ID 原文 译文
42596 且与原极限学习机相比,其缺陷定位准确率提高了 11. 51%,达到 94. 61%。 Compared with the original extreme learning machine, the accuracy of the defect location is increased by 11.51% to 94.61%.
42597 基于混合极限学习机的 TSV 缺陷检测方法,既可以对不同类型的 TSV 缺陷进行分类,也能针对具体缺陷类型进行定位。 The TSV defect detectionmethod based on the hybrid extreme learning machine can classify different types of TSV defects, andlocate specific defect types.
42598 近年来,基于新的有机半导体材料的合成、器件结构的优化以及对太阳电池活性层形貌的有效调控,有机光伏电池 ( OPV) 得到了迅速的发展。 In recent years, the organic photovoltaic cell (OPV) has developed rapidly, based onthe synthesis of the new organic semiconductor material, the optimization of the device structure and theeffective control of the active layer morphology of solar cells.
42599 目前基于聚合物/小分子共混体系的单结 OPV 的光电转换效率已经超过 18%。 At present, the photoelectric conversion efficiency of the single-junction OPV based on polymer/small molecule blend systems is more than 18%.
42600 首先,概述了聚合物/小分子 OPV 的研究进展;接着, Firstly, the research progress of the polymer/small molecule OPV is summarized.
42601 介绍了 OPV 的工作原理和相分离机理, Then, the workingprinciple of the OPV and the mechanism of the phase-separation are introduced.
42602 并分析了 OPV 的光电性能、活性层形貌特征参数以及相分离过程这三者之间的关系; Besides, the relationshipamong photoelectric properties of the OPV, morphology characteristic parameters of the active layer andthe phase-separation process is analyzed.
42603 其次,探讨了不同物理调控手段对活性层形貌的影响,主要介绍了调节溶液的聚集、成膜过程中优化活性层形貌以及薄膜后处理等优化活性层的方法, Next, the effects of different physical control methods on themorphology of the active layer are discussed.The methods of optimizing the active layer are introduced, such as adjusting the solution aggregation, optimizing the morphology of the active layer in the process of the film formation and optimizing the post-treatment of the active layer.
42604 重点介绍了聚合物/小分子 OPV 的活性层形貌调控的方法; The method of controlling the morphology of the active layer of the polymer/small molecule OPV is significantly introduced.
42605 最后,对 OPV 未来的发展方向进行了展望。 Finally, the future development direction of OPV is prospected.