【摘 要】
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We report an approach to the rapid,one-step,preparation of a variety of wide-bandgap silicon carbide/graphene nanosheet (SiC/GNSs) composites by using a high-de
【机 构】
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School of Physical Science and Technology and Collaborative Innovation Center of Suzhou Nano Science
论文部分内容阅读
We report an approach to the rapid,one-step,preparation of a variety of wide-bandgap silicon carbide/graphene nanosheet (SiC/GNSs) composites by using a high-density helicon wave plasma (HWP) source.The microstructure and morphology of the SiC/GNSs are characterized by using scanning electron microscopy (SEM),Raman spectroscopy,x-ray diffraction (XRD),x-ray photoelectron spectroscopy (XPS),and fluorescence (PL).The nucleation mechanism and the growth model are discussed.The existence of SiC and graphene structure are confirmed by XRD and Raman spectra.The electron excitation temperature is calculated by the intensity ratio method of optical emission spectroscopy.The main peak in the PL test is observed at 420 nm,with a corresponding bandgap of 2.95 eV that indicates the potential for broad application in blue light emission and ultraviolet light emission,field electron emission,and display devices.
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本刊是中国科学技术协会主管、中国地震学会和中国地震局地球物理研究所联合主办、福建省地震局协办的地震科学综合性学术月刊。创刊于1971年5月,原为内部赠阅的不定期刊物《国外地震消息》,1979更名为正式出版的期刊《国际地震动态》,2020年更名为现在的《地震科学进展》。创刊以来,刊物坚持独具特色的办刊宗旨和理念,深受广大读者的欢迎。是目前国内发行量较大、出版周期较短的地震刊物之一。
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