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From Allergens to Battery Anodes: Nature-Inspired Pollen Derived Carbon Architectures for Room- and Elevated- Temperature Li-ion Storage

机译:从过敏原到电池阳极:大自然启发的花粉衍生的碳结构用于室温和高温锂离子存储

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摘要

The conversion of allergic pollen grains into carbon microstructures was carried out through a facile, one-step, solid-state pyrolysis process in an inert atmosphere. The as-prepared carbonaceous particles were further air activated at 300 °C and then evaluated as lithium ion battery anodes at room (25 °C) and elevated (50 °C) temperatures. The distinct morphologies of bee pollens and cattail pollens are resembled on the final architecture of produced carbons. Scanning Electron Microscopy images shows that activated bee pollen carbon (ABP) is comprised of spiky, brain-like, and tiny spheres; while activated cattail pollen carbon (ACP) resembles deflated spheres. Structural analysis through X-ray diffraction and Raman spectroscopy confirmed their amorphous nature. X-ray photoelectron spectroscopy analysis of ABP and ACP confirmed that both samples contain high levels of oxygen and small amount of nitrogen contents. At C/10 rate, ACP electrode delivered high specific lithium storage reversible capacities (590 mAh/g at 50 °C and 382 mAh/g at 25 °C) and also exhibited excellent high rate capabilities. Through electrochemical impedance spectroscopy studies, improved performance of ACP is attributed to its lower charge transfer resistance than ABP. Current studies demonstrate that morphologically distinct renewable pollens could produce carbon architectures for anode applications in energy storage devices.
机译:通过在惰性气氛中进行的简便,一步式固态热解过程,将花粉过敏体转变为碳微结构。将制得的碳质颗粒在300 C下进一步空气活化,然后在室温(25 C)和高温(50(C)下评估为锂离子电池的负极。蜂花粉和香蒲花粉的不同形态类似于产生的碳的最终结构。扫描电子显微镜图像显示,活化的蜂花粉碳(ABP)由尖刺,脑样和微小球组成。活化的香蒲花粉碳(ACP)类似于缩小的球体。通过X射线衍射和拉曼光谱的结构分析证实了它们的无定形性质。 ABP和ACP的X射线光电子能谱分析证实,两个样品均含有高含量的氧气和少量的氮。在C / 10速率下,ACP电极具有高的比锂存储可逆容量(在50°C下为590 mAh / g,在25°C下为382 mAh / g),并且还具有出色的高倍率性能。通过电化学阻抗谱研究,ACP性能的提高归因于其电荷转移电阻低于ABP。当前的研究表明,形态独特的可再生花粉可以产生用于储能装置中阳极应用的碳结构。

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