Department of Chemistry, Shared Equipment Authority, Rice University, Houston, Texas 77005, United States.
J Am Chem Soc. 2012 Nov 14;134(45):18689-94. doi: 10.1021/ja3073116. Epub 2012 Oct 31.
The Birch reduction (lithium in liquid ammonia) of graphite gives a highly reduced, exfoliated product that is free of lithium. Edge and interior hydrogenation were demonstrated by solid-state (13)C NMR spectroscopy. Elemental analysis of a carefully purified sample allows the chemical composition to be expressed as (C(1.3)H)(n). Atomic force microscopy images showed that the reduced graphene was highly exfoliated. Hydrogen mapping by electron energy loss spectroscopy showed that the entire surface of the reduced sample was covered by hydrogen, consistent with the NMR studies also indicating that hydrogen was added in interior positions of the graphene lattice as well as along the edge. A large band gap (4 eV) further establishes the high level of hydrogenation.
石墨的 Birch 还原(液氨中的锂)得到高度还原、剥离的产物,且不含锂。通过固态 (13)C NMR 光谱证明了边缘和内部的氢化。对精心纯化的样品进行元素分析,可将化学组成表示为 (C(1.3)H)(n)。原子力显微镜图像显示,还原的石墨烯高度剥离。电子能量损失光谱的氢映射表明,还原样品的整个表面都被氢覆盖,这与 NMR 研究一致,也表明氢不仅添加到石墨烯晶格的内部位置,还添加到边缘位置。大的带隙(4 eV)进一步证实了高度氢化的程度。