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芳基偶氮-3,5-二苯基吡唑衍生物:用于能量存储和直接光刻图案化的具有可逆光诱导相变的分子探针。

Arylazo-3,5-diphenylpyrazole Derivatives: Molecular Probes Exhibiting Reversible Light-induced Phase Transitions for Energy Storage and Direct Photolithographic Patterning.

作者信息

Kumar Himanshu, Parthiban Gayathri, Velloth Archana, Saini Jyoti, De Ritobrata, Pal Santanu Kumar, Hazra Kiran Shankar, Venkataramani Sugumar

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Sector 81, SAS Nagar, Knowledge City, 140 306, Manauli, Punjab, India.

Institute of Nano Science and Technology, Sector 81, SAS Nagar, Knowledge City, 140 306, Manauli, Punjab, India.

出版信息

Chemistry. 2024 Aug 12;30(45):e202401836. doi: 10.1002/chem.202401836. Epub 2024 Aug 2.

Abstract

We report azopyrazole photoswitches decorated with variable N-alkyl and alkoxy chains (for hydrophobic interactions) and phenyl substituents on the pyrazoles (enabling π-π stacking), showing efficient bidirectional photoswitching and reversible light-induced phase transition (LIPT). Extensive spectroscopic, microscopic, and diffraction studies and computations confirmed the manifestation of molecular-level interactions and photoisomerization into macroscopic changes leading to the LIPT phenomena. Using differential scanning calorimetric (DSC) studies, the energetics associated with those accompanying processes were estimated. The long half-lives of Z isomers, high energy contents for isomerization and phase transitions, and the stability of phases over an extended temperature range (-60 to 80 °C) make them excellent candidates for energy storage and release applications. Remarkably, the difference in the solubility of the distinct phases in one of the derivatives allowed us to utilize it as a photoresist in photolithography applications on diverse substrates.

摘要

我们报道了带有可变N-烷基和烷氧基链(用于疏水相互作用)以及吡唑上的苯基取代基(实现π-π堆积)的偶氮吡唑光开关,其显示出高效的双向光开关和可逆的光诱导相变(LIPT)。广泛的光谱、显微镜和衍射研究以及计算证实了分子水平相互作用和光异构化表现为导致LIPT现象的宏观变化。通过差示扫描量热(DSC)研究,估算了与这些伴随过程相关的能量。Z异构体的长半衰期、异构化和相变的高能量含量以及在较宽温度范围(-60至80°C)内相的稳定性使其成为能量存储和释放应用的极佳候选物。值得注意的是,其中一种衍生物中不同相的溶解度差异使我们能够将其用作在各种基板上进行光刻应用的光刻胶。

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