MnxZn1-xO Crystal Synthesized by Hydrothermal Method
Wen Li Zheng, Su Xin Wang, Zhi Wen Li
Abstract
Wen Li Zheng, Su Xin Wang, Zhi Wen Li
Abstract
MnxZn1-XO Crystal was synthesized by hydrothermal method in this work.The experimental parameters for hydrothermal synyhesis were:Mineralizer concentration 3mol•L-1KOH, the fill factor 35%, temperature 430°C, Zn(OH)2 doped with MnO2 as precursor, and the reaction time 24 hours. The Mn concentration in crystal was determined by X-ray EDS. The atomic percentage of Mn in crystal increases as the concentration of MnO2 in precursor increased. The maximum atomic percentage for Mn is over 2%. The morphology shows characteristics of hexagonal prism of pure ZnO crystal. The exposed faces are hexagonal faces m{10 0}, hexagonal cone faces p{10 1}, negative polar faces {000 }and positive polar faces{0001}. The diameters of the crystals are 50-200μm,the heights are 20-100μm.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
MnxZn1-XO Crystal was synthesized by hydrothermal method in this work.The experimental parameters for hydrothermal synyhesis were:Mineralizer concentration 3mol•L-1KOH, the fill factor 35%, temperature 430°C, Zn(OH)2 doped with MnO2 as precursor, and the reaction time 24 hours. The Mn concentration in crystal was determined by X-ray EDS. The atomic percentage of Mn in crystal increases as the concentration of MnO2 in precursor increased. The maximum atomic percentage for Mn is over 2%. The morphology shows characteristics of hexagonal prism of pure ZnO crystal. The exposed faces are hexagonal faces m{10 0}, hexagonal cone faces p{10 1}, negative polar faces {000 }and positive polar faces{0001}. The diameters of the crystals are 50-200μm,the heights are 20-100μm.
Key concepts: Hexagonal prism, Hydrothermal circulation, Crystal (programming language), Hexagonal crystal system, Materials science, Crystallography, Hydrothermal synthesis, Crystal structure