Li Xin, Li Qiushi, Wu Liang, Xu Zongcheng, Yao Jianquan
Tianjin Renai Library, Tianjin Renai College, Tianjin 301636, China.
Tianjin University Library, Tianjin University, Tianjin 300072, China.
Materials (Basel). 2023 Mar 12;16(6):2286. doi: 10.3390/ma16062286.
In this paper, a total of 4770 effective documents about metamaterial absorbers were retrieved from the Web of Science Core Collection database. We scientifically analyzed the co-occurrence network of co-citation analysis by author, country/region, institutional, document, keywords co-occurrence, and the timeline of the clusters in the field of metamaterial absorber. Landy N. I.'s, with his cooperator et al., first experiment demonstrated a perfect metamaterial absorber microwave to absorb all incidents of radiation. From then on, a single-band absorber, dual-band absorber, triple-band absorber, multi-band absorber and broad-band absorber have been proposed and investigated widely. By integrating graphene and vanadium dioxide to the metamaterial absorber, the frequency-agile functionality can be realized. Tunable absorption will be very important in the future, especially metamaterial absorbers based on all-silicon. This paper provides a new research method to study and evaluate the performance of metamaterial absorbers. It can also help new researchers in the field of metamaterial absorbers to achieve the development of research content and to understand the recent progress.
本文从科学网核心合集数据库中总共检索到4770篇关于超材料吸收体的有效文献。我们对超材料吸收体领域中作者、国家/地区、机构、文献、关键词共现以及聚类时间线的共被引分析共现网络进行了科学分析。兰迪·N·I.及其合作者等人首次通过实验证明了一种完美的超材料微波吸收体能够吸收所有入射辐射。从那时起,单波段吸收体、双波段吸收体、三波段吸收体、多波段吸收体和宽带吸收体相继被提出并得到广泛研究。通过将石墨烯和二氧化钒集成到超材料吸收体中,可以实现频率捷变功能。可调谐吸收在未来将非常重要,尤其是基于全硅的超材料吸收体。本文提供了一种研究和评估超材料吸收体性能的新研究方法。它还可以帮助超材料吸收体领域的新研究人员实现研究内容的拓展,并了解最新进展。