Yesinowski James P, Purdy Andrew P
Chemistry Division, Naval Research Laboratory, Washington DC 20375-5342, USA.
J Am Chem Soc. 2004 Aug 4;126(30):9166-7. doi: 10.1021/ja049603r.
Hexagonal and cubic polytypes of bulk gallium nitride powders are characterized by 69,71Ga and 14N MAS NMR at 11.7 T. The (corrected) 71Ga chemical shifts are 333.0 and 357.5 ppm, respectively; the corresponding 14N chemical shifts are -301.8 and -297.0 ppm (all shifts referenced to 1 M gallium nitrate). The 69,71Ga nuclear quadrupole coupling constants (NQCC) in the hexagonal form are axially symmetric and agree with previous single-crystal determinations. The 71Ga MAS NMR satellite pattern envelope of the cubic form has a large Gaussian half-height width of 297 kHz, due to nonzero NQCC values induced by defects. The 14N MAS NMR spinning sideband pattern of the cubic form has a Lorentzian envelope half-height width of 17.5 kHz for the same reason. A sample containing both phases shows an unexpected marked loss of the 71Ga MAS NMR satellite transition intensity expected for the hexagonal phase. Static 71Ga-selective Hahn spin-echo measurements at the perpendicular edge of the powder pattern for the hexagonal form in this sample show a large reduction in T2, especially at higher temperatures. The partial destruction of both spin-echoes and rotational echoes is due to a chemical-exchange type process involving sites having different NQCC values.
通过在11.7 T磁场下的69,71Ga和14N 魔角旋转核磁共振(MAS NMR)对块状氮化镓粉末的六方和立方多型体进行了表征。(校正后的)71Ga化学位移分别为333.0和357.5 ppm;相应的14N化学位移为-301.8和-297.0 ppm(所有位移均相对于1 M硝酸镓)。六方形式的69,71Ga核四极耦合常数(NQCC)呈轴对称,与先前的单晶测定结果一致。立方形式的71Ga MAS NMR卫星峰包络具有297 kHz的大高斯半高宽,这是由于缺陷引起的非零NQCC值所致。出于同样的原因,立方形式的14N MAS NMR旋转边带峰具有17.5 kHz的洛伦兹包络半高宽。同时包含这两种相的样品显示出六方相预期的71Ga MAS NMR卫星跃迁强度意外显著损失。对该样品中六方形式的粉末图谱垂直边缘进行的静态71Ga选择性哈恩自旋回波测量表明,T2大幅降低,尤其是在较高温度下。自旋回波和旋转回波的部分破坏是由于涉及具有不同NQCC值位点的化学交换型过程。