首页> 外文期刊>ACS applied materials & interfaces >Synthesis, Structural Characterization, and Field-Effect Transistor Properties of n-Channel Semiconducting Polymers Containing Five-Membered Heterocyclic Acceptors: Superiority of Thiadiazole Compared with Oxadiazole
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Synthesis, Structural Characterization, and Field-Effect Transistor Properties of n-Channel Semiconducting Polymers Containing Five-Membered Heterocyclic Acceptors: Superiority of Thiadiazole Compared with Oxadiazole

机译:含五元杂环受体的n通道半导体聚合物的合成,结构表征和场效应晶体管特性:噻二唑相对于恶二唑的优越性

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Five-membered 1,3,4-oxadiazole (OZ) and 1,3,4-thiadiazole (TZ) heterocycle-based copolymers as active layer have long been ignored in solution-processable n-channel polymer field-effect transistors (PFETs) despite the long history of using OZ or TZ derivatives as the electron-injecting materials in organic light-emitting devices and their favorable electron affinities. Herein, we first report the synthesis and PFETs performance of two n-channel conjugated polymers bearing OZ- or TZ-based acceptor moieties, i.e., PNOZ and PNTZ, where simple thiophene units are utilized as the weak donors and additional alkylated-naphthalenediimides units are used as the second acceptors. A comparative study has been performed to reveal the effect of different heterocyclic acceptors on thermal properties, electronic properties, ordering structures, and carrier transport performance of the target polymers. It is found that both polymers possess low-lying LUMO values below -4.0 eV, indicating high electron affinity for both heterocycle-based polymers. Because of strong polarizable ability of sulfur atom in TZ heterocycle, PNTZ exhibits a red shift in maximal absorption and stronger molecular aggregation even in the diluted chlorobenzene solution as compared to the OZ-containing PNOZ. Surface morphological study reveals that a nodule like surface with a rough surface morphology is observed clearly for PNOZ films, whereas PNTZ films display highly uniform surface morphology with well interconnected fiber-like polycrystalline grains. Investigation of PFETs performance indicates that both polymers afford air-stable n-channel transport characteristics. The uniform morphological structure and compact pi-pi stacking endow PNTZ with a high electron mobility of 0.36 cm(2) V-1 s(-1), much higher than that of PNOZ (0.026 cm(2) V-1 s(-1)). These results manifest the feasibility in improving electron-transporting property simply by tuning heteroatom substitutes in n-channel polymers; further demostrate that TZ derivatives possess much superior potential for developing high-performance n-channel polymers compared to OZ derivatives.
机译:五元1,3,4-恶二唑(OZ)和1,3,4-噻二唑(TZ)杂环基共聚物作为活性层在溶液可加工的n沟道聚合物场效应晶体管(PFET)中长期以来一直被忽略尽管在有机发光器件中使用OZ或TZ衍生物作为电子注入材料的历史悠久,但它们具有良好的电子亲和力。在这里,我们首先报道两种带有OZ或TZ基受体部分的P型氮杂配体的合成和PFET的性能,即PNOZ和PNTZ,其中简单的噻吩单元用作弱供体,另外的烷基化萘二酰亚胺单元是用作第二受体。已经进行了比较研究以揭示不同杂环受体对目标聚合物的热性质,电子性质,有序结构和载流子传输性能的影响。发现两种聚合物均具有低于-4.0eV的低LUMO值,表明对两种基于杂环的聚合物均具有高电子亲和力。由于TZ杂环中的硫原子具有很强的极化能力,因此与含OZ的PNOZ相比,PNTZ即使在稀释的氯苯溶液中也显示出最大吸收的红移和更强的分子聚集。表面形态学研究表明,对于PNOZ薄膜,可以清楚地观察到具有粗糙表面形态的结节状表面,而PNTZ薄膜则具有高度均匀的表面形态,并具有良好的相互连接的纤维状多晶晶粒。对PFET性能的研究表明,两种聚合物均具有空气稳定的n沟道传输特性。均匀的形态结构和紧凑的pi-pi堆叠赋予PNTZ高电子迁移率0.36 cm(2)V-1 s(-1),远高于PNOZ(0.026 cm(2)V-1 s(- 1))。这些结果表明简单地通过调节n沟道聚合物中的杂原子替代物来改善电子传输性能的可行性。进一步证明,与OZ衍生物相比,TZ衍生物具有开发高性能n通道聚合物的巨大潜力。

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