功能材料与器件学报
功能材料與器件學報
공능재료여기건학보
JOURNAL OF FUNCTIONAL MATERIALS AND DEVICES
2010年
1期
17-21
,共5页
无机非金属材料%BiFeO_3薄膜%BiFeO_3/Bi_4Ti_3O_(12)多层薄膜%铁电性
無機非金屬材料%BiFeO_3薄膜%BiFeO_3/Bi_4Ti_3O_(12)多層薄膜%鐵電性
무궤비금속재료%BiFeO_3박막%BiFeO_3/Bi_4Ti_3O_(12)다층박막%철전성
inorganic non-metallic materials%BiFeO_3 film%BiFeO/Bi_4Ti_3O_(12) muhilayer film%ferroelectricity
采用溶胶-凝胶方法在FTO/glass底电极上制备了BiFeO_3/Bi_4Ti_3O_(12)和Bi_4Ti_3O_(12)/BiFeO_3多层薄膜.研究了室温下薄膜的结构,铁电性质和介电性质,并将其与纯的BiFeO_3薄膜的性质进行了比较.从薄膜的XRD模式中可以观察到共存的BiFeO_3相和Bi_4Ti_3O_(12)相.通过电滞回线测量可以看出,相对于纯的BiFeO_3薄膜,BiFeO_3/Bi_4Ti_3O_(12)和Bi_4T_(13)O_(12)/BiFeO_3多层薄膜能够承受更高的测试电场而获得充分极化,从而表现出较强的铁电性,在450 kV/cm测试电场下,薄膜的剩余极化强度分别为37 μLC/cm~2和23 μC/cm~2.
採用溶膠-凝膠方法在FTO/glass底電極上製備瞭BiFeO_3/Bi_4Ti_3O_(12)和Bi_4Ti_3O_(12)/BiFeO_3多層薄膜.研究瞭室溫下薄膜的結構,鐵電性質和介電性質,併將其與純的BiFeO_3薄膜的性質進行瞭比較.從薄膜的XRD模式中可以觀察到共存的BiFeO_3相和Bi_4Ti_3O_(12)相.通過電滯迴線測量可以看齣,相對于純的BiFeO_3薄膜,BiFeO_3/Bi_4Ti_3O_(12)和Bi_4T_(13)O_(12)/BiFeO_3多層薄膜能夠承受更高的測試電場而穫得充分極化,從而錶現齣較彊的鐵電性,在450 kV/cm測試電場下,薄膜的剩餘極化彊度分彆為37 μLC/cm~2和23 μC/cm~2.
채용용효-응효방법재FTO/glass저전겁상제비료BiFeO_3/Bi_4Ti_3O_(12)화Bi_4Ti_3O_(12)/BiFeO_3다층박막.연구료실온하박막적결구,철전성질화개전성질,병장기여순적BiFeO_3박막적성질진행료비교.종박막적XRD모식중가이관찰도공존적BiFeO_3상화Bi_4Ti_3O_(12)상.통과전체회선측량가이간출,상대우순적BiFeO_3박막,BiFeO_3/Bi_4Ti_3O_(12)화Bi_4T_(13)O_(12)/BiFeO_3다층박막능구승수경고적측시전장이획득충분겁화,종이표현출교강적철전성,재450 kV/cm측시전장하,박막적잉여겁화강도분별위37 μLC/cm~2화23 μC/cm~2.
BiFeO_3/Bi_4Ti_3O_(12) multilayer film was prepared on FTO/glass bottom electrodes by sol-gel process. Structure, ferroelectric and Dielectric properties at room temperature were studied by comparing with pure BiFeO_3 film. BiFeO_3 and Bi_4Ti_3O_(12) phase can be identified from the XRD pattern. Comparing with pure BiFeO_3 film, the BiFeO_3/Bi_4Ti_3O_(12) and Bi_4Ti_3O_(12)/BiFeO_3 multilayer film can endure higher applied field and thus getting fully polarization and show more intense ferroelectricity, Under an applied field of 450 kV/cm , the remnant polarizations are 37 μC/cm~2 and 23 μC/cm~2, respectively.