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High Throughput, Low Cost Deposition of Alumina Passivation Layers by Spatial Atomic Layer Deposition

机译:通过空间原子层沉积,高通量,低成本沉积氧化铝钝化层

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Atomic Layer Deposition (ALD) is a gas phase deposition technique for depositing very high quality thin films with an unsurpassed conformality. The main drawback of ALD however is the very low deposition rate (~ 1 nm/min). Recently, record deposition rates for alumina of up to 1 nm/s were reached using spatial ALD, while maintaining the typical assets regarding film quality as obtained by conventional, slow ALD [1]. This allows for ALD at high throughput numbers. One interesting application is passivation of crystalline silicon solar cells. Applying a thin alumina layer is reported to increase solar cell efficiency and enables the use of thinner wafers, thus reducing the main cost factor [2]. In this paper we report on the latest progress made by SoLayTec that delivered a working prototype of a system realizing full area single sided deposition of alumina on 156 × 156 mm2, mono- and multi crystalline silicon wafers for solar cell applications. The alumina layers showed excellent passivation. Based on this concept, a high-throughput ALD deposition tool is being developed targeting throughput numbers of up to 3000 wafers/hr, making ALD ready for mass production. This will bring on new opportunities in other applications.
机译:原子层沉积(ALD)是用于与保形无与伦比沉积非常高品质的薄膜气相沉积技术。然而ALD的主要缺点是非常低的沉积速率(〜1纳米/分钟)。最近,记录沉积速率为氧化铝高达1纳米/秒使用空间ALD均达到,同时保持典型的资产通过常规的,慢ALD [1]作为获得关于薄膜质量。这使得ALD在高吞吐量的数字。一个有趣的应用是晶体硅太阳能电池的钝化。施加薄的氧化铝层被报道提高了太阳能电池的效率,并允许使用更薄的晶片的,因此减少了主要成本因素[2]。在本文中,我们在该交付实现的氧化铝全部区域单面淀积系统的工作原型上156×156 mm2时,单 - 和多结晶硅晶片太阳能电池应用由SoLayTec取得的最新进展。氧化铝层显示出优异的钝化。基于这样的理念,高通量ALD沉积工具正在开发针对吞吐量可达数3000片/小时,使得ALD投入量产。这将带来在其他应用程序的新机遇。

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