Institute for Molecules and Materials, Radboud University Nijmegen, Toernooiveld 1, NL-6525 ED Nijmegen, The Netherlands.
Phys Chem Chem Phys. 2010 Oct 7;12(37):11517-35. doi: 10.1039/c003624b. Epub 2010 Aug 2.
We have conducted (75)As and (69)Ga Nuclear Magnetic Resonance (NMR) experiments to investigate order/disorder in Al(x)Ga(1-x)As lift-off films with x∼ 0.297 and 0.489. We were able to identify all possible As(Al(n)Ga(4-n)) sites with n = 0-4 coordinations in (75)As NMR spectra using spin-echo experiments at 18.8 Tesla. This was achieved by employing high rf field strengths using a small solenoid coil and an NMR probe specifically designed for this purpose. Spectral deconvolution, using an evolutionary algorithm, complies with the absence of long-range order if a CuAu based order parameter is imposed. An unconstrained fit shows a deviation of the statistics imposed by this type of ordering. The occupational disorder in the Ga and Al positions is reflected in a distribution of the Electric Field Gradients (EFGs) experienced at the different arsenic sites. We established that this can be modelled by summing the effects of the first coordination sphere and a Czjzek type distribution resulting from the compositional variation in the Al/Ga sub-lattice in the higher coordination spheres. (69)Ga 3QMAS and nutation data exclude the presence of highly symmetric sites and also show a distribution in EFG. The experimentally obtained quadrupolar interactions are in good agreement with calculations based on Density Functional Theory (DFT). Using additivity of EFG tensors arising from distant charge perturbations, we could use DFT to model the EFG distributions of the n = 0-4 sites, reproducing the Czjzek and extended Czjzek distributions that were found experimentally. On the basis of these calculations we conclude that the (75)As quadrupolar interaction is sensitive to compositional modulations up to the 7th coordination shell in these systems.
我们进行了 (75)As 和 (69)Ga 核磁共振 (NMR) 实验,以研究 x∼0.297 和 0.489 的 Al(x)Ga(1-x)As 剥离膜中的有序/无序。我们能够通过在 18.8 特斯拉下使用自旋回波实验,在 (75)As NMR 谱中识别所有可能的 As(Al(n)Ga(4-n)) 位点,其中 n = 0-4 配位。这是通过使用小螺线管线圈和专门为此目的设计的 NMR 探头来实现的,这些探头具有较高的射频场强度。如果施加基于 CuAu 的有序参数,则通过光谱解卷积(使用进化算法)可以证明不存在长程有序。无约束拟合显示了这种类型的有序施加的统计数据的偏差。Ga 和 Al 位置的职业无序反映在不同砷位点所经历的电场梯度 (EFG) 的分布中。我们确定可以通过将第一配位球的影响与由于 Al/Ga 亚晶格在较高配位球中的组成变化而产生的 Czjzek 型分布相加来模拟这种无序。(69)Ga 3QMAS 和旋进数据排除了高度对称位点的存在,并且还显示出 EFG 的分布。实验获得的四极相互作用与基于密度泛函理论 (DFT) 的计算非常吻合。通过使用来自远程电荷扰动的 EFG 张量的可加性,我们可以使用 DFT 来模拟 n = 0-4 位点的 EFG 分布,再现实验中发现的 Czjzek 和扩展 Czjzek 分布。基于这些计算,我们得出结论,在这些系统中,(75)As 四极相互作用对组成调制敏感,直至第 7 个配位壳层。