Mapping the trends and prospects of battery cathode materials based on patent landscape

IF 3.1 4区 工程技术 Q3 ENERGY & FUELS
Chen Yang, Xin-Yu Mu
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Abstract

Advancing portable electronics and electric vehicles is heavily dependent on the cutting-edge lithium-ion (Li-ion) battery technology, which is closely linked to the properties of cathode materials. Identifying trends and prospects of cathode materials based on patent analysis is considered a kernel to optimize and refine battery related markets. In this paper, a patent analysis is performed on 6 popular cathode materials by comprehensively considering performance comparison, development trend, annual installed capacity, technology life cycle, and distribution among regions and patent assignees. In the technology life cycle, the cathode materials majorly used in electric vehicle have entered maturity stage, while the lithium cobalt oxide (LCO) cathode that is widely used in portable electronics is still in the growth stage. In global patent distributions, China holds more than 50% of total patents. In the top 10 patent assignees of 6 cathode materials, 2 institutes are from China with the rest being Japan (6) and Republic of Korea (2), indicating that the technology of cathode materials in China is relatively scattered while cathode research is highly concentrated in Japan and Republic of Korea. Moreover, the patent distribution has to consider practical issues as well as the impacts of core patents. For example, the high cost discourages the intention of applying international patents. This paper is expected to stimulate battery research, understand technical layout of various countries, and probably forecast innovative technology breakthroughs.

Abstract Image

根据专利情况描绘电池正极材料的发展趋势和前景
便携式电子产品和电动汽车的发展在很大程度上依赖于尖端的锂离子(Li-ion)电池技术,而这与正极材料的特性密切相关。根据专利分析确定正极材料的发展趋势和前景被认为是优化和完善电池相关市场的核心。本文综合考虑性能对比、发展趋势、年装机容量、技术生命周期、地区分布和专利受让人等因素,对 6 种常用正极材料进行了专利分析。从技术生命周期来看,电动汽车中主要使用的正极材料已进入成熟期,而便携式电子产品中广泛使用的锂钴氧化物(LCO)正极材料仍处于成长期。在全球专利分布中,中国拥有的专利数量超过总数的 50%。在 6 种阴极材料的前 10 位专利权人中,有 2 家来自中国,其余分别是日本(6 家)和韩国(2 家),这表明中国的阴极材料技术相对分散,而阴极研究则高度集中在日本和韩国。此外,专利分布还必须考虑实际问题以及核心专利的影响。例如,高昂的成本阻碍了申请国际专利的意向。本文有望促进电池研究,了解各国的技术布局,并预测创新技术的突破。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Energy
Frontiers in Energy Energy-Energy Engineering and Power Technology
CiteScore
5.90
自引率
6.90%
发文量
708
期刊介绍: Frontiers in Energy, an interdisciplinary and peer-reviewed international journal launched in January 2007, seeks to provide a rapid and unique platform for reporting the most advanced research on energy technology and strategic thinking in order to promote timely communication between researchers, scientists, engineers, and policy makers in the field of energy. Frontiers in Energy aims to be a leading peer-reviewed platform and an authoritative source of information for analyses, reviews and evaluations in energy engineering and research, with a strong focus on energy analysis, energy modelling and prediction, integrated energy systems, energy conversion and conservation, energy planning and energy on economic and policy issues. Frontiers in Energy publishes state-of-the-art review articles, original research papers and short communications by individual researchers or research groups. It is strictly peer-reviewed and accepts only original submissions in English. The scope of the journal is broad and covers all latest focus in current energy research. High-quality papers are solicited in, but are not limited to the following areas: -Fundamental energy science -Energy technology, including energy generation, conversion, storage, renewables, transport, urban design and building efficiency -Energy and the environment, including pollution control, energy efficiency and climate change -Energy economics, strategy and policy -Emerging energy issue
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