Surface Engineering of Superparamagnetic Graphene Oxide Nanosheet as a Chemically Tunable Platform for Facial Biofuel Production by Lipase

脂肪酶 催化作用 棕榈酸 化学 氧化物 产量(工程) 石墨烯 化学工程 材料科学 核化学 有机化学 纳米技术 脂肪酸 复合材料 工程类
作者
Amir Landarani‐Isfahani,Mahsa Arabi,Saghar Rezaei,Majid Moghadam,Shahram Tangestaninejad,Iraj Mohammadpoor‐Baltork,Valiollah Mirkhani,Mostafa Mokhtariyan
出处
期刊:ACS applied bio materials [American Chemical Society]
卷期号:7 (7): 4406-4416
标识
DOI:10.1021/acsabm.4c00255
摘要

In this research, we utilized an efficient approach to synthesize superparamagnetic graphene oxide (SPGO) rapidly in a one-pot method using microwave irradiation of graphene oxide (GO), urea, and Fe(III) ion. Tannic acid (TA) was introduced to the surface of SPGO through a straightforward and eco-friendly process. Methods were devised to furnish GO nanosheets and modify their surfaces with TA in an environmentally friendly manner. Two series of nanosheets, namely, SPGO/TA-COOH and SPGO/TA-IM, were engineered on the surface and used for immobilizing lipase enzyme. Through various analytical tools, the unique biocatalysts SPGO/TA-COOH/L and SPGO/TA-IM/L were confirmed. These biocatalysts exhibited enhanced stability at high temperatures and pH levels compared with free lipase. They also demonstrated prolonged storage stability and reusability over four months and seven cycles, respectively. Furthermore, the catalytic activity of immobilized lipase showed minimal impairment based on kinetic behavior analysis. The kinetic constants of SPGO/TA-IM/L were determined as

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