Bismuth(III) Chloride–Promoted Efficient Synthesis of Perimidine Derivatives under Ambient Conditions
作者:Junmin Zhang、Songlin Zhang
DOI:10.1080/00397910701463011
日期:2007.8
Unlocking the potential of Ficus religiosa tree bark-derived biochar sulfonic acid: a journey from synthesis and characterization to its astonishing catalytic role in green synthesis of perimidines
In this research, an acid-modified biochar catalyst was developed for the synthesis of perimidine derivatives, utilizing the bark of the Ficus religiosa (peepal) tree as a carbon source for the biochar formation. The catalyst was produced through pyrolysis at 550 °C followed by treatment with chlorosulfonic acid. The synthesized catalyst, biochar sulfonic acid (BCSA) was characterized by fourier-transform
在这项研究中,开发了一种酸改性生物炭催化剂,用于合成哌啶衍生物,利用菩提树的树皮作为生物炭形成的碳源。该催化剂是通过在 550 °C 下热解然后用氯磺酸处理而生产的。通过傅里叶变换红外光谱、X射线衍射、扫描电子显微镜和能量色散X射线光谱对合成的催化剂生物炭磺酸(BCSA)进行了表征。通过 1,8-二氨基萘与各种羰基化合物(酮和醛)的环缩合反应,在短反应时间(< 1 小时)内制备了多种萘嵌间二氮杂苯衍生物,产率很高(72-95%)。 。我们新开发的方案展示了一系列环保属性,包括无金属合成、一锅单步操作、催化剂可回收性、广泛的底物范围以及克级合成的能力。这项工作标志着可持续催化和绿色化学过程的重大进步。