南京理工大学纳米光电材料研究所曾海波团队,与美国University of Puerto Rico陈中方教授、南京师范大学李亚飞教授合作,在全新二维半导体设计方面取得重要突破。近年来,原子级厚度二维晶体材料,如石墨烯、硅烯和锗烯等,展现出卓...南京理工大学纳米光电材料研究所曾海波团队,与美国University of Puerto Rico陈中方教授、南京师范大学李亚飞教授合作,在全新二维半导体设计方面取得重要突破。近年来,原子级厚度二维晶体材料,如石墨烯、硅烯和锗烯等,展现出卓越的性能,被广泛应用于信息、能源器件。然而,这些碳族二维晶体也暴露了严重的弱点——零带隙,严重影响了它们在电子、光电子器件中的应用。此外,硫化物二维晶体带隙小于2.0eV,而氮化硼白石墨烯带隙则高达6.0eV。显然,二维半导体的带隙、响应光谱波段存在严重缺失,影响了相应器件的发展。展开更多
In this paper a fully parametrized finite element simulation model of the stator bar end is created using the COMSOL Multiphysics.The model allows conducting the comparison of different corona protection structures’d...In this paper a fully parametrized finite element simulation model of the stator bar end is created using the COMSOL Multiphysics.The model allows conducting the comparison of different corona protection structures’design,various materials properties,and finally optimizing the corona protection system.Several samples of SiC based nonlinear conductivity materials for corona protection were fabricated in laboratory and then investigated.The conductivity dependencies on electric field(0.05 to 1 kV/mm)and temperature(20 to 155℃)were measured.By comparing the heat-resistant grades of the corona protection material and the insulating material,the maximum working temperature of the corona protection material corresponds to the heat-resistant grade F of the insulating material.As the temperature increases,the nonlinear characteristics of the corona protection material in the experiment decrease dramatically,reducing the heat-resistant grade of the corona protection material.The decrease in the nonlinear characteristics of the corona protection material at the maximum operating temperature causes the maximum electric field strength at the end of the HV rotating machines end corona protection(ECP)exceeding the corona discharge electric field strength,resulting in corona phenomenon.展开更多
利用磁控溅射技术合成了Ti Ta O薄膜涂层。采用体外血小板粘附试验、动态凝血时间测定以及动物体内试片埋植试验等评价方法 ,对涂层的抗凝血特性进行了研究 ;并采用Tauc法研究了涂层的禁带宽度。研究结果表明 ,Ti Ta O薄膜涂层具有良好...利用磁控溅射技术合成了Ti Ta O薄膜涂层。采用体外血小板粘附试验、动态凝血时间测定以及动物体内试片埋植试验等评价方法 ,对涂层的抗凝血特性进行了研究 ;并采用Tauc法研究了涂层的禁带宽度。研究结果表明 ,Ti Ta O薄膜涂层具有良好的抗凝血特性以及禁带宽度为 3.2eV的半导体特性。此外 ,探讨了Ti Ta O涂层的抗凝血机理 ,并提出材料的半导体特性是影响Ti Ta O涂层抗凝血特性的主要原因之一。展开更多
文摘南京理工大学纳米光电材料研究所曾海波团队,与美国University of Puerto Rico陈中方教授、南京师范大学李亚飞教授合作,在全新二维半导体设计方面取得重要突破。近年来,原子级厚度二维晶体材料,如石墨烯、硅烯和锗烯等,展现出卓越的性能,被广泛应用于信息、能源器件。然而,这些碳族二维晶体也暴露了严重的弱点——零带隙,严重影响了它们在电子、光电子器件中的应用。此外,硫化物二维晶体带隙小于2.0eV,而氮化硼白石墨烯带隙则高达6.0eV。显然,二维半导体的带隙、响应光谱波段存在严重缺失,影响了相应器件的发展。
文摘In this paper a fully parametrized finite element simulation model of the stator bar end is created using the COMSOL Multiphysics.The model allows conducting the comparison of different corona protection structures’design,various materials properties,and finally optimizing the corona protection system.Several samples of SiC based nonlinear conductivity materials for corona protection were fabricated in laboratory and then investigated.The conductivity dependencies on electric field(0.05 to 1 kV/mm)and temperature(20 to 155℃)were measured.By comparing the heat-resistant grades of the corona protection material and the insulating material,the maximum working temperature of the corona protection material corresponds to the heat-resistant grade F of the insulating material.As the temperature increases,the nonlinear characteristics of the corona protection material in the experiment decrease dramatically,reducing the heat-resistant grade of the corona protection material.The decrease in the nonlinear characteristics of the corona protection material at the maximum operating temperature causes the maximum electric field strength at the end of the HV rotating machines end corona protection(ECP)exceeding the corona discharge electric field strength,resulting in corona phenomenon.
文摘利用磁控溅射技术合成了Ti Ta O薄膜涂层。采用体外血小板粘附试验、动态凝血时间测定以及动物体内试片埋植试验等评价方法 ,对涂层的抗凝血特性进行了研究 ;并采用Tauc法研究了涂层的禁带宽度。研究结果表明 ,Ti Ta O薄膜涂层具有良好的抗凝血特性以及禁带宽度为 3.2eV的半导体特性。此外 ,探讨了Ti Ta O涂层的抗凝血机理 ,并提出材料的半导体特性是影响Ti Ta O涂层抗凝血特性的主要原因之一。