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基于荧光的高通量筛选法发现用于酯交换反应的镧系金属氧化物催化剂及其在生物柴油生产中的应用。

Discovery of lanthanide metal oxide catalyst for transesterification reaction by fluorescence-based high-throughput screening method and application to biodiesel production.

作者信息

Ryoo Jeong Yup, Jang Mingyeong, Lim Taeho, Han Min Su

机构信息

Department of Chemistry, Gwangju Institute of Science and Technology (GIST) 123, Cheomdangwagi-ro, Buk-gu Gwangju 61005 Republic of Korea

出版信息

RSC Adv. 2025 Mar 17;15(11):8102-8110. doi: 10.1039/d4ra08489f.

Abstract

The development of heterogeneous metal oxide catalysts for transesterification reactions is crucial owing to their seamless reusability and environmental friendliness. In recent years, numerous studies have been conducted on rare-earth oxides, such as lanthanide metal oxides. Various metal oxides were screened for transesterification using a new fluorescence-based high-throughput screening (HTS) method with a pyrene excimer probe, bis(4-(1-pyrenyl)butyl) maleate (BPBM). Praseodymium(iv) oxide (PrO) yielded the highest catalytic activity among the prepared metal oxides. Various substrates were successfully transesterified, and biodiesel was produced in a high yield (90%) from soybean oil through transesterification using the catalyst. The selected catalyst required minimal amounts for the transesterification of various organic substrates (0.7 mol%) and soybean oil (0.8 wt%).

摘要

由于其可无缝重复使用且环保,用于酯交换反应的多相金属氧化物催化剂的开发至关重要。近年来,人们对稀土氧化物,如镧系金属氧化物进行了大量研究。使用一种新的基于芘准分子探针马来酸双(4-(1-芘基)丁酯)(BPBM)的荧光高通量筛选(HTS)方法,对各种金属氧化物进行酯交换反应筛选。氧化镨(PrO)在所制备的金属氧化物中催化活性最高。各种底物都成功地进行了酯交换反应,使用该催化剂通过酯交换反应从大豆油中高产率(90%)地生产了生物柴油。对于各种有机底物(0.7 mol%)和大豆油(0.8 wt%)的酯交换反应,所选催化剂的用量最少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a831/11912145/addc87c6ed3a/d4ra08489f-f1.jpg

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