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内掺Sc原子的扩展三明治结构graphene-Sc-graphene的几何结构,电子性质和储氢性能研究
  • ISSN号:0567-7351
  • 期刊名称:《化学学报》
  • 时间:0
  • 分类:O561.1[理学—原子与分子物理;理学—物理]
  • 作者机构:河海大学理学院,南京210098
  • 相关基金:中央高校基本科研业务专项资金资助(Grant No.2015B19314); 江苏省“六大人才高峰”培养资助(Grant No.2015-XCL-010); 国家自然科学基金(Grant No.11104062); 江苏省青蓝工程资助
中文摘要:

使用密度泛函理论中的广义梯度近似对内掺Sc原子的graphene-Sc-graphene扩展三明治结构的几何结构、电子结构和储氢性能进行计算研究.计算发现:Sc原子位于单层石墨烯中六元环上方的结构具有较大的结合能,但小于固体Sc的内聚能实验值(3.90eV),然而,当单个Sc原子或者多个Sc原子在双层石墨烯中间与底层相距2?时,Sc原子与基底的结合能增加到5eV以上,远远大于固体Sc的内聚能实验值(3.90eV),因此相邻的Sc原子可以有效避免成簇.由此可见,三明治结构的形成明显增加了Sc原子与基底的结合强度,该结构可以进一步储氢来满足18电子规则而更加稳定,从而成为理想的新型储氢纳米材料.扩展三明治结构graphene-Sc-graphene的(2×3)单元中每个Sc原子最多可以吸附2个H_2分子,对H_2的平均吸附能分别为0.67eV和0.54eV,介于物理吸附和化学吸附(0.1~0.8eV)之间,因此该体系可以实现常温常压下对H_2的可逆吸附.由储氢机制分析可知:扩展三明治结构graphene-Sc-graphene主要通过Dewar-Kubas作用进行储氢,形成了π-δ-π型的电子结构.

英文摘要:

With the extensive use of fossil fuels such as coal and oil, the energy crisis and the accompanying environmental pollution has become a serious problem today, hydrogen has attracted widespread concern because of its less pollution and renewable usage. One of the key issues affecting the widespread use of hydrogen energy is the hydrogen storage. The metal decorated nanomaterials exhibited remarkable hydrogen adsorption capacities. The generalized gradient approximation based on density functional theory is used to study the geometric structure, electronic property, and hydrogen storage capacity of the Sc atom decorated expanded sandwich type structure graphene-Sc2-graphene. It is calculated that the structure with the Sc atom locating above the hollow site of the hexagonal ring on the graphene plane has the largest binging energy, but smaller than the experimental cohesive energy of bulk Sc(3.90 e V). However, when one or more Sc atoms locate between two graphene layers and about 2 ? distance to the substrate, the binding energy of the Sc atom to the substrate increase up to 5 e V, much larger than the experimental cohesive energy of bulk Sc(3.90 e V), so can prevent them from clustering on the graphene surface. Therefore, the sandwich type structure obviously increases the binding strength between the Sc atom and the substrate. It is known from the 18-electron rule that the structure can be stabilized through adsorbing the hydrogen molecules. Therefore, they can become the ideal hydrogen storage nanomaterials. Each Sc in the graphene-Sc-graphene sandwich type structure can adsorb up to two H_2 molecules, and the average adsorption energy of H_2 for graphene-(Sc-H_2)-graphene and graphene-(Sc-2H_2)-graphene are 0.67 e V and 0.54 e V respectively, which are between the physical adsorption and chemical adsorption(0.1 ~ 0.8 e V), therefore, they can realize the reversible adsorption of hydrogen. The expanded graphene-Sc-graphene sandwich type structure adsorbs hydrogen mainly through the Dewar-

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期刊信息
  • 《化学学报》
  • 北大核心期刊(2014版)
  • 主管单位:中国科学院
  • 主办单位:中国化学会 中国科学院上海有机化学研究所
  • 主编:周其林
  • 地址:上海市零陵路345号
  • 邮编:200032
  • 邮箱:hxxb@sioc.ac.cn
  • 电话:021-54925085
  • 国际标准刊号:ISSN:0567-7351
  • 国内统一刊号:ISSN:31-1320/O6
  • 邮发代号:4-209
  • 获奖情况:
  • 首届国家期刊奖,第二届国家期刊奖提名奖,中国期刊方阵“双高期刊”
  • 国内外数据库收录:
  • 俄罗斯文摘杂志,美国化学文摘(网络版),荷兰文摘与引文数据库,美国科学引文索引(扩展库),日本日本科学技术振兴机构数据库,中国中国科技核心期刊,中国北大核心期刊(2004版),中国北大核心期刊(2008版),中国北大核心期刊(2011版),中国北大核心期刊(2014版),英国英国皇家化学学会文摘,中国北大核心期刊(2000版)
  • 被引量:28694