Synthesis and optoelectronic properties of an anthracene derivative

被引:0
作者
Darya Khan
Zhang Xiaotao
Muhammad Hasnain Jameel
Mohd Arif Bin Agam
Muhammad Sufi Bin Roslan
Majed A. Bajaber
机构
[1] Tianjin University,Tianjin Key Laboratory of Molecular Optoelectronic Science, Department of Chemistry
[2] University Tun Hussein Onn Malaysia,Faculty of Applied Sciences and Technology
[3] Princess Nourah Bint Abdulrahman University (PNU),Department of Physics, College of Sciences
来源
Micro and Nano Systems Letters | / 11卷
关键词
Organic semiconductors; Organic field-effect transistors; Alkyl chain; Conductivity; Crystallinity;
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摘要
An asymmetric a-side alkyl chain anthracene derivative 6-(4 (-2 Ethyl Octyl) Phenyl) 2Phenyl Anthracene (EOPPA) was designed based on a π-electron skeleton with a side alkyl chain of anthracene core molecule. EOPPA was found to be a sturdy and high-performance p-type semiconductor for optoelectronic applications. The creation has successfully made this new material EOPPA with the best solubility, which exhibits both sufficient solvent solubility and thermal stability. The asymmetrical structural features of EOPPA allowed for the preparation of two-dimensional crystalline thin films in micrometer sizes with 100 nm thicknesses on a Si/SiO2 substrate through a solution processing method. The efficient solution processing synthesis of EOPPA and its high performance suggest that it has great potential in the field of organic electronics. The EOPPA demonstrated optoelectronic properties, crystalline structure, and good thin-film transistors having mobilities higher than 0.18 cm2 V−1 S−1, and a high current on/off ratio that can withstand temperatures of almost 225 °C. Furthermore, EOPPA presents good potential to be amongst the next generation of p-type anthracene core organic semiconductors, especially for practical printed electronics applications.
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