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Nano-casted N-Doped Carbon Created From a Task-Specific Protic Salt and Controlled Porous Glass

机译:由特定任务质子盐和受控多孔玻璃制成的纳米浇铸N掺杂碳

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3-dimensionally interconnected macroporous carbons are versatile materials that can be used in catalysis, electrochemical devices, and separation technology. Herein, the synthesis of a nitrogen doped carbonaceous material with a well- defined nanoarchitecture via nano-casting is demonstrated. A novel carbon source, a task-specific protic salt, has been proposed to create nitrogen doped carbon by direct carbonization within the pores of controlled macroporous glass. After the removal of macroporous glass from the composite using an aqueous sodium hydroxide solution and upon further heat treatment, an oxidation resistant doped carbon with high nitrogen content (6 wt. %) is obtained. The materials formed during the different stages of the nano-casting process exhibit interesting properties such as hierarchical porosity, very high nitrogen content (15 wt. %), and increased oxidational stability. A combination of different properties to create tailor-made materials for different applications using this technique is possible.
机译:3维互连的大孔碳是通用材料,可用于催化,电化学装置和分离技术。在此,证明了通过纳米浇铸合成具有定义明确的纳米结构的氮掺杂碳质材料。已经提出了一种新型的碳源,一种特定于任务的质子盐,通过在受控大孔玻璃的孔内直接碳化来产生氮掺杂的碳。在使用氢氧化钠水溶液从复合物中除去大孔玻璃之后,并且在进一步热处理之后,获得具有高氮含量(6重量%)的抗氧化掺杂碳。在纳米铸造工艺的不同阶段形成的材料表现出令人感兴趣的特性,例如分层孔隙率,非常高的氮含量(15 wt。%)和增加的氧化稳定性。可以结合使用不同的属性,以使用此技术为不同的应用创建量身定制的材料。

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