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一种在无溶剂介质中将二氧化碳捕获并转化为双(环状碳酸酯)酯的绿色化学酶法。

A Green Chemo-Enzymatic Approach for CO Capture and Transformation into Bis(cyclic carbonate) Esters in Solvent-Free Media.

作者信息

Villa Rocio, Ruiz Francisco J, Velasco Francisco, Nieto Susana, Porcar Raul, Garcia-Verdugo Eduardo, Lozano Pedro

机构信息

Departamento de Bioquimica y Biologia Molecular B e Inmunologia. Facultad de Quimica, Universidad de Murcia, E-30100 Murcia, Spain.

Departamento de Quimica Organica e Inorganica, Universidad Jaime I, E-12071 Castellon, Spain.

出版信息

ACS Sustain Chem Eng. 2024 Oct 2;12(41):15033-15043. doi: 10.1021/acssuschemeng.4c04102. eCollection 2024 Oct 14.

Abstract

A sustainable approach for CO capture and chemo-enzymatic transformation into bis(cyclic carbonate) esters from CO, glycidol, and organic anhydrides under solvent-free conditions has been demonstrated. The chemo-enzymatic process is based on two consecutive catalytic steps, which can be executed through separated operations or within a one-pot combo system, taking advantage of the synergic effects that emerge from integrating ionic liquid (IL) technologies and biocatalysts. In a first step, lipase-catalyzed transesterification and esterification reactions of different diacyl donors (e.g., glutaric anhydride, succinic anhydride, dimethyl succinate, etc.) with glycidol in solvent-free under mild reaction conditions (70 °C, 6 h) produce the corresponding diglycidyl ester derivatives in up to 41% yield. By a second step, the synthesis of bis(cyclic carbonate) esters was carried out as a result of the cycloaddition reaction of CO (from an exhausted gas source, 15% CO purity) on these diglycidyl esters, catalyzed by the covalently attached 1-decyl-2-methylimidazolium IL (supported ionic liquid-like phase, SILLP), in solvent-free condition, leading up to 65% yield after 8 h at 45 °C and 1 MPa CO pressure. Both key elements of the reaction system (biocatalyst and SILLP) were successfully recovered and reused for at least 5 operational cycles. Finally, different metrics have been applied to assess the greenness of the solvent-free chemo-enzymatic synthesis of bis(cyclic carbonate) esters here reported.

摘要

已证明一种可持续的方法,即在无溶剂条件下将二氧化碳捕获并通过化学酶法从二氧化碳、缩水甘油和有机酐转化为双(环碳酸酯)酯。该化学酶法基于两个连续的催化步骤,可通过分开操作或在一锅组合系统中进行,利用离子液体(IL)技术和生物催化剂整合产生的协同效应。第一步,在温和反应条件(70℃,6小时)下,脂肪酶催化不同的二酰基供体(如戊二酸酐、琥珀酸酐、琥珀酸二甲酯等)与缩水甘油在无溶剂条件下进行酯交换和酯化反应,以高达41%的产率生成相应的二缩水甘油酯衍生物。第二步,由共价连接的1-癸基-2-甲基咪唑鎓离子液体(负载型离子液体相,SILLP)催化,在无溶剂条件下,将来自废气源(二氧化碳纯度15%)的二氧化碳与这些二缩水甘油酯进行环加成反应,合成双(环碳酸酯)酯,在45℃和1MPa二氧化碳压力下反应8小时后产率高达65%。反应体系的两个关键要素(生物催化剂和SILLP)均成功回收并至少重复使用5个操作循环。最后,应用不同指标评估本文报道的无溶剂化学酶法合成双(环碳酸酯)酯的绿色程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8550/11481583/576f5771509b/sc4c04102_0001.jpg

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