Dr. Hajime Kamebuchi, Rintaro Makino, Koji Hiruma, Kazumasa Tomura, Prof. Dr. Makoto Tadokoro
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Bi-TANC exhibits a herringbone-like crystal packing with intermolecular π–π overlap, which is observed in typical organic <i>n</i>-type semiconductors. However, it showed poor solubility, similar to larger acenes. In contrast, bi-TpTANC exhibited favourable solubility, and its electrochemistry in solution was investigated. In the cyclic voltammogram of bi-TpTANC, reversible redox waves corresponding to 3-step/4-electron transfer were observed at −0.795 V (1e<sup>−</sup>), −0.927 V (1e<sup>−</sup>), and −1.44 V (2e<sup>−</sup>) as half-wave potentials. The redox wave associated with the two-electron transfer on the negative low-potential side indicates the presence of through-bond charge delocalisation in the monoanionic state. Furthermore, the LUMO level of bi-TpTANC is −4.1 eV, which indicates its potential as a promising air-stable <i>n</i>-type material.</p>","PeriodicalId":144,"journal":{"name":"Chemistry - A European Journal","volume":"30 50","pages":""},"PeriodicalIF":3.9000,"publicationDate":"2024-06-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Covalently Linked 5,6,11,12-Tetraazanaphthacene Dimer and Its Triptycene-Capped Derivatives as Electron Acceptors\",\"authors\":\"Dr. Hajime Kamebuchi, Rintaro Makino, Koji Hiruma, Kazumasa Tomura, Prof. Dr. Makoto Tadokoro\",\"doi\":\"10.1002/chem.202400632\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>The development of electron transport and <i>n</i>-type materials is still largely dominated by a limited number of organic semiconductors, with fullerenes at the forefront. 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引用次数: 0
摘要
电子传输和 n 型材料的开发仍主要由数量有限的有机半导体主导,其中富勒烯处于领先地位。相比之下,空穴传输和 p 型材料的开发却取得了长足的进步。因此,扩大电子受体的范围,使其可溶液加工,并通过 X 射线晶体学阐明其结构排列至关重要。我们合成了 2,2'-双(5,6,11,12-四氮杂萘)(bi-TANC)及其三庚烯末端封端的衍生物 2,2'-双(8,13-二氢-8,13-[1,2]苯并萘-5,6,15,16-四氮杂萘)(bi-TpTANC)作为电子受体。Bi-TANC 呈现出分子间 π-π 重叠的人字形晶体结构,这在典型的有机 n 型半导体中也能观察到。不过,它的溶解性较差,与较大的烯类相似。相比之下,bi-TpTANC 表现出良好的溶解性,并对其在溶液中的电化学性质进行了研究。在双 TpTANC 的循环伏安图中,在半波电位-0.795 V(1e-)、-0.927 V(1e-)和-1.44 V(2e-)处观察到与 3 步/4 电子转移相对应的可逆氧化还原波。负低电位一侧与双电子转移相关的氧化还原波表明单阴离子态中存在通键电荷析出。此外,bi-TpTANC 的 LUMO 电平为 -4.1 eV,这表明它有望成为一种空气稳定的 n 型材料。
Covalently Linked 5,6,11,12-Tetraazanaphthacene Dimer and Its Triptycene-Capped Derivatives as Electron Acceptors
The development of electron transport and n-type materials is still largely dominated by a limited number of organic semiconductors, with fullerenes at the forefront. In contrast, substantial progress has been made in developing hole transport and p-type materials. Therefore, expanding the range of electron acceptors, making them solution-processable, and elucidating their structural arrangement by X-ray crystallography is essential. We synthesised 2,2’-bi-(5,6,11,12-tetraazanaphthacene) (bi-TANC) and its triptycene end-capped derivative, 2,2′-bi(8,13-dihydro-8,13-[1,2]benzenonaphtho-5,6,15,16-tetraazanaphthacene) (bi-TpTANC), as electron acceptors. Bi-TANC exhibits a herringbone-like crystal packing with intermolecular π–π overlap, which is observed in typical organic n-type semiconductors. However, it showed poor solubility, similar to larger acenes. In contrast, bi-TpTANC exhibited favourable solubility, and its electrochemistry in solution was investigated. In the cyclic voltammogram of bi-TpTANC, reversible redox waves corresponding to 3-step/4-electron transfer were observed at −0.795 V (1e−), −0.927 V (1e−), and −1.44 V (2e−) as half-wave potentials. The redox wave associated with the two-electron transfer on the negative low-potential side indicates the presence of through-bond charge delocalisation in the monoanionic state. Furthermore, the LUMO level of bi-TpTANC is −4.1 eV, which indicates its potential as a promising air-stable n-type material.
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