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作 者:张佳辰 韩运成 任雷 王晓彧 李桃生[1] ZHANG Jiachen;HAN Yuncheng;REN Lei;WANG Xiaoyu;LI Taosheng(Institute of Nuclear Energy Safety Technology,Hefei Institute of Physical Science,Chinese Academy of Sciences,Hefei 230031,China;University of Science and Technology of China,Hefei 230027,China)
机构地区:[1]中国科学院合肥物质科学研究院,核能安全技术研究所,安徽合肥230031 [2]中国科学技术大学,安徽合肥230027
出 处:《原子能科学技术》2021年第S01期182-188,共7页Atomic Energy Science and Technology
基 金:国家自然科学基金资助项目(21805283);安徽省自然科学基金资助项目(1808085MA10);中国科学院合肥物质科学研究院第六期“大学生创新实践训练计划”资助项目(30);国家重大科研仪器研制资助项目(62027814)。
摘 要:辐射伏特式同位素电池使用寿命长、易于小型化,是微能源领域的优良选择。使用宽禁带半导体材料作为电池换能元件理论具有更高的能量转换效率,然而实验制备的样品能量转换效率仍偏低,仅在1%水平。本文综合分析了能量转换效率影响因素,指出制备工艺的重要性。通过理论计算与数值模拟方法,对比分析了4种代表性半导体材料PIN构型下同位素电池理论输出性能,结果显示PIN结构SiC电池理论效率最高,可达17%。结合制备工艺水平,针对PIN型SiC电池进行了优化设计,并进行了样品制备。在3.7×10^(8) Bq 63Ni源辐照条件下,电池样品获得短路电流8~10 nA、开路电压0.45~0.82 V、效率0.26%~0.60%。实验测试结果与理论设计值相比仍有一定差距,通过分析明确了表面工艺是未来提高电池性能的重点。Radiation voltaic isotope batteries have long service life and are easy to miniaturize,making them an excellent choice in the field of micro energy.The use of wide-band gap semiconductor materials as battery transducer elements theoretically has higher energy conversion efficiency,but the energy conversion efficiency of the samples prepared in the experiment is still low,only at the level of 1%.This article comprehensively analyzes the factors affecting efficiency and points out the importance of the preparation process.Through theoretical calculations and numerical simulation methods,the theoretical output performance of the isotope battery under four representative semiconductor materials was compared and analyzed.The results show that the theoretical efficiency of the PIN structure SiC battery is the highest,reaching 17%.Combined with the level of preparation technology,optimized design for PIN-type SiC battery and sample preparation were carried out.Under 3.7×10^(8) Bq 63 Ni source irradiation conditions,the battery samples obtain short-circuit current 8-10 nA,open-circuit voltage 0.45-0.82 V and efficiency 0.26%-0.60%.Compared with the theoretical design value,the experimental test results still have a certain gap.Through analysis,it is clear that the surface technology is the focus of improving battery performance in the future.
关 键 词:辐射伏特式同位素电池 SIC PIN结构 能量转换效率
分 类 号:TL99[核科学技术—核技术及应用]
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