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Exotemplating synthesis of nitrogen-doped carbon materials with hierarchically porous structure and their application for lysozyme adsorption

机译:多孔结构氮掺杂碳材料的外模板合成及其在溶菌酶吸附中的应用

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Nitrogen-doped carbon materials with hierarchically porous structure were prepared by employing meso-/macroporous titania (MMT) as exotemplate with the use of Vitamin B6 (VB6) as both the carbon precursor and the nitrogen source for elemental doping. The synthesized materials were characterized by N2 sorption, scanning electron microscopy, transmission electron microscopy, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy. The obtained N-doped carbon materials have a multi-scaled porous hierarchy with pore sizes ranging from micropores, mesopores to macropores, and their morphology can be easily tuned through a simple adjustment of the weight ratio of VB6 to MMT. The different chemical state (pyridine-like N, quaternary N and oxidized N) and the content of nitrogen were analyzed by XPS. The prepared materials were used as the adsorbents for lysozyme. The effect of nitrogen doping on the lysozyme adsorption capability was investigated by comparison of the lysozyme adsorption behavior on the nitrogen-doped and nitrogen-free carbon materials with a similar pore structure. It was found that the nitrogen-containing carbon had higher adsorption capacity of lysozyme than that of the nitrogen-free carbons.
机译:通过使用介孔/大分子二氧化钛(MMT)作为外模板,并使用维生素B6(VB6)作为碳前驱体和元素掺杂的氮源,制备了具有分层多孔结构的氮掺杂碳材料。通过N 2吸附,扫描电子显微镜,透射电子显微镜,傅立叶变换红外光谱和X射线光电子能谱对合成的材料进行了表征。所获得的氮掺杂碳材料具有多尺度的多孔层级结构,其孔径范围从微孔,中孔到大孔,并且可以通过简单地调整VB6与MMT的重量比来轻松调整其形态。用XPS分析了不同的化学状态(类吡啶N,季N和氧化N)和氮含量。所制备的材料用作溶菌酶的吸附剂。通过比较溶菌酶在具有相似孔结构的掺氮和无氮碳材料上的吸附行为,研究了氮掺杂对溶菌酶吸附能力的影响。发现含氮碳比无氮碳具有更高的溶菌酶吸附能力。

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