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Progress in n-type monocrystalline silicon for high efficiency solar cells

机译:高效太阳能电池用n型单晶硅的研究进展

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Future high efficiency silicon solar cells are expected to be based on n-type monocrystalline wafers. Cell and module photovoltaic conversion efficiency increases are required to contribute to lower cost per watt peak and to reduce balance of systems cost. Past barriers to adoption of n-type silicon cells by a broad base of cell and module suppliers include the higher cost to manufacture a p-type emitter junction and the higher cost of the n-type mono silicon crystal. Technologies to reduce the cost of manufacturing the p-type emitter by diffusion or implantation of boron are being developed in the industry. To reduce the cost and improve further the quality of n-type mono silicon crystal, SunEdison has developed a continuous Czochralski (CCZ) crystal pulling process, based on the technology of Solaicx, acquired in 2010. This CCZ technique allows production of a crystal with much greater resistivity uniformity, with a lower incorporation rate of lifetime-reducing metals impurities, and allows crystal oxygen to be selected independent of production batch size. CCZ is expected to reduce n-type crystal cost below that of current p-type mono crystal.
机译:预期未来的高效硅太阳能电池将基于n型单晶晶片。需要提高电池和模块的光伏转换效率,以降低每瓦特峰值的成本并降低系统成本的平衡。广泛的电池和模块供应商基础采用n型硅电池的过去障碍包括制造p型发射极结的较高成本和n型单晶硅的较高成本。在工业中,正在开发用于通过硼的扩散或注入来降低制造p型发射极的成本的技术。为了降低成本并进一步提高n型单晶硅的质量,SunEdison在2010年收购了Solaicx的技术基础上,开发了一种连续的Czochralski(CCZ)晶体拉制工艺。更高的电阻率均匀性,以及降低寿命的金属杂质的掺入率较低,并且可以独立于生产批次的大小选择晶体氧。预计CCZ可以将n型晶体的成本降低到目前的p型单晶之下。

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