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首页> 外文期刊>RSC Advances >Anomalous red emission with competition and coexistence of defect and band edge emission in photo-electrochemically active (Zn0.97Ga0.03)(O0.95N0.05) solid solution
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Anomalous red emission with competition and coexistence of defect and band edge emission in photo-electrochemically active (Zn0.97Ga0.03)(O0.95N0.05) solid solution

机译:具有竞争和缺陷和带边缘发射的异常红色发射,在光电化学活性(Zn0.97Ga0.03)中(o0.95N0.05)固溶体

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Photo-electrochemically active nanostructured (Zn _(0.97) Ga _(0.03) )(O _(0.95) N _(0.05) ) solid solution has been synthesized by a solution combustion technique for realizing photocatalytic activity under visible light. A competing free excitonic and defect bound emission is observed from the sample which was investigated by temperature dependent photoluminescence from 4 K to 300 K. The defect bound emission dominates at room temperature providing an anomalous enhanced red emission, not reported before. A broad visible emission confirms the introduction of new defect levels as an impact of solid solution formation as established later by valence band (VB) XPS spectra. VB XPS shows the top of the valence band has shifted without affecting the conduction band, thereby reducing effective band gap of the solid solution from 3.35 eV to 2.8 eV. Tuning of the bandgap is essential to facilitate its activity under visible light irradiation as demonstrated in our present work. The generation of charge carriers, their effective separation and reduced trap states has been demonstrated by photoelectrochemical measurements in order to confirm the potential of the sample for efficient photocatalytic activity. The present sample exhibits a low mean life time with reduced trap states as compared to some previously reported results.
机译:光学电化活性纳米结构(Zn _(0.97)Ga _(0.03))(O _(0.95)N _(0.05))通过溶液燃烧技术合成,用于在可见光下实现光催化活性。从将温度依赖性光致发光的样品从4k至300​​k进行研究,观察到竞争的自由兴奋和缺陷粘合发射。在室温下缺陷绑定排放占据缺陷的发射,以提供异常的增强的红色发射,未报道。广泛的可见排放证实,将新的缺陷水平引入作为通过价带(VB)XPS光谱以后建立的固体溶液形成的影响。 VB XPS显示了价带的顶部已经换档而不影响导通带,从而降低了3.35eV至2.8eV的固体溶液的有效带隙。带隙的调整对于我们在我们目前的工作中所示的可见光照射下的活动是必不可少的。通过光电化学测量证明了电荷载体的产生,其有效分离和减少的陷阱状态,以确认样品的潜力以获得有效的光催化活性。与一些先前报道的结果相比,本样品表现出低于捕集状态的低平均寿命。

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