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Controlled synthesis, asymmetrical transport behavior and luminescence properties of Lanthanide doped ZnO mushroom-like 3D hierarchical structures

机译:镧系元素掺杂的ZnO蘑菇状3D分层结构的受控合成,不对称传输行为和发光性质

摘要

Lanthanide doped ZnO mushroom-like 3D hierarchical structures have been fabricated by polyolmediated method and characterized by various microstructural and optical techniques. The results indicate that the as-prepared ZnO:Ln(3+) (Ln = Tb, Eu) samples have a hexagonal phase structure and possess a mushroom-like 3D hierarchical morphology. The length of the whole mushroom from stipe bottom to pileus top is about 1.0 mu m, and the diameters of pileus and stipe are about 0.8 mu m and 0.4 mu m, respectively. It is found that the flow of N-2 is the key parameter for the formation of the novel ZnO structure and the addition of (NH4)(2)HPO4 has a prominent effect on the phase structure and the growth of mushroom-like morphology. The potential mechanism of forming this morphology is proposed. The pileus of the formed mushroom is assembled by several radial ZnO:Ln(3+) nanorods, whereas the stipe is composed of over layered ZnO:Ln(3+) nanosheets. Moreover, asymmetrical I-V characteristic curves of ZnO:Ln(3+) mushrooms indicate that the texture composition of the 3D hierarchical morphology might lead to the asymmetrical transport behavior of electrical conductivity. Lanthanide doped ZnO samples can exhibit red or green emission under the excitation of UV tight.
机译:镧系元素掺杂的ZnO蘑菇状3D分层结构已通过多元醇介导的方法制备,并通过各种微结构和光学技术进行了表征。结果表明,所制备的ZnO:Ln(3+)(Ln = Tb,Eu)样品具有六方相结构,并具有类似蘑菇的3D分层形态。从菌柄底部到菌毛顶部的整个蘑菇的长度约为1.0μm,菌桩和菌柄的直径分别为约0.8μm和0.4μm。发现N-2的流动是形成新型ZnO结构的关键参数,并且(NH4)(2)HPO4的添加对相结构和蘑菇状形态的生长具有显着影响。提出了形成这种形态的潜在机制。形成的蘑菇的堆积物由几个径向的ZnO:Ln(3+)纳米棒组装而成,而柄由上层的ZnO:Ln(3+)纳米片组成。此外,ZnO:Ln(3+)蘑菇的不对称I-V特性曲线表明3D分层形态的纹理组成可能导致电导率的不对称传输行为。掺杂镧系元素的ZnO样品在紫外光致密的激发下会呈现红色或绿色发光。

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