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机译:基于NDI的小分子有望成为溶液加工有机光伏的非富勒烯受体
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Chemical and Biomolecular Engineering 213 Roger Adams Laboratory 600 S. Mathews Ave. University of Illinois at Urbana-Champaign Urbana IL USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
Department of Polymer Science and Engineering Conte Center for Polymer Research 120 Governors Drive University of Massachusetts Amherst MA USA;
conjugated small molecules; naphthalene diimide; nonfullerene acceptors; organic photovoltaics; thin film transistors;
机译:罗丹宁侧翼非富勒烯受体用于溶液处理的有机光伏
机译:用于衍生自萘二甲酰的全部小分子有机太阳能电池,用于加工高效非效率非含量受体
机译:所有小分子三元有机光伏,具有两个良好的兼容性非对策,可最大限度地减少能量损失
机译:高开路电压有机光伏电池:利用高带隙供体聚合物和小分子受体将能量损失降至最低
机译:小分子有机光伏的界面研究:表面修饰,电子施主纹理化和施主/受主异质结处的界面变化
机译:光伏:基于四亚芳基二酰亚胺的3D非富勒烯受体可用于高效有机光伏(Adv。Sci。4/2015)
机译:有机光伏:衍生自UV交联半导体聚合物和非对准的绿色溶剂加工三元混合有机光伏燃烧损耗的研究(ADV。能源母体。34/2019)