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Bifunctional single-atomic Mn sites for energy-efficient hydrogen production

机译:双官能原子Mn网站节能制氢

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摘要

The electrocatalytic hydrogen evolution reaction (HER) for H-2 production is essential for future renewable and clean energy technology. Screening energy-saving, low-cost, and highly active catalysts efficiently, however, is still a grand challenge due to the sluggish kinetics of the oxygen evolution reaction (OER) in electrolyzing water. Herein, we present a single atomic Mn site anchored on a boron nitrogen co-doped carbon nanotube array (Mn-SA/BNC), which is perfectly combined with the hydrazine electrooxidation reaction (HzOR) boosted water electrolysis concept. The obtained catalyst achieves 51 mV overpotential at the current density of -10 mA cm(-2) for the cathodic HER and 132 mV versus the reversible hydrogen electrode for HzOR, respectively. Besides, in a two-electrode overall hydrazine splitting (OHzS) system, the Mn-SA/BNC catalyst only needs a cell voltage of only 0.41 V to output 10 mA cm(-1), with strong durability and nearly 100% faradaic efficiency for H-2 production. This work highlights a low-cost and high-efficiency energy-saving H-2 production pathway.
机译:electrocatalytic氢进化的反应(她)2生产对未来至关重要可再生能源和清洁能源技术。节能、低成本、高度活跃然而,催化剂效率仍然是一个大由于动力学缓慢的挑战氧进化(OER)在电解反应水。固定在一个co-doped硼氮碳纳米管阵列(Mn-SA / BNC),这是完美的摘要结合肼反应(HzOR)提高了电解水的概念。过电压在-10毫安的电流密度厘米(2)阴极她和132 mV与HzOR可逆氢电极,分别。肼分解(OHzS)系统,Mn-SA / BNC催化剂只需要电池电压0.41 V马输出10厘米(1),具有较强的耐久性感应电流的效率为2,近100%生产。高效节能,氢生产途径。

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