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首页> 外文期刊>RSC Advances >Accelerating the decomposition of KMnO4 by photolysis and auto-catalysis: a green approach to synthesize a layered birnessite-type MnO2 assembled hierarchical nanostructure
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Accelerating the decomposition of KMnO4 by photolysis and auto-catalysis: a green approach to synthesize a layered birnessite-type MnO2 assembled hierarchical nanostructure

机译:通过光解和自催化加速KMnO4的分解:一种合成分层体育型MNO2组装层级纳米结构的绿色方法

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In this work, we developed a facile, green and low-cost strategy for the controllable synthesis of birnessite-type MnO _(2) (Bir-MnO _(2) ) nanosheets assembled in a “desert rose”-like 3D hierarchical nanostructure and proposed a two-step growth route, namely photolysis and followed by auto-catalytic decomposition of KMnO _(4) . Bir-MnO _(2) nanosheets were first obtained under the irradiation of a light source and acted as seeds for further decomposition of the excess MnO _(4) ~(?) in the dark. The sizes of the Bir-MnO _(2) 3D hierarchical nanostructures could be readily controlled by varying the concentration of KMnO _(4) , the light source and the pH value. Furthermore, Bir-MnO _(2) nanosheets on CNTs were successfully fabricated utilizing the same strategy without the addition of any surfactants or organic templates. It is anticipated that the fabrication of Bir-MnO _(2) based nanostructures and composites could be beneficial from this universal method.
机译:在这项工作中,我们开发了一种适用于“沙漠玫瑰”3D等级纳米结构组装的Birniedite型MNO _(2)的可控合成(Bir-Mno _(2))纳米液并提出了两步生长途径,即光解和随后通过KMnO _(4)的自动催化分解。首先在光源的照射下首先获得Bir-MnO _(2)纳米片,并用作在黑暗中进一步分解过量的mnO _(4)〜(α)的种子。通过改变KMnO _(4),光源和pH值的浓度,可以容易地控制BiR-MnO _(2)3D分层纳米结构的尺寸。此外,使用相同的策略成功制造CNT的BIR-MNO _(2)纳米蛋白酶,而无需添加任何表面活性剂或有机模板。预计基于Bir-mnO _(2)的纳米结构和复合材料的制备可能是有益的。

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