18551325. GAS SENSOR simplified abstract (Panasonic Intellectual Property Management Co., Ltd.)

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GAS SENSOR

Organization Name

Panasonic Intellectual Property Management Co., Ltd.

Inventor(s)

Chiaki Shido of Kyoto (JP)

Atsuo Nakao of Nara (JP)

GAS SENSOR - A simplified explanation of the abstract

This abstract first appeared for US patent application 18551325 titled 'GAS SENSOR

The gas sensor described in the patent application includes a sensitive portion and multiple electrodes arranged through the sensitive portion. The sensitive portion contains an ionic liquid and is designed to exhibit a change in electrical resistance upon adsorption of a gas molecule. The ionic liquid specifically contains a hydrophobic anion, which includes an organic fluorine compound with a trifluoromethyl group.

  • The gas sensor features a sensitive portion with an ionic liquid that changes resistance when exposed to gas molecules.
  • The ionic liquid includes a hydrophobic anion, such as an organic fluorine compound with a trifluoromethyl group.

Potential Applications: - Gas detection and monitoring in various industries. - Environmental monitoring for gas pollutants. - Safety applications in detecting harmful gases in confined spaces.

Problems Solved: - Provides a reliable and sensitive gas detection system. - Offers a quick response to changes in gas concentration. - Enhances safety measures in gas-sensitive environments.

Benefits: - Improved accuracy in gas detection. - Early warning system for gas leaks. - Enhanced safety for workers in hazardous environments.

Commercial Applications: Gas sensors incorporating this technology can be used in industries such as manufacturing, oil and gas, chemical processing, and environmental monitoring. The market implications include increased safety measures, regulatory compliance, and improved operational efficiency.

Prior Art: There may be existing gas sensors using different materials or technologies for gas detection, but the specific combination of an ionic liquid with a hydrophobic anion, including an organic fluorine compound with a trifluoromethyl group, may be novel in this application.

Frequently Updated Research: Stay updated on advancements in gas sensor technology, particularly those related to ionic liquids and hydrophobic anions for gas detection applications.

Questions about Gas Sensor Technology: 1. How does the presence of an organic fluorine compound with a trifluoromethyl group enhance the gas detection capabilities of the sensor? 2. What are the specific industries that can benefit the most from this innovative gas sensor technology?


Original Abstract Submitted

A gas sensor includes a sensitive portion and a plurality of electrodes arranged via the sensitive portion. The sensitive portion includes an ionic liquid and is configured to have electrical resistance that changes when the sensitive portion adsorbs a gas molecule. The ionic liquid preferably includes a hydrophobic anion. The hydrophobic anion preferably includes an organic fluorine compound. The organic fluorine compound preferably has a trifluoromethyl group.