Borah Biplob, Bora Jahnu, Ramesh Pambala, Chowhan L Raju
School of Applied Material Sciences, Centre for Applied Chemistry, Central University of Gujarat Sector-30 Gandhinagar-382030 Gujarat India
CSIR-Indian Institute of Chemical Technology Hyderabad-50007 India.
RSC Adv. 2022 Apr 28;12(20):12843-12857. doi: 10.1039/d2ra01917e. eCollection 2022 Apr 22.
A highly convenient and sustainable one-pot approach for the diversely-oriented synthesis of a variety of medicinally privileged amino-substituted 4,8-dihydropyrano[3,2-]pyran-3-carbonitriles, and spiro[indoline-3,4'-pyrano[3,2-]pyran]-3-carbonitrile/carboxylate derivatives on the basis of a domino three-component reaction of readily available carbonyl compounds including aryl aldehydes or isatins, active methylene compounds, and kojic acid as a Michael donor using secondary amine catalyst l-proline under ultrasound irradiation in aqueous ethanolic solution at ambient temperature has been developed. This methodology can involve the assembly of C-C, C[double bond, length as m-dash]C, C-O, C-N bonds a one-pot operation, and following this protocol, a series of novel amino-substituted spiro[indeno[1,2-]quinoxaline-11,4-pyrano[3,2-]pyran]-3-carbonitrile/carboxylates have been synthesized. The practical utility of this method was found to be very efficient for scale-up reaction and other useful transformations. The methodology provides significant advantages including mild reaction conditions, energy-efficiency, short reaction time, fast reaction, simple work-up procedure, broad functional group tolerances, utilization of reusable catalyst, green solvent system, being metal-free, ligand-free, waste-free, inexpensive, Excellent chemical yields have been achieved without using column chromatography. To address the issues of green and more sustainable chemistry, several metrics including Atom Economy (AE), Reaction Mass Efficiency (RME), Atom efficiency, E-factor, Process Mass Intensity (PMI), and Carbon Efficiency (CE) have been quantified for the present methodology that indicates the greenness of the present protocol.
基于芳基醛或异吲哚酮等易得羰基化合物、活性亚甲基化合物和曲酸作为迈克尔供体的多米诺三组分反应,在室温下于乙醇水溶液中超声辐射下使用仲胺催化剂L-脯氨酸,开发了一种高度方便且可持续的一锅法,用于多种具有药用价值的氨基取代的4,8-二氢吡喃并[3,2 - ]吡喃-3-腈以及螺[吲哚啉-3,4'-吡喃并[3,2 - ]吡喃]-3-腈/羧酸酯衍生物的多向合成。该方法可以在一锅操作中实现C-C、C = C、C-O、C-N键的构建,按照此方案,已合成了一系列新型氨基取代的螺[茚并[1,2 - ]喹喔啉-11,4-吡喃并[3,2 - ]吡喃]-3-腈/羧酸酯。发现该方法的实际应用对于放大反应和其他有用的转化非常有效。该方法具有显著优点,包括反应条件温和、能源效率高、反应时间短、反应快速、后处理程序简单、官能团耐受性广、可重复使用催化剂的利用、绿色溶剂体系、无金属、无配体、无废物、成本低廉,无需柱色谱即可获得优异的化学产率。为了解决绿色和更可持续化学的问题,已对本方法的几个指标进行了量化,包括原子经济性(AE)、反应质量效率(RME)、原子效率、E-因子、过程质量强度(PMI)和碳效率(CE),这些指标表明了本方案的绿色程度。