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IDEAL SINGLE DIFFUSION STEP SELECTIVE EMITTERS: A COMPARISON BETWEEN THEORY AND PRACTICE

机译:理想的单一扩散步骤选择性发射器:理论与实践之间的比较

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Selective emitters have been an important research subject for crystalline silicon solar cells for decades. It is being used in production for high efficiency solar cells. In this study, selective diffusion barriers have been used to produce selective emitters. This method allows easy control of the lightly doped areas. Experimentally, selectivity has been confirmed and lightly doped sheet resistances have been varied between 50 and 100 ohm/sq. The produced selective emitter cells showed an increase in current of 2%, an increase in voltage of 1%, and an increase in blue IQE response by a factor of 2. PC1D simulations show that the SiN_x, optimised for mcSi solar cell efficiency, provides some surface passivation. The simulations show that when bulk passivation and short wavelength transmission can be maintained, further gains will be possible with improved surface passivation. For future research, the challenge is to combine the bulk and surface passivating qualities of SiN_x.
机译:最多几十年的选择性发射器是晶体硅太阳能电池的重要研究。它正在用于生产高效太阳能电池。在该研究中,用于产生选择性发射器的选择性扩散屏障。该方法允许易于控制轻微掺杂的区域。实验,已经确认了选择性,并且在50至100欧姆/平方米之间具有轻微掺杂的薄片电阻。所产生的选择性发射极细胞的电流增加2%,电压增加1%,并且通过2.PC1D模拟的PC1D模拟增加了蓝色IQE响应的增加,表明SIN_X针对MCSI太阳能电池效率进行了优化,提供一些表面钝化。模拟表明,当可以保持散装钝化和短波长传输时,可以通过改进的表面钝化来进一步提升。对于未来的研究,挑战是结合SIN_X的散装和表面钝化品质。

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