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Effect of Passivation on Stability and Electronic Structure of Bulk-like ZnO Clusters

机译:钝化对块状ZnO团簇稳定性和电子结构的影响

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Electronic structure of nearly stoichiometric and nonstoichiometric clusters of ZnO having bulk-like wurtzite geometry passivated with fictitious hydrogen atoms are comparatively analyzed for structural evolution using density functional theory-based electronic structure calculations. A parameter, average binding energy per atomic number (ABE-number), is introduced for better insight of structural evolution. The stability of a cluster is determined by binding energy per atom and ABE-number, whereas structural evolution on the basis of spin-polarized energy spectrum is studied via site projected partial density of states (l-DOS). The overall structural evolution is mapped for bare and passivated ZnO clusters to l-DOS. The study has established a correlation between the stability of clusters and their l-DOS. O-excess and O-surfaced clusters are found to be more stable. The HOMO–LUMO gap varies from 0 to 6.3 eV by tuning the size, composition, and surface termination of the clusters. Present results reported for clusters of sizes up to ~1 nm can pave a path for formulating strategies for experimental synthesis of ZnO nanoparticles for tuning the HOMO–LUMO gap.
机译:使用基于密度泛函理论的电子结构计算,对具有化学假性氢原子钝化的块状纤锌矿型几何形状的ZnO的近化学计量和非化学计量簇的电子结构进行了比较分析。引入一个参数,即每个原子序数的平均结合能(ABE数),以更好地了解结构演化。团簇的稳定性取决于每个原子的结合能和ABE数,而通过自旋极化能谱的结构演化则通过位点投影态的局部密度(l-DOS)进行研究。将裸露和钝化的ZnO团簇的整体结构演变映射到l-DOS。该研究已建立了群集的稳定性及其l-DOS之间的相关性。发现O过量和O表面簇更稳定。通过调整簇的大小,组成和表面终止,HOMO-LUMO间隙在0到6.3 eV之间变化。目前报道的最大簇大小约为1 nm的结果可为制定用于调整HOMO-LUMO间隙的ZnO纳米颗粒的实验合成策略制定方法。

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