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稀土氧化物在氧化还原蛋白质直接电化学中的应用毕业论文
Abstract
Protein and enzyme are among the most widely-used biofunctional reagents for
immobilization in the field of electrochemical biosensor. They are involved in metabolism
and other important physiological processes all of which contain electron transfer. The
adoption of electrochemistry method will be helpful for the investigation of the
electron-transfer processes of protein and enzyme. Moreover, the investigation of the direct
electrochemistry of protein can help us comprehend the dynamic and thermodynamic
properties of protein, establish a solid foundation to explore the biological oxidation and
reduction processes, and is vitally significant for the theoretical and applicational research
of new-generation biosensors, biological fuel batteries and so on.
The present research takes the rare earth oxide materials (ceria and thulium) as the
biological carrier of hemoglobin (Hb) and glucose oxidase (GOD) which are the biological
molecules to be used to prepare a series of enzyme electrodes. It mainly discusses the
application of rare earth oxides in the direct electron transfer and biological catalytic of Hb
and GOD by electrochemical methods.
The results show that: rare earth oxide materials can promote the electron transfer of Hb
and GOD and achieve their bio-electrocatalysis.
Firstly, CeO2 shows an excellent biocompatibility and provides a friendly
microenvironment for the electron transfer between Hb (or GOD) and electrode. Hb
immobilized on Nafion-CeO2 film retains its native secondary structure, achieves direct
electron transfer with the apparent heterogeneous electron transfer rate con
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