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In situ purification to eliminate the influence of impurities in solution-processed organic crystals for transistor arrayst

机译:原位纯化以消除溶液处理的有机晶体中杂质对晶体管阵列的影响

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摘要

One of the major factors driving the fast growth of the semiconductor manufacturing industry is a steady decrease in production costs. For traditional semiconductors, most of the cost originates from infrastructure, equipment, and processing. In contrast with low-cost strategies involving organic semiconductors, the materials can easily become one of the greatest costs. Here, we demonstrate a simple and efficient fabrication process, which involves in situ purification via spin-coating from organic semiconductor/polymer blends, to eliminate the influence of impurities on the electrical properties of the semiconductor. Thus, we achieve the same performance using low-purity, low-cost materials for transistor arrays with patterned organic semiconducting crystals as that obtained from high-purity materials. The exclusion of impurities is attributed to the vertical phase separation and crystallization that occur during spin-coating, which produces purified organic semiconducting crystals. With this reduction in cost, our results can redirect organic electronics to seek the lowest purity and lowest cost material that still provides adequate performance, rather than simply using the highest purity and costliest materials.
机译:推动半导体制造业快速增长的主要因素之一是生产成本的持续下降。对于传统半导体,大部分成本来自基础设施,设备和加工。与涉及有机半导体的低成本策略相比,这种材料很容易成为最大的成本之一。在这里,我们展示了一种简单有效的制造工艺,该工艺涉及通过旋涂从有机半导体/聚合物共混物中进行原位纯化,以消除杂质对半导体电性能的影响。因此,我们将低纯度,低成本的材料用于具有图案化有机半导体晶体的晶体管阵列,与从高纯度材料获得的材料具有相同的性能。杂质的排除归因于旋涂过程中发生的垂直相分离和结晶,这会产生纯化的有机半导体晶体。通过降低成本,我们的结果可以重定向有机电子产品,以寻求仍能提供足够性能的最低纯度和最低成本的材料,而不是简单地使用最高纯度和最昂贵的材料。

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