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The bioelectrochemical synthesis of high-quality carbon dots with strengthened electricity output and excellent catalytic performance

机译:高质量碳点的生物电化学合成,具有增强的电力和出色的催化性能

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摘要

The emergence of microbial fuel cell (MFC) technology that can effectively recycle renewable energy from organic pollutants has been regarded as a promising and environmentally friendly route that could be widely used in numerous fields. Here, a novel sustainable self-energy conversion system was successfully constructed to renewably synthesize carbon dots (CDs) via in situ coupling with a MFC system. Interestingly, the generation of CDs was found to largely enhance the electricity production performance of the MFC. Low-temperature electron paramagnetic resonance (EPR) spectroscopic measurements and electrochemical characterization analysis results confirmed that the as-prepared CDs exhibited wide-conversion fluorescence properties and exposed carbon-rich active oxygen sites, and demonstrated a suitable band gap as well as excellent electrocatalytic performance. As a result, the prepared CDs possess high photo-bioelectrocatalytic activity for efficient H-2 production, reaching 9.58 mol h(-1). Remarkably, CD-derived photocatalytic ink presented excellent contaminant elimination activity at the solid-solid interface. Thus, this work will provide a new platform for catalyst construction via a bio-assisted method towards the next generation of nano-photocatalytic inks for indoor contaminant removal.
机译:微生物燃料电池(MFC)技术的出现可以有效地从有机污染物中回收可再生能源,被认为是一种有前途且环保的途径,可以在许多领域中广泛使用。在这里,成功构建了一种新型的可持续自我能力转换系统,以通过原位耦合与MFC系统重新合成碳点(CD)。有趣的是,发现CD的产生在很大程度上增强了MFC的电力生产性能。低温电子顺磁共振(EPR)光谱测量和电化学表征分析结果证实,预先准备的CD表现出广泛的转化荧光性能,并显示出富含碳的活性氧站点,并显示出合适的带隙以及出色的电力性能性能以及出色的电力性能性能。结果,制备的CD具有高光电催化活性,可有效地产生H-2,达到9.58 mol H(-1)。值得注意的是,CD衍生的光催化墨水在固体界面上呈现出极好的污染物消除活性。因此,这项工作将通过生物辅助方法为下一代纳米型催化墨水提供催化剂构造的新平台,用于室内污染物清除。

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