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Beyond efficiency: scalability of molecular donor materials for organic photovoltaics

机译:超越效率:用于有机光伏的分子供体材料的可扩展性

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The preparation of various molecules taken as representative examples of some of the main classes of molecular donors for organic solar cells has been analyzed in order to assess the complexity and possible scaling-up of their synthesis. Several parameters are taken into account to evaluate the synthetic complexity index (SC), namely, the number of synthetic steps, the reciprocal yield of each step, the number of operations (in particular column chromatographies) required for the purification and the safety characteristics of the used chemicals. As could be intuitively understood, large complex molecular structures that have led to the highest conversion efficiencies reported so far require more complex lengthy syntheses than smaller systems. These data underline the necessity to define working molecular structures that represent an acceptable trade-off between conversion efficiency, scalability and cost in order to design active photovoltaic molecular materials for possible large-scale production.
机译:为了评估其合成的复杂性和可能的​​扩大规模,已对各种分子的制备方法进行了分析,这些分子被用作有机太阳能电池分子供体的一些主要类别的代表。考虑了几个参数来评估合成复杂性指数(SC),即合成步骤数,每个步骤的倒数,纯化所需的操作数(特别是柱色谱法)和SDS的安全性。用过的化学品。可以直观地理解,迄今报道的导致最高转换效率的大型复杂分子结构比小型系统需要更复杂的冗长合成。这些数据强调了定义工作分子结构的必要性,这些结构代表了转换效率,可扩展性和成本之间可接受的折衷,以便设计可能进行大规模生产的活性光伏分子材料。

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