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Synthesis of carbon nanotubes by catalytic decomposition of methane using LaNi5 hydrogen storage alloy as a catalyst

机译:以LaNi5储氢合金为催化剂甲烷催化分解甲烷合成碳纳米管。

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Carbon nanotubes were synthesized by catalytic decomposition of methane using a hydrogen storage alloy of LaNi5 with a CaCu5 type of hexagonal structure as a catalyst. It was found that surface treatment of LaNi5 alloy particle in KOH solution was effective for providing catalytic sites for carbon nanotube growth. The reaction gas of methane could easily penetrate and reach the catalytic sites on metallic nickel through the decomposed loose surface layer of La2O3. The metallic nickel on the surface layer of LaNi5 alloy particle was dominant for growth of carbon nanotubes. The composite of carbon nanotubes with hydrogen storage alloy would be expected to have a potential application in the field of hydrogen energy. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 16]
机译:通过使用具有CaCu5型六方结构的LaNi5储氢合金作为催化剂,通过甲烷的催化分解来合成碳纳米管。发现在KOH溶液中对LaNi5合金颗粒进行表面处理对于提供碳纳米管生长的催化位点是有效的。甲烷的反应气体很容易穿过La2O3分解后的疏松表层渗透并到达金属镍上的催化位。 LaNi5合金颗粒表面层上的金属镍是碳纳米管生长的主要元素。碳纳米管与储氢合金的复合材料有望在氢能领域具有潜在的应用。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:16]

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