肖特基二极管
材料科学
X射线光电子能谱
辐照
同步辐射
光谱学
伽马射线
肖特基势垒
伽马能谱学
同步加速器
X射线光谱学
光电子学
放射化学
分析化学(期刊)
化学
核物理学
物理
核磁共振
二极管
量子力学
色谱法
作者
Tatsuo Fukuda,Masaaki Kobata,Takahisa Shobu,Kenji Yoshii,J. Kamiya,Yosuke Iwamoto,Takahiro Makino,Yuichi Yamazaki,Takeshi Ohshima,Yasuhiro Shirai,Tsuyoshi Yaita
摘要
Direct energy conversion has been investigated using Ni/SiC Schottky junctions with the irradiation of monochromatized synchrotron x rays mimicking the gamma rays of 237Np (30 keV) and 241Am (60 keV). Through current–voltage measurements, electrical energies were obtained for both types of gamma rays. The energy conversion efficiencies based on absorbed energy were found to be ∼1.6%, which is comparable to other previously described semiconducting systems. This result raises the prospect of energy recovery from nuclear wastes utilizing the present system, judging from the radiation tolerant nature of SiC. Additionally, we found different conversion efficiencies between the two samples during the same process. This could be explained using hard x-ray photoelectron spectroscopy and secondary ion mass spectroscopy measurements, suggesting the creation of Ni–Si compounds at the interface in the sample with poor performance. Hence, such combined measurements are useful to provide data that electrical measurements cannot provide us.
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