申倩倩,张早校,张武元.脂肪酸光脱羧酶及其在有机合成中应用的研究进展[J].分子催化,2024,38(2):187-196 |
脂肪酸光脱羧酶及其在有机合成中应用的研究进展 |
Research Progress of Fatty Acid Photodecarboxylase and its Application in Organic Synthesis |
投稿时间:2023-11-22 修订日期:2023-12-25 |
DOI:10.16084/j.issn1001-3555.2024.02.011 |
中文关键词: 脂肪酸 CvFAP 脱羧反应 有机合成 生物催化 |
英文关键词:fatty acid CvFAP decarboxylation organic synthesis biocatalysis |
基金项目:国家自然科学基金(No. 32171253); 天津合成生物技术创新能力行动项目(No. TSBICIP-CXRC-032) (National Natural Science Foundation of China (No. 32171253); Tianjin Synthetic Biotechnology Innovation Capacity Improvement Project (No. TSBI-CIP-CXRC-032)). |
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中文摘要: |
生物基脂肪酸是极具应用潜力的可再生资源. 以绿色、低碳的方式对生物基脂肪酸进行转化合成高价值的化学品和燃料可满足现代社会可持续发展的迫切需要, 也符合绿色生物制造的需求. 生物催化因反应条件温和、选择性高等特点受到众多学者的广泛关注, 其中, 近年来新发现的由可见光驱动的脂肪酸光脱羧酶(fatty acid photo-decarboxyase, CvFAP)可催化不同链长的脂肪酸进行脱羧反应用来合成燃料和化学品, 反应过程具有极高原子经济性, 在绿色催化工艺及能源领域具有广阔的应用前景. 我们旨在对脂肪酸光脱羧酶(CvFAP)的最新研究进展进行总结分析, 并对脂肪酸光脱羧酶的发展趋势进行展望, 以期为脂肪酸光脱羧酶(CvFAP)在绿色合成领域的进一步开发利用提供参考. |
英文摘要: |
Bio-based fatty acids are renewable energy with great application potential. The conversion of bio-based fatty acid raw materials into high-value chemicals and fuels in a green and low-carbon way can meet the urgent needs of sustainable development in modern society, and also meet the needs of green biological manufacturing. Biocatalysis has attracted extensive attention from many scholars due to its mild reaction conditions and high selectivity. Among them, the newly discovered visible light-driven fatty acid photodecarboxylase (CvFAP) can catalyze the decarboxylation of fatty acids with different chain lengths to synthesize fuels and chemicals. The reaction process has an extremely high atomic economy and has broad application prospects in the field of green catalytic technology and energy. This review aims to summarize and analyze the latest research progress of fatty acid photodecarboxylase (CvFAP) and prospects for the development trend of fatty acid photodecarboxylase, to provide references for the further development and utilization of fatty acid photodecarboxylase (CvFAP) in the field of green synthesis. |
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