HIGH PERFORMANCE FLEXIBLE NANOPARTICLES BASED ORGANIC ELECTRONICS

D. Nirmal
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引用次数: 25

Abstract

The attributes of the organic materials have made them more prominent in a wide range of applications engaged for large or small purpose such as the solar cells or the displays in the mobile devices. The solar cells developed using the organic semiconductors are more advantageous due to their flexibility and their easy installation. Despite the versatile nature of the and easy implementation the organic semiconductors still suffers from low efficiency in term of cost, performance and size. The proposed method incorporates the nanomaterials in the organic solar cell to improvise efficiency (performance) and to minimize the cost as well as the size of the solar cells. The proposed method replaces the semiconductor that is organic by incorporating the organic semiconductors with the nanoparticle additives to have a perfect blending in solution to improve the crystallizations of the semiconductor, and the uniformity thus improvising the power conversion efficiency in the solar cells and minimizing the size and the cost . The result acquired through evaluation proves the performance improvements to 19% form 3.5% in the solar cells.
基于有机电子学的高性能柔性纳米颗粒
有机材料的特性使它们在诸如太阳能电池或移动设备中的显示器等大大小小的应用中更加突出。利用有机半导体开发的太阳能电池由于其灵活性和易于安装而更具优势。尽管有机半导体具有多用途和易于实现的特性,但在成本、性能和尺寸方面仍然存在效率低下的问题。所提出的方法在有机太阳能电池中加入纳米材料,以提高效率(性能),最大限度地降低成本和太阳能电池的尺寸。本发明通过将有机半导体与纳米颗粒添加剂混合,使其在溶液中完美混合,从而改善半导体的结晶性和均匀性,从而提高太阳能电池的功率转换效率,并使尺寸和成本最小化。通过评价得到的结果表明,太阳能电池的性能从3.5%提高到19%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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