1. b Electronic and Communication Engineering National Demonstration Center for Experimental Education School of Electronics and Information Engineering Hebei University of Technology
2. a Center for Advanced Laser Technology Hebei University of Technology Tianjin China
3. b Electronic and Communication Engineering National Demonstration Center for Experimental Education School of Electronics and Information Engineering Hebei University of Technology Tianjin China
4. c Collaborative Innovation Center for Diamond Laser Technology and Applications
5. d Chengdu DIEN Photoelectric Technology Co. Ltd Sichuan
6. c Collaborative Innovation Center for Diamond Laser Technology and Applications Tianjin China
7. e School of Energy and Environmental Engineering Hebei University of Technology
网络出版:2025-04-11,
纸质出版:2025-04-11
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Xiaoyu Chang, Wanxiao Gao, Jiashuo An, 等. Optical-gradediamond:characteristics,synthesis,andrecentresearchprogress[J]. Functional Diamond, 2025,5(1).
Xiaoyu Chang, Wanxiao Gao, Jiashuo An, et al. Optical-grade diamond: characteristics, synthesis, and recent research progress[J]. 2025, 5(1).
Xiaoyu Chang, Wanxiao Gao, Jiashuo An, 等. Optical-gradediamond:characteristics,synthesis,andrecentresearchprogress[J]. Functional Diamond, 2025,5(1). DOI: 10.1080/26941112.2025.2476690.
Xiaoyu Chang, Wanxiao Gao, Jiashuo An, et al. Optical-grade diamond: characteristics, synthesis, and recent research progress[J]. 2025, 5(1). DOI: 10.1080/26941112.2025.2476690.
Diamonds
characterized by their elegant tetrahedral arrangement of carbon atoms
exhibit outstanding thermal
mechanical
and electrical properties. In the fields of optics and photonics
diamonds are highly regarded for their exceptionally wide spectral transmission range
excellent thermo-optical properties
remarkable mechanical strength
and unique nonlinear optical characteristics. Recent advancements in chemical vapor deposition (CVD) technologies have enabled the production of synthetic diamonds with lower dislocation densities
reduced impurities
minimal residual stress
and low absorption coefficients
thereby meeting the stringent demands of optical applications
even under extreme conditions. Additionally
progress in diamond processing techniques—such as polishing
anti-reflection coatings
micro/nanostructuring
and color center engineering—has further enhanced the potential of optical-grade diamonds
expanding their applications in areas such as lasers
quantum technologies
and precision instrumentation. This review provides a comprehensive overview of recent research progress in diamond synthesis and processing technologies
with a focus on controlling dislocation density and impurity levels in optical-grade diamonds. Furthermore
it explores future development trends and advanced applications of diamonds
offering valuable insights and guidance for researchers dedicated to high-quality diamond crystal growth and its utilization.
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