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RESEARCH OF FULLERITES HYDROGEN CAPACITY

机译:富集氢气能力研究

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In conclusion it should be stressed that although some methods for fullerite hydrogenation have yet to give the maximum hydrogen content for some reasons, nevertheless, they are competitive at this stage of studies. As show data from Table 2, even C_(60) fullerite hydrogenated by 50% can easily compete with many metallic and intermetallic compounds which bright representatives are intermetallides of AB_2 and AB_5 types extensively used at present. The problem on the reaction of fullerenes with hydrogen is as the infinite field of science as the fullerene science itself. What has been done by now in this field of knowledge is not the first step but the fleeting glance at this problem. At present, scientists have made the breath-taking success in the research of hydrogen capacity of carbon nanotubes. However, this is a separate serious problem that is not covered in the present work.
机译:总之,应该强调的是,虽然富集氢化的一些方法尚未给出最大的氢含量,但它们在这个研究阶段具有竞争力。如表2所示的数据,甚至C_(60)富勒斯氢化50%甚至可以容易地竞争许多金属和金属间化合物,该化合物明亮代表是AB_2和AB_5种类型的化合物相结合。富勒烯与氢气反应的问题是作为富勒烯科学本身的无限科学领域。现在在这个知识领域完成了什么不是第一步,但在这个问题上的瞬息瞥了一眼。目前,科学家们在碳纳米管的氢容量的研究中取得了令人兴奋的成功。然而,这是一个单独的严重问题,这些问题不涉及目前的工作。

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