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논문 기본 정보

자료유형
학술저널
저자정보
Boyan Zhang (Ministry of Education) Siyu Qian (Ministry of Education) Bo Peng (Ministry of Education) Bo Su (Ministry of Education) Zhuang Peng (Capital Normal University) Hailin Cui (Ministry of Education) Shengbo Zhang (Ministry of Education) Cunlin Zhang (Ministry of Education)
저널정보
한국광학회 Current Optics and Photonics Current Optics and Photonics Vol.7 No.4
발행연도
2023.8
수록면
463 - 470 (8page)

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초록· 키워드

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Hydroxygraphene as a kind of functionalized graphene has important applications in composite, photoelectric and biological materials. In the present study, THz and microfluidic technologies were implemented to study the THz transmission characteristics of hydroxygraphene with different concentrations and residence times in magnetic and electric fields. The results show that the THz transmission intensity decreases with the increase in sample concentration and duration of an applied electric field, while it increases by staying longer in the magnetic field. The phenomenon is analyzed and explained in terms of hydrogen bond, conductivity and scattering characteristics. The results establish a foundation for future research on the THz absorption characteristics of liquid graphene based on microfluidic technology in different external environments. It also provides technical support for the application and development of graphene in THz devices.

목차

I. INTRODUCTION
II. EXPERIMENTAL INSTRUMENTS AND DEVICES
III. EXPERIMENTAL RESULTS
IV. DISCUSSION
V. CONCLUSION
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