In 2022,Zhang, Zhou; Han, Faming; Fang, Jie; Zhao, Chaowei; Li, Shuai; Wu, Yonggang; Zhang, Yuefeng; You, Shengyong; Wu, Binghui; Li, Weiwei published an article in CCS Chemistry. The title of the article was 《An organic-inorganic hybrid material based on benzo[ghi]perylenetri-imide and cyclic titanium-oxo cluster for efficient perovskite and organic solar cells》.Synthetic Route of C6H15NO The author mentioned the following in the article:
Perovskite and organic solar cells usually require electron-transport interlayers to efficiently transport electrons from the photoactive layer to the metal electrode. In general, pure organic or inorganic materials are applied into the interlayers, but organic-inorganic hybrid materials have been rarely reported for this application. In this work, we report using the first titanium-oxo cluster-based organic-inorganic hybrid as the interlayer material by introducing large π-conjugated benzo[ghi]perylenetriimides as an organic part via a simple ligand-exchange reaction. This new hybrid material showed excellent solubility, well-aligned energy levels, and excellent electron mobilities, enabling its great potential application as an interlayer in solar cells such as perovskite and organic solar cells, providing high power conversion efficiencies of >20% and 16%, resp. Therefore, we claim that our present work introduces a new class of cluster-based organic-inorganic hybrid interlayer materials that exhibit promising application in organic electronics. The results came from multiple reactions, including the reaction of 6-Aminohexan-1-ol(cas: 4048-33-3Synthetic Route of C6H15NO)
6-Aminohexan-1-ol(cas: 4048-33-3) may be used along with glutaric acid to generate poly(ester amide)s with excellent film- and fiber forming properties. It can undergo cyclization over copper supported on γ-alumina and magnesia to form hexahydro-1H-azepine.Synthetic Route of C6H15NO
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