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Rapid electron transfer by the carbon matrix in natural pyrogenic carbon

机译:天然热解碳中碳基质的快速电子转移

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摘要

Surface functional groups constitute major electroactive components in pyrogenic carbon. However, the electrochemical properties of pyrogenic carbon matrices and the kinetic preference of functional groups or carbon matrices for electron transfer remain unknown. Here we show that environmentally relevant pyrogenic carbon with average H/C and O/C ratios of less than 0.35 and 0.09 can directly transfer electrons more than three times faster than the charging and discharging cycles of surface functional groups and have a 1.5 V potential range for biogeochemical reactions that invoke electron transfer processes. Surface functional groups contribute to the overall electron flux of pyrogenic carbon to a lesser extent with greater pyrolysis temperature due to lower charging and discharging capacities, although the charging and discharging kinetics remain unchanged. This study could spur the development of a new generation of biogeochemical electron flux models that focus on the bacteria–carbon–mineral conductive network.
机译:表面官能团构成热解碳中的主要电活性成分。然而,热解碳基质的电化学性质以及电子转移的官能团或碳基质的动力学偏好仍然未知。在这里我们表明,与环境有关的热碳,平均H / C和O / C比小于0.35和0.09,可以比表面官能团的充电和放电循环快三倍以上地传输电子,并且具有1.5 V的电位范围用于调用电子转移过程的生物地球化学反应。尽管充电和放电动力学保持不变,但由于较低的充电和放电容量,表面官能团在较高的热解温度下对热解碳的总电子通量的贡献较小。这项研究可以促进新一代生物地球化学电子通量模型的开发,该模型着重于细菌-碳-矿物质传导网络。

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