Nano hetero nuclear fuel structure

L. Popa-Simil
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Abstract

The direct energy conversion of nuclear energy requires nano-structured nuclear fuel The principle of the radiation energy direct conversion is the usage of the knock-on electrons produced by the moving particle interaction with the lattice. These electrons transfer their energy to other electrons creating a shower of low energy and high current. A structure created of independent nanowires of two different materials insulated in a thin dielectric coating may use as electron showers energy harvesting device. The dimensions of the conductors are in the range of few tens of nm while the insulators are of several nm, offering a breakdown voltage of few milivolts. When the mowing particles interacts with them it generates consistent eshowers when riches the high electron density conductor which are passing through insulators and stops in the low electron density conductor polarizing it negatively. These two types of conductors are connected to an external load transferring the accumulated charge. To obtain a higher voltage, in a uniform radiation field bimetal nanobeads insulated together and self-organizing have to be created around the radiation source. The advantages consist in transforming the actual nuclear reactors into high power solid-state batteries with no heat exchangers and turbines.
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纳米异质核燃料结构
核能的直接能量转换需要纳米结构的核燃料,辐射能量直接转换的原理是利用运动粒子与晶格相互作用产生的撞击电子。这些电子将它们的能量传递给其他电子,形成低能量和高电流的阵雨。一种由两种不同材料的独立纳米线制成的结构,在薄介质涂层中绝缘,可以用作电子阵雨能量收集装置。导体的尺寸在几十纳米的范围内,而绝缘体的尺寸为几纳米,提供几毫伏的击穿电压。当割草粒子与它们相互作用时,当高电子密度导体穿过绝缘体时,它会产生一致的阵雨,并在低电子密度导体中停止,使其负极化。这两种类型的导体连接到传递累积电荷的外部负载。为了获得更高的电压,在均匀的辐射场中,必须在辐射源周围产生绝缘并自组织的双金属纳米珠。其优点在于将实际的核反应堆转化为没有热交换器和涡轮机的高功率固态电池。
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