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Screen printed metal matrix composite contacts for crack tolerant solar cells

机译:丝网印刷金属基复合材料触点,用于耐裂太阳能电池

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Solar cells used in space missions are the primary source for power on board the space vehicle. Space solar cells are becoming thinner for improved performance (W/kg) and are based on single crystalline materials where fracturing or cleaving can easily occur from packaging, deployment and constant temperature cycling in outer space. When the fracture in the semiconductor extends through the solar cell metallization, loss of power will occur and can hinder a mission. A novel semiconductor metallization is being developed that may enable the solar cells to be fully crack tolerant. The material consists of carbon nanotubes impregnated silver metallization, termed metal matrix composite, deposited by screen printing. The carbon nanotubes increase the fracture toughness of the metallization and also offers a redundant electrical path should the metal matrix fracture. In addition to these benefits, the use of screen printing will facilitate lower costs and ease of manufacturability by eliminating the expensive photolithography and evaporation steps used for conventional metallization. The inks that are being developed show promise of electrically bridging cracks and are further being tuned for screen printing processes.
机译:航天任务中使用的太阳能电池是航天器上动力的主要来源。太空太阳能电池越来越薄,以提高性能(W / kg),并且基于单晶材料,在这种材料中,外层空间的包装,展开和恒温循环很容易发生破裂或分裂。当半导体中的断裂扩展到太阳能电池金属化过程中时,将会发生功率损耗并可能阻碍其运行。正在开发一种新颖的半导体金属化层,该金属化层可使太阳能电池具有完全的抗裂性。该材料由通过丝网印刷沉积的碳纳米管浸渍的银金属化层(称为金属基质复合物)组成。碳纳米管增加了金属化层的断裂韧性,并且在金属基体断裂时也提供了多余的电气路径。除了这些优点之外,丝网印刷的使用还可以消除传统金属镀膜所用的昂贵的光刻和蒸发步骤,从而有助于降低成本并简化可制造性。正在开发的油墨显示出电桥接裂纹的前景,并进一步针对丝网印刷工艺进行了调整。

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