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Guest Editorial: Understanding low temperature plasmas for device reliability, modulation and application to green energy strategy
High Voltage ( IF 4.4 ) Pub Date : 2023-11-29 , DOI: 10.1049/hve2.12390
Yangyang Fu 1 , Tao Shao 2
Affiliation  

Low temperature plasma stands at the forefront of green and clean energy technologies, showcasing remarkable versatility across a wide array of applications including material processing, water splitting, methane conversion, and plasma medicine. To fully harness the potential of this technology, it is imperative to deepen our understanding of the physics underlying various discharge structures.

This issue casts a spotlight on the recent strides in the field of low-temperature plasmas. We focus on key areas such as multipactor discharge, dielectric barrier discharge (DBD), plasma jet, leader, and spark. These topics are pivotal in demonstrating how low-temperature plasma technology can be leveraged in terms of device reliability, modulation and practical applications within the green energy sector.

In this collection, we have curated six papers that reflect the cutting-edge developments in this area, comprising three review articles and three original research papers. Each paper offers unique insights and contributes significantly to our understanding of low-temperature plasmas. The brief introductions to these papers, provided herein, encapsulate the essence of their research and findings.



中文翻译:

客座社论:了解低温等离子体对设备可靠性、调制和绿色能源战略的应用

低温等离子体处于绿色和清洁能源技术的前沿,在材料加工、水分解、甲烷转化和等离子体医学等广泛应用中展现出卓越的多功能性。为了充分利用这项技术的潜力,必须加深我们对各种放电结构背后的物理原理的理解。

本期聚焦低温等离子体领域的最新进展。我们专注于多重放电、介质阻挡放电 (DBD)、等离子射流、先导和火花等关键领域。这些主题对于展示如何在绿色能源领域的设备可靠性、调制和实际应用方面利用低温等离子体技术至关重要。

在这个集合中,我们精选了六篇反映该领域前沿发展的论文,其中包括三篇评论文章和三篇原创研究论文。每篇论文都提供了独特的见解,并为我们对低温等离子体的理解做出了重大贡献。本文提供的这些论文的简要介绍概括了他们的研究和发现的精髓。

更新日期:2023-11-29
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