have a crucial effect on the environmental and industrial safety, control of carriage of dangerous goods and medicine. This review highlights the recent developments on fabrication of porous TiO2-based chemical gas sensors for their application in cyber chemical system showing the convenience and feasibility of such a model to provide the security and to perform the diagnostics. The most of reports have demonstrated that the fabrication of doped, mixed and composite structures based on porous TiO2 may drastically improve its sensing performance. In addition, each component has its unique effect on the sensing properties of material.
机译:气体传感器在我们的生活中起着重要作用,它为技术流程,环境,运输和医疗保健提供控制和安全性。因此,高性能气体传感器装置的开发是广泛研究的主题。 TiO2具有出色的物理和化学性能,是制造化学传感器的极具吸引力的材料。同时,新兴技术专注于制造更灵活,更智能的系统,以实时进行精确的监视和诊断。本文提出的网络化学系统基于网络元素与化学传感器设备的集成。这些系统可能对环境和工业安全,危险品和药品的运输控制产生关键影响。这篇综述着重介绍了用于多孔TiO2的化学气体传感器在计算机化学系统中的应用的最新发展,表明了这种提供安全性和进行诊断的模型的便利性和可行性。大多数报告表明,基于多孔TiO2的掺杂,混合和复合结构的制造可能会大大改善其传感性能。此外,每种成分对材料的感测特性都有其独特的影响。

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