首页> 外文会议>Photovoltaic Specialists Conference (PVSC), 2009 >Efficient organic bulk heterojunction solar cells through near infrared absorbing metallated thiophene complexes
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Efficient organic bulk heterojunction solar cells through near infrared absorbing metallated thiophene complexes

机译:通过吸收近红外金属化噻吩配合物的高效有机体异质结太阳能电池

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Recently novel metallo-organic (MO) complexes have been synthesized by the Chisholm group at Ohio State, leading to the potential for a MO complex:fullerene bulk heterojuction solar cell that overcomes the limitations of current polymer:fullerene BHJ solar cell by expanding the usable solar spectrum into the near infrared. These metallated oligimers provide for high absorption at longer wavelengths of solar energy and with very long lifetimes of created electrons for high collection efficiency, leading to a potential efficiency enhancement over conventional organic solar cells. However, many fundamental issues dealing with processability and optimum device topology need to be addressed for this new chemistry system to move from the Chemistry lab to a viable device platform. In this work, prerequisites and preliminary findings of MO complexes for efficient photovoltaic operation are mainly discussed.
机译:最近,俄亥俄州立大学的Chisholm研究小组合成了新颖的金属有机(MO)配合物,从而产生了MO配合物的潜力:富勒烯本体异质结太阳能电池克服了当前聚合物的局限,通过扩展实用性来满足富勒烯BHJ太阳能电池的需求太阳光谱变成近红外。这些金属化的低聚物可在更长波长的太阳能上提供高吸收,并具有非常长的生成电子寿命,从而具有很高的收集效率,从而导致了比传统有机太阳能电池更高的潜在效率。但是,要使这种新的化学系统从化学实验室转变为可行的设备平台,必须解决许多与可加工性和最佳设备拓扑有关的基本问题。在这项工作中,主要讨论了MO配合物有效光伏操作的前提条件和初步发现。

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