论文标题
片段和含有硅纳米线之间的量子机械比较
Quantum Mechanical Comparison between Lithiated and Sodiated Silicon Nanowires
论文作者
论文摘要
这项计算研究将比较插入结晶硅(C-SI)纳米线与插入无定形硅(A-SI)纳米线的钠离子之间的锂离子之间的特定电荷能力(SCC)。这将证明,锂 - 硅纳米线中的势能V(R)支持具有离散电子颗粒的连贯的能量状态模型,而钠硅纳米线势能将被发现本质上是零,因此电子电流通过SODIDIAD SODIDIAD NANOWIRE AS-FRIED ELLECTICTION temitiation a a annAnowire a a a annanoWire temiption a a a annanowire te temiption temallions a wave a wavel temigant wavel of wave love y wavellike。这是由于片状和潮汐硅纳米线的电场上存在巨大差异,其中电场分别为10^(+10)v/m和10^(-15)v/m。电场差异很大的主要原因是由于锂离子内的光学扩增以及在钠离子中缺乏该过程所致。将表明,光学扩增会发展出连贯的光学相互作用,这是熔融硅纳米线中特定电荷能力激增的主要原因。相反,缺乏光学扩增是钠离子内不相互作用相互作用的原因,这是SCC在含氧硅纳米线中较低存在的原因。
This computational research study will compare the specific charge capacity (SCC) between lithium ions inserted into crystallize silicon (c-Si) nanowires versus sodium ions inserted into amorphous silicon (a-Si) nanowires. It will be demonstrated that the potential energy V(r) within the lithium-silicon nanowire supports a coherent energy state model with discrete electron particles while the sodium-silicon nanowire potential energy will be discovered to be essentially zero and thus the electron current that travels through the sodiated silicon nanowire will be modeled as free electron with wave-like characteristics. This is due to the vast differences in the electric fields of the lithiated and sodiated silicon nanowires where the electric fields are of the order of 10^(+10)V/m and 10^(-15) V/m respectively. The main reason for the great disparity in electric fields are due to the present of optical amplification within lithium ions and the absence of this process within sodium ions. It will be shown that optical amplification develops coherent optical interactions which is the primary reason for the surge of specific charge capacity in the lithiated silicon nanowire. Conversely, the lack of optical amplification is the reason for the incoherent optical interactions within sodium ions which is the reason for the low presence of SCC in sodiated silicon nanowires.