Naik Praveen, Swain Nibedita, Naik R, Devarajan Nainamalai, Al-Odayni Abdel-Basit, Abduh Naaser A Y, Keremane Kavya S, Alagarasan Devarajan, Aravinda T, Shivaprasad H B
Department of Chemistry, Nitte Meenakshi Institute of Technology, Yelahanka, Bengaluru, 560064, Karnataka, India.
Department of Engineering and Materials Physics, Institute of Chemical Technology-Indian Oil Odisha Campus, Bhubaneswar, 751013, India.
Heliyon. 2024 Feb 6;10(4):e25624. doi: 10.1016/j.heliyon.2024.e25624. eCollection 2024 Feb 29.
This study highlights the recent advancements in organic electronic materials and their potential for cost-effective optoelectronic devices. The investigation focuses on the molecular design, synthesis, and comprehensive analysis of two organic dyes, aiming to explore their suitability for optoelectronic applications. The dyes are strategically constructed with carbazole as the foundational structure, connecting two electron-withdrawing groups: barbituric acid () and thiobarbituric acid (). These dyes, featuring carbazole as the core and electron-withdrawing groups, demonstrate promising spectral, optical, electrochemical, thermal, and theoretical properties. They show strong potential for diverse optoelectronic applications, promising efficient light absorption and robust stability. The results endorse their suitability for practical optoelectronic systems.
本研究突出了有机电子材料的最新进展及其在具有成本效益的光电器件方面的潜力。该研究聚焦于两种有机染料的分子设计、合成及综合分析,旨在探索它们在光电子应用中的适用性。这些染料以咔唑作为基础结构进行策略性构建,连接两个吸电子基团:巴比妥酸()和硫代巴比妥酸()。这些以咔唑为核心且带有吸电子基团的染料展现出了有前景的光谱、光学、电化学、热学及理论性质。它们在多种光电子应用中显示出强大潜力,有望实现高效光吸收及强大稳定性。结果证实了它们适用于实际光电子系统。