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首页> 外文期刊>RSC Advances >3D hierarchical porous N-doped carbon aerogel from renewable cellulose: an attractive carbon for high-performance supercapacitor electrodes and CO2 adsorption
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3D hierarchical porous N-doped carbon aerogel from renewable cellulose: an attractive carbon for high-performance supercapacitor electrodes and CO2 adsorption

机译:来自可再生纤维素的3D分层多孔N掺杂碳气凝胶:高性能超级电容器和CO2吸附的吸引力碳

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Hierarchical porous N-doped carbons have attracted great interest in energy storage and CO _(2) capture applications due to their unique porous structure and physicochemical properties. Fabrication of cost-effective and eco-friendly hierarchical porous N-doped carbons from renewable biomass resources is a sustainable route for future energy storage. However, it is still a big challenge to produce N-doped carbons with hierarchical porous structure from cellulose, which is the most abundant and widely available renewable resource on earth. Here, we designed a facile and effective strategy to produce hierarchical porous N-doped carbons from cellulose for high-performance supercapacitor and CO _(2) capture applications. In this method, hierarchical porous cellulose aerogels were first obtained via a dissolving–gelling process and then carbonized in NH _(3) atmosphere to give hierarchical porous N-doped carbon aerogels with more interconnected macropores and micropores. Due to the unique porous structure and physicochemical properties, the as-prepared N-doped carbon aerogels had a high specific capacitance of 225 F g ~(?1) (0.5 A g ~(?1) ) and an outstanding cycling stability. For the first time, we also demonstrated that this N-doped carbon aerogel exhibited a exceptional CO _(2) adsorption capacity of 4.99 mmol g ~(?1) , which is much higher than those of other porous carbons. This novel hierarchical porous N-doped carbon has great potential applications in CO _(2) capture, energy storage, porous supports, and electrochemical catalysis.
机译:由于其独特的多孔结构和物理化学特性,等级多孔N掺杂的碳源吸引了储能和CO _(2)捕获应用的极大兴趣。来自可再生生物质资源的成本效益和生态友好的等级多孔N掺杂碳的制造是未来能量储存的可持续途径。然而,生产具有来自纤维素的分层多孔结构的N掺杂的碳仍然是一个很大的挑战,这是地球上最丰富和广泛可再生资源。在这里,我们设计了一种容易和有效的策略,以生产来自纤维素的分层多孔N掺杂的碳,用于高性能超级电容器和CO _(2)捕获应用。在该方法中,首先通过溶解胶凝过程获得分层多孔纤维素气凝胶,然后在NH _(3)气氛中碳化,得到具有更多互联的大孔和微孔的分层多孔N掺杂碳气凝胶。由于多孔结构和物理化学性质,所制备的N掺杂碳气动凝胶具有225f g〜(α1)的高比电容(0.5Ag〜(α1))和出色的循环稳定性。我们也首次证明,该N掺杂的碳气泡具有4.99mmol G〜(α1)的特殊CO _(2)吸附容量,其远高于其他多孔碳的吸附能力。该新型等级多孔N掺杂碳具有巨大的潜在应用,CO _(2)捕获,能量储存,多孔载体和电化学催化。

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