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Printing Light Harvesting Biological 'Devices' and other Functional Materials Applicable to Organic Photovoltaics

机译:印刷适用于有机光伏的光收集生物“设备”和其他功能材料

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Many processing steps in the manufacturing of organic photovoltaics require solution processing. Inkjet printing is a facile method for depositing solutions into patterned thin films. Piezoelectric inkjet printing is a thermally consistent process, thereby protecting the tertiary structure of organic molecules that convert optical power to electrical power. We have taken several steps back from device manufacturing and worked out the details of inkjet printing light harvesting bacteria, more specifically photosynthetic cyanobacteria. Each individual single-celled organism is a functioning biological photovoltaic device that works with only the input of water as an electron donor for the photosynthetic reaction. In addition, these cells harvest photons from a variety of wavelengths so that they function more efficiently in heterogeneous light environments. An added bonus is that their byproduct is pure oxygen and conversely, they use C02 as a food source, thus removing carbon dioxide from the atmosphere. In these biological organic photovoltaic devices, a series of photochemical reactions occur through a thylakoid-containing internal membrane structure underneath their gelatinous cell wall. We will show the successful thin film patterning of these cells, and we will also show their light emission characteristics. In addition, we will show their carbohydrate production yields highlighting their ability to use light to form energy that can be converted easily into electricity. Finally, we will show other patterned thinfilms of organic photovoltaic relevant materials including conductive silver used in cathodes, carbon nanotubes used as transparent conductors, conjugated polymers used in the active layer and quantum dots, band gap acceptor materials that also function in non-white light environments. Finally, this talk will discuss the impact of inkjet printing on the photovoltaic market and highlight the research efforts of leaders in this field.
机译:有机光伏制造中的许多处理步骤都需要溶液处理。喷墨印刷是一种将溶液沉积到图案化薄膜中的简便方法。压电喷墨打印是一种热稳定的过程,因此可以保护将光能转换为电能的有机分子的三级结构。我们从设备制造上退了几步,并详细研究了喷墨打印集光细菌的细节,尤其是光合蓝细菌。每个单独的单细胞生物都是一个功能正常的生物光伏设备,仅需输入水作为光合作用的电子供体即可。此外,这些细胞可从各种波长收集光子,因此它们在异构光环境中可更有效地发挥作用。另外一个好处是,它们的副产品是纯氧,相反,他们使用CO2作为食物来源,从而从大气中清除了二氧化碳。在这些生物有机光伏器件中,一系列的光化学反应通过其胶状细胞壁下方的类囊体内部膜结构发生。我们将展示这些电池的成功薄膜构图,还将展示它们的发光特性。此外,我们将展示其碳水化合物的产量,突出显示其利用光形成能量的能力,这些能量可以轻松转化为电能。最后,我们将展示有机光伏相关材料的其他图案化薄膜,包括用于阴极的导电银,用作透明导体的碳纳米管,用于有源层和量子点的共轭聚合物,在非白光中也起作用的带隙受体材料环境。最后,本演讲将讨论喷墨打印对光伏市场的影响,并强调该领域领导者的研究工作。

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