Performance comparison of front-side silver pastes using polyalkylene carbonates for cleaner burning binder system

R. Stephenson, P. Ferraro
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Abstract

Clean-burning binder systems used in paste formulations for front side solar cell applications offer advantages of reduced residual carbon, improved conductive feature density, and overall performance and reliability. This paper presents the technical advantages of employing polyalkylene carbonates (QPAC®) as the principle binder for paste formulations used in front side solar screen printing applications. Thermal and rheological characteristics are presented and compared with standard or conventional pastes currently employed in production lines producing solar cell front side geometry. Microstructural comparisons of conductive features of the front side geometry are examined and related to aspects of adhesion performance and resistive losses.
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聚碳酸亚烯清洁燃烧粘结剂系统正面银浆性能比较
清洁燃烧粘合剂系统用于粘贴配方的前端太阳能电池应用提供减少残余碳,提高导电特征密度,整体性能和可靠性的优点。本文介绍了采用聚碳酸乙烯酯(QPAC®)作为粘贴配方的主要粘合剂用于正面太阳能丝网印刷应用的技术优势。介绍了热学和流变学特性,并与目前在生产太阳能电池正面几何形状的生产线上使用的标准或传统浆料进行了比较。微观结构的比较导电特征的正面几何检查和相关的粘附性能和电阻损失方面。
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