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Air-expansion induced hierarchically porous carbonaceous aerogels from biomass materials with superior lithium storage properties

机译:来自生物质材料的空气膨胀诱导具有优异锂储存性能的分层多孔碳质气凝胶

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摘要

Traditional methods for the preparation of carbon aerogels, such as a sol–gel method, hydrothermal method, freeze-drying method and the direct carbonization of biomass materials, have been more and more limited in their applications due to their high cost, complex processes and the accompanying volume shrinkage in the preparation process. In this paper, we developed a novel air-expansion method for the preparation of porous carbonaceous aerogels with hierarchically macroporous, mesoporous and microporous structures from rice. The main advantages of an air-expansion method are large-scale preparation, low cost, a simple technique and most importantly it keeps the initial shape/structure and avoids shrinkage of the carbon aerogels owing to the air-expansion process of rice generating many macroporous structures for supporting the aerogel framework. When used as an anode for lithium ion batteries, rice-based carbonaceous aerogels exhibit a superior specific capacity and possess a good rate capability. This study gives a better insight into the preparation of carbonaceous aerogels from other grains as well as their potential applications in lithium ion batteries.
机译:用于制备碳气凝胶的传统方法,例如溶胶 - 凝胶法,水热法,冷冻干燥方法和生物质材料的直接碳化,由于它们的高成本,复杂的工艺以及它们的应用,它们的应用在其应用中越来越有限伴随的体积收缩在制备过程中。在本文中,我们开发了一种新的空气膨胀方法,用于制备多孔碳质气凝胶,从水稻中具有分层型大孔,中孔和微孔结构。空气膨胀方法的主要优点是大规模制备,低成本,简单的技术,最重要的是它保持初始形状/结构,并避免由于水稻产生许多大孔的空气膨胀过程而避免碳空气的收缩用于支撑气凝胶框架的结构。当用作锂离子电池的阳极时,基于米基的碳质气凝胶具有优异的特定容量并且具有良好的速率能力。该研究更好地深入了解从其他谷物的碳质气凝胶以及它们在锂离子电池中的潜在应用中的制备。

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