One-dimensional C60 arrays in noncovalent benzidine networks

IF 11.6 2区 材料科学 Q1 CHEMISTRY, PHYSICAL Carbon Pub Date : 2024-11-21 DOI:10.1016/j.carbon.2024.119838
Takatsugu Wakahara , Chika Hirata , Dorra Mahdaoui , Kazuko Fujii , Yoshitaka Matsushita , Osamu Ito , Makito Takagi , Tomomi Shimazaki , Masanori Tachikawa , Shinjiro Yagyu , Yubin Liu , Yoshiyuki Nakajima , Takuro Nagai , Kazuhito Tsukagoshi
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Abstract

Face-centered cubic packing is typically observed for pristine C60 in the solid state, and one-dimensional alignment structures of pristine C60 in the solid state are extremely rare. This study presents the synthesis of novel one-dimensional aligned C60 in single-cocrystal nanosheets, formed from C60 and N,N,N′,N′-tetraphenylbenzidine (TPB). In C60/TPB, which exhibits ambipolar charge transport characteristics, TPB serves as a molecular receptor to facilitate the formation of noncovalent networks wherein C60 organizes into one-dimensional arrays. The resulting C60/TPB nanosheets give rise to a distinct absorption band in the near-infrared region, suggesting the occurrence of charge-transfer interactions between the C60 and TPB frameworks within the cocrystals.

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非共价联苯胺网络中的一维C60阵列
固体状态下的原始C60具有面心立方填充结构,而固态状态下的原始C60的一维排列结构极为罕见。本文以C60和N,N,N ',N ' -四苯基联苯胺(TPB)为原料,合成了一种新型的一维定向C60单共晶纳米片。在具有双极性电荷传输特性的C60/TPB中,TPB作为分子受体促进非共价网络的形成,其中C60组织成一维阵列。所得到的C60/TPB纳米片在近红外区域产生了明显的吸收带,表明共晶内C60和TPB框架之间存在电荷转移相互作用。
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来源期刊
Carbon
Carbon 工程技术-材料科学:综合
CiteScore
20.80
自引率
7.30%
发文量
0
审稿时长
23 days
期刊介绍: The journal Carbon is an international multidisciplinary forum for communicating scientific advances in the field of carbon materials. It reports new findings related to the formation, structure, properties, behaviors, and technological applications of carbons. Carbons are a broad class of ordered or disordered solid phases composed primarily of elemental carbon, including but not limited to carbon black, carbon fibers and filaments, carbon nanotubes, diamond and diamond-like carbon, fullerenes, glassy carbon, graphite, graphene, graphene-oxide, porous carbons, pyrolytic carbon, and other sp2 and non-sp2 hybridized carbon systems. Carbon is the companion title to the open access journal Carbon Trends. Relevant application areas for carbon materials include biology and medicine, catalysis, electronic, optoelectronic, spintronic, high-frequency, and photonic devices, energy storage and conversion systems, environmental applications and water treatment, smart materials and systems, and structural and thermal applications.
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