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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Controllable synthesis of 4ZnO center dot B2O3 center dot H2O nano-/microstructures with different morphologies: Influence of hydrothermal reaction parameters and formation mechanism
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Controllable synthesis of 4ZnO center dot B2O3 center dot H2O nano-/microstructures with different morphologies: Influence of hydrothermal reaction parameters and formation mechanism

机译:不同形态的4ZnO中心点B2O3中心点H2O纳米/微观结构的可控制合成:水热反应参数和形成机理的影响

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摘要

4ZnO center dot B2O3 center dot H2O nano-/microstructures with different morphologies (rod-, wire-, and lamellar-like shapes and microspheres of nano-/microrods) were successfully fabricated through a facile surfactant-assisted hydrothermal method. These 4ZnO center dot B2O3 center dot H2O nano-/microstructures were characterized by XRD, SEM, and BET specific surface area analysis and TEM equipped with SAED. The influence of hydrothermal reaction parameters, including the initial pH, hydrothermal temperature and time, and concentrations of raw materials, on the formation of 4ZnO center dot B2O3 center dot H2O nano-/microstructures was investigated. The surfactant of poly(ethylene glycol) 300 played a crucial role in the formation of crystalline 4ZnO center dot B2O3 center dot H2O-B203-H, 0 with different nano-/microstructures. The structure formation mechanism is briefly discussed. In addition, this work preliminarily demonstrates the fungistatic and bacteriostatic activities of 4ZnO center dot B2O3 center dot H2O nanocrystals.
机译:通过简便的表面活性剂辅助水热法成功地制备了具有不同形态的4ZnO中心点B 2 O 3中心点H 2 O纳米/微结构(棒状,线状和层状形状以及纳米球/微棒的微球)。通过XRD,SEM和BET比表面积分析以及配备SAED的TEM对这些4ZnO中心点B2O3中心点H2O纳米/微观结构进行了表征。研究了水热反应参数,包括初始pH值,水热温度和时间以及原料浓度对4ZnO中心点B2O3中心点H2O纳米/微观结构形成的影响。聚(乙二醇)300的表面活性剂在形成具有不同纳米/微观结构的结晶4ZnO中心点B2O3中心点H2O-B203-H,0中起关键作用。简要讨论了结构形成机理。此外,这项工作初步证明了4ZnO中心点B2O3中心点H2O纳米晶体的抑菌和抑菌活性。

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