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A 3D hybrid of layered MoS2/nitrogen-doped graphene nanosheet aerogels: an effective catalyst for hydrogen evolution in microbial electrolysis cells

机译:层状MoS2 /氮掺杂石墨烯纳米片气凝胶的3D杂化物:微生物电解池中析氢的有效催化剂

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摘要

Cost-effective catalysts are the key to the successful deployment of microbial electrolysis cells (MECs) for hydrogen production from organic wastes. Herein, we report a novel catalyst for hydrogen evolution in MECs based on a 3D hybrid of layered MoS2/nitrogen-doped graphene nanosheet aerogels (3D MoS2/N-GAs) that were prepared by a facile hydrothermal approach. A high output current density of 0.36 mA cm(-2) with a hydrogen production rate of 0.19 m(3) H-2 m(-3) d(-1) was achieved for the hybrid at a 0.8 V bias, significantly higher than that of MoS2 nanosheets and N-GAs alone and comparable to that of the Pt/C catalyst when being applied in MECs. The outstanding performance of the hybrid benefits from its 3D conductive networks, porous structure, and strong synergic effects between MoS2 nanosheets and N-GAs, making it a promising catalyst for hydrogen production from wastewater through bio-electrochemical reactions.
机译:具有成本效益的催化剂是成功部署微生物电解池(MEC)从有机废物中制氢的关键。在这里,我们报告了一种新型的催化氢在MEC中析出的催化剂,该催化剂基于通过方便的水热方法制备的层状MoS2 /氮掺杂石墨烯纳米片气凝胶(3D MoS2 / N-GAs)的3D杂化体。在0.8 V偏压下,该混合动力车实现了0.36 mA cm(-2)的高输出电流密度和0.19 m(3)H-2 m(-3)d(-1)的氢气产生速率,明显更高与单独使用MoS2纳米片和N-GA相比,当应用于MEC中时,其可与Pt / C催化剂相比。混合动力车的出色性能得益于其3D导电网络,多孔结构以及MoS2纳米片与N-GA之间的强大协同效应,使其成为通过生物电化学反应从废水中制氢的有希望的催化剂。

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