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Silicon solar cell emitters: optimization and comparison of two different technologies

机译:硅太阳能电池发射器:两种不同技术的优化和比较

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Considering recent modifications on n-type highly doped silicon parameters, a new emitter optimization was made based on one-dimensional models with analytical solutions. In order to obtain good accuracy, a fifth order approximation has been considered. Two kinds of emitters, homogeneous and locally deep diffused (LDD), with Gaussian profile of n/sup +/pp/sup +/ solar cells were optimized. According to the authors' results: homogeneous emitter solar cells show their maximum efficiencies (/spl eta//spl cong/ 21.60-21.74%) with doping levels N/sub s/=1/spl times/10/sup 19/-5/spl times/10/sup 18/ (cm/sup -3/) and (1.2-2.0) /spl mu/m emitter thickness range. LDD emitter solar cells provide a slightly higher efficiency (/spl eta/=21.82-21.92%), with N/sub s/=1/spl times/10/sup 20/ (cm/sup -3/) With 2.0 /spl mu/m thickness under metal-contacted surface and N/sub s/=1/spl times/10/sup 19/-5/spl times/10/sup 18/ (cm/sup -3/) with (1.2-2.0) /spl mu/m thickness range, (sheet resistance range 90-100 /spl Omega/) under passivated surface. Although LDD emitter solar cells have a higher efficiency than homogeneous emitter ones, the required technology is more complex and their overall interest for practical applications is questionable.
机译:考虑到最近对N型高度掺杂硅参数的修改,基于具有分析解决方案的一维模型进行了新的发射器优化。为了获得良好的准确性,已经考虑了第五顺序近似。优化了两种发射器,均匀和局部深扩散(LDD),具有高斯概念的N / SUP + / PP / SUP + /太阳能电池的高斯分布。根据作者的结果:均匀的发射极太阳能电池显示其最大效率(/ SPL ETA // SPL Cong / 21.60-21.74%,掺杂水平n / sub s / = 1 / spl时间/ 10 / sup 19 / -5 / spl时间/ 10 / sup 18 /(cm / sup -3 /)和(1.2-2.0)/ spl mu / m发射极厚度范围。 LDD发射极太阳能电池提供略高的效率(/ SPL ETA / = 21.82-21.92%),N / SUB S / = 1 / SPL时间/ 10 / SUP 20 /(CM / SUP -3 /),具有2.0 / SPL MU / M在金属接触表面下的厚度和N / sub S / = 1 / SPL时间/ 10 / SOP 19 / -5 / SPL时间/ 10 / SOP 18 /(CM / SUP -3 /)(1.2-2.0 )/ SPL MU / M厚度范围,(耐胶片电阻范围90-100 / SPLω/)钝化表面。尽管LDD发射器太阳能电池的效率高于均匀的发射器,但所需的技术更复杂,实际应用的整体兴趣是值得怀疑的。

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