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检测化合物半导体的知识领域。

Detecting the Knowledge Domains of Compound Semiconductors.

作者信息

Lee Qian-Yo, Chou Chiyang James, Lee Ming-Xuan, Lee Yen-Chun

机构信息

Department of Biomechatronic Engineering, National Chiayi University, Chiayi 60004, Taiwan.

Master Program in Entrepreneurial Management, National Yunlin University of Science and Technology, No. 123, University Rd., Section 3, Douliou, Yunlin 64002, Taiwan.

出版信息

Micromachines (Basel). 2022 Mar 20;13(3):476. doi: 10.3390/mi13030476.

Abstract

The development of compound semiconductors (CS) has received extensive attention worldwide. This study aimed to detect and visualize CS knowledge domains for quantifying CS research patterns and emerging trends through a scientometric review based on the literature between 2011 and 2020 by using . The combined dataset of 24,622 bibliographic records were collected through topic searches and citation expansion to ensure adequate coverage of the field. While research in "" and "" appears to be the two most distinctive knowledge domains in the CS field, research related to thermoelectric materials has grown at a respectable pace. Most notably, the deep connections between "" and " (NW)" research have been demonstrated. A rapid adaptation of black phosphorus (BP) field-effect transistors (FETs) and gallium nitride (GaN) transistors in the CS field is also apparent. Innovative strategies have focused on the opto-electronics with engineered functionalities, the design, synthesis and fabrication of perovskite tandem solar cells, the growing techniques of Sb-based III-V NWs, and the thermal conductivity of boron arsenide (BAs). This study revealed how the development trends and research areas in the CS field advance over time, which greatly help us to realize its knowledge domains.

摘要

化合物半导体(CS)的发展在全球范围内受到了广泛关注。本研究旨在通过基于2011年至2020年文献的科学计量学综述,利用……检测和可视化CS知识领域,以量化CS研究模式和新兴趋势。通过主题搜索和引文扩展收集了24622条书目记录的组合数据集,以确保该领域有足够的覆盖范围。虽然“……”和“……”方面的研究似乎是CS领域中两个最突出的知识领域,但与热电材料相关的研究也在以可观的速度增长。最值得注意的是,已经证明了“……”和“(NW)”研究之间的深度联系。黑磷(BP)场效应晶体管(FET)和氮化镓(GaN)晶体管在CS领域的快速应用也很明显。创新策略集中在具有工程功能的光电子学、钙钛矿串联太阳能电池的设计、合成和制造、基于锑的III-V族纳米线的生长技术以及砷化硼(BAs)的热导率。这项研究揭示了CS领域的发展趋势和研究领域是如何随时间推进的,这极大地帮助我们了解其知识领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9562/8954707/d650b65974ef/micromachines-13-00476-g001.jpg

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