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首页> 外文期刊>The Journal of Chemical Physics >Structural transformation of molecular nitrogen to a single-bonded atomic state at high pressures
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Structural transformation of molecular nitrogen to a single-bonded atomic state at high pressures

机译:高压下分子氮的结构转变为单键原子态

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The transformation of molecular nitrogen to a single-bonded atomic nitrogen is of significant interest from a fundamental stand point and because it is the most energetic non-nuclear material predicted. We performed an x-ray diffraction of nitrogen at pressures up to 170 GPa. At 60 GPa, we found a transition from the rhombohedral (R (3) over barc) epsilon-N-2 phase to the zeta-N-2 phase, which we identified as orthorhombic with space group P222(1) and with four molecules per unit cell. This transition is accompanied by increasing intramolecular and decreasing intermolecular distances. The major transformation of this diatomic phase into the single-bonded (polymeric) phase, recently determined to have the cubic gauche structure (cg-N), proceeds as a first-order transition with a volume change of 22%. (C) 2004 American Institute of Physics.
机译:从基本的观点来看,将分子氮转变为单键原子氮非常重要,因为它是所预测的最有能量的非核材料。我们在高达170 GPa的压力下对氮气进行了X射线衍射。在60 GPa时,我们发现从菱形(R(3)穿过barc)epsilon-N-2相过渡到zeta-N-2相,我们将其鉴定为正交晶系,空间群P222(1)和四个分子每个单位单元格。这种转变伴随着分子内距离的增加和分子间距离的减小。该双原子相向单键(聚合物)相的主要转变(最近确定为具有立方薄纱结构(cg-N))以一级转变进行,体积变化为22%。 (C)2004年美国物理研究所。

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