Towards 19% efficient industrial PERC devices using simultaneous front emitter and rear surface passivation by thermal oxidation

S. Mack, U. Jager, Gero Kastner, E. A. Wotke, U. Belledin, A. Wolf, R. Preu, D. Biro
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引用次数: 39

Abstract

Higher solar cell efficiencies enable a reduction of the cost per watt ratio, if production effort is maintained at an acceptable level. A proven high-efficiency concept is the passivated emitter and rear cell (PERC) [1]. However, the transfer of this solar cell structure from demonstrator level to industrial application is challenging. We present a simple approach for the industrial fabrication of PERC solar cells which utilizes the simultaneous passivation of the front emitter and the rear surface by a thin layer of thermally grown oxide. This Thermal Oxide Passivated All Sides (TOPAS) structure represents an industrially feasible implementation of the PERC concept.
朝向19%效率的工业PERC装置,同时采用前发射极和后表面热氧化钝化
如果生产努力维持在可接受的水平,更高的太阳能电池效率可以降低每瓦成本比。经过验证的高效概念是钝化发射极和后电池(PERC)[1]。然而,将这种太阳能电池结构从演示级转移到工业应用是具有挑战性的。我们提出了一种工业制造PERC太阳能电池的简单方法,该方法利用一层薄薄的热生长氧化物同时钝化前发射器和后表面。这种热氧化物钝化全面(TOPAS)结构代表了PERC概念在工业上可行的实现。
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