首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigation of solid state hydrogen storage performances of novel NaBH4/Ah-BN nanocomposite as hydrogen storage medium for fuel cell applications
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Investigation of solid state hydrogen storage performances of novel NaBH4/Ah-BN nanocomposite as hydrogen storage medium for fuel cell applications

机译:新型NaBH4 / AH-BN纳米复合材料的固态储氢性能研究作为燃料电池应用的储氢介质

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In the era of chaotic global warming and climate change, the hunt for alternative energy sources for fossil fuel has become an intense topic. The most viable clean, green and alternative energy carrier is hydrogen that can meet out the challenges posed towards energy scarcity. So, the present work focus on the effective storing of hydrogen on non-carboneous (Ah-BN) and hydrogen rich metal hydride (NaBH4) based storage medium. where a facile chemical impregnated method was adopted for the preparation of NaBH4/Ah-BN nanocomposite. The structural, morphological, elemental composition and specific surface area analysis of the prepared NaBH4/Ah-BN nanocomposite confirms the presence of NaBH4 wrapped around Ah-BN and enhanced specific surface area of 154.4 m(2) g(-1)(NaBH4/Ah-BN) from 68.2 m(2) g(-1) (Ah-BN). The presence of NaBH4 not only increases the specific surface area but also increases the pore volume thereby creating more defects. In contrast the presence of Ah-BN drastically reduces the decomposition temperature of NaBH4. The amount of stored hydrogen (Sievert's-like hydrogenation setup) was 3.8 wt% at 119 degrees C and the binding energy falls in the recommended range (0.33 -0.50 eV) of US-Department of Energy (DOE) 2025 targets. All the thermal analysis [thermo gravimetric analysis (TGA), differential scanning calorimetry (DSC) and temperature-programmed desorption (TPD)] ensures the two-step dehydrogenation for NaBH4/Ah-BN. Moreover, the utilization of NaBH4/Ah-BN as an electrode to store hydrogen electrochemically reveals the attainment of 2550 mAh/g discharge capacity during 15 cycles that equals to 4.10 wt% hydrogen storage capacity. Hence, these excellent characteristics proved that the prepared NaBH4/Ah-BN nanocomposite may serve as an excellent weakly chemisorbed hydrogen storage system and electrode material to store hydrogen electrochemically in the realm of Hydrogen Fuel cells. (C) 2020 Elsevier B.V. All rights reserved.
机译:在全球变暖和气候变化混乱的时代,寻找化石燃料替代能源已成为一个热门话题。最可行的清洁、绿色和替代能源载体是氢气,它可以应对能源短缺带来的挑战。因此,目前的工作重点是在非碳质(Ah-BN)和富氢金属氢化物(NaBH4)基存储介质上有效存储氢气。其中采用了一种简便的化学浸渍方法来制备NaBH4/Ah-BN纳米复合材料。对制备的NaBH4/Ah-BN纳米复合材料的结构、形态、元素组成和比表面积分析证实了包裹在Ah-BN周围的NaBH4的存在,并将比表面积从68.2 m(2)g(-1)(Ah-BN)提高到154.4 m(2)g(-1)(NaBH4/Ah-BN)。NaBH4的存在不仅增加了比表面积,还增加了孔隙体积,从而产生更多缺陷。相比之下,Ah-BN的存在大大降低了NaBH4的分解温度。在119摄氏度时,储存的氢气量(西弗特式氢化装置)为3.8 wt%,结合能在美国能源部(DOE)2025年目标的建议范围内(0.33-0.50 eV)。所有热分析[热重分析(TGA)、差示扫描量热法(DSC)和程序升温脱附(TPD)]确保了NaBH4/Ah-BN的两步脱氢。此外,利用NaBH4/Ah-BN作为电极电化学储氢表明,在15个循环中达到2550 mAh/g的放电容量,相当于4.10 wt%的储氢容量。因此,这些优异的特性证明,所制备的NaBH4/Ah-BN纳米复合材料可以作为氢燃料电池领域中一种优良的弱化学吸附储氢系统和电化学储氢电极材料。(C) 2020爱思唯尔B.V.版权所有。

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