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Design of a feasible high-efficiency (NiO)-Ni-63/ZnO integrated betavoltaic battery
X. Yuan, J. Lu, R. Zheng, X. Zhang, Z. Chen, X. Li, C. Li, Y. Liu, L. Liang and Z. Song
2023
发表期刊Applied Physics Express
ISSN18820778
卷号16期号:2
摘要The conventional betavoltaic battery design fails to eliminate the inherent influence of the radioactive source self-absorption effect, leading to a bottleneck in the efficiency and power of betavoltaic batteries. In this paper, a feasible high-efficiency 63NiO/ZnO integrated betavoltaic battery is designed and compared with the conventional betavoltaic battery. Simulation results show that the proposed betavoltaic battery has better output performance and breaks the upper limit of efficiency and power. The work presented here provides valuable insights for radioisotope battery designs, and the physical modeling procedure discussed can serve as a good reference for further applications in simulating heterojunctions of type-II semiconductors. © 2023 The Japan Society of Applied Physics
DOI10.35848/1882-0786/acb757
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收录类别sci ; ei
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/68136
专题中国科学院长春光学精密机械与物理研究所
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X. Yuan, J. Lu, R. Zheng, X. Zhang, Z. Chen, X. Li, C. Li, Y. Liu, L. Liang and Z. Song. Design of a feasible high-efficiency (NiO)-Ni-63/ZnO integrated betavoltaic battery[J]. Applied Physics Express,2023,16(2).
APA X. Yuan, J. Lu, R. Zheng, X. Zhang, Z. Chen, X. Li, C. Li, Y. Liu, L. Liang and Z. Song.(2023).Design of a feasible high-efficiency (NiO)-Ni-63/ZnO integrated betavoltaic battery.Applied Physics Express,16(2).
MLA X. Yuan, J. Lu, R. Zheng, X. Zhang, Z. Chen, X. Li, C. Li, Y. Liu, L. Liang and Z. Song."Design of a feasible high-efficiency (NiO)-Ni-63/ZnO integrated betavoltaic battery".Applied Physics Express 16.2(2023).
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