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
2004年
3期
374-378,331
,共6页
郑萍%陆维%杜文娟%孟中岩
鄭萍%陸維%杜文娟%孟中巖
정평%륙유%두문연%맹중암
PZT%LNO,sol-gel%金属基片
PZT%LNO,sol-gel%金屬基片
PZT%LNO,sol-gel%금속기편
PZT%LNO%Sol- gel%metal substrates
采用溶胶-凝胶法和快速热处理工艺,分别以不锈钢(SS)和镍合金(NC)为基片,成功制备了表面均匀、无裂纹的锆钛酸铅(Pb(Zn0.53Ti0.47)O3,简写为PZT)薄膜.为了缓解金属基片与PZT薄膜之间由于晶格常数和热膨胀系数不同所造成的不匹配状态,引入了镍酸镧(LaNiO3,简写为LNO)薄膜作为过渡层.XRD和SEM结果表明,经过600℃下30min的晶化,PZT薄膜已经由无定型转化为钙钛矿相.以LNO为过渡层,在NC金属基片上制备的PZT薄膜具有较高的介电常数和较低的损耗(1kHz下ε=717,tanδ=0.08),较低的漏电流(50kV/cm下J=2.6×10-7A/cm2)以及较好的铁电性能(+Pr=90μC/cm2,-Pr=14 μC/cm2,Ec=32.5kV/cm).同时,在SS基片上,通过引入LNO过渡层,制备的PZT薄膜也具有比较好的性能.
採用溶膠-凝膠法和快速熱處理工藝,分彆以不鏽鋼(SS)和鎳閤金(NC)為基片,成功製備瞭錶麵均勻、無裂紋的鋯鈦痠鉛(Pb(Zn0.53Ti0.47)O3,簡寫為PZT)薄膜.為瞭緩解金屬基片與PZT薄膜之間由于晶格常數和熱膨脹繫數不同所造成的不匹配狀態,引入瞭鎳痠鑭(LaNiO3,簡寫為LNO)薄膜作為過渡層.XRD和SEM結果錶明,經過600℃下30min的晶化,PZT薄膜已經由無定型轉化為鈣鈦礦相.以LNO為過渡層,在NC金屬基片上製備的PZT薄膜具有較高的介電常數和較低的損耗(1kHz下ε=717,tanδ=0.08),較低的漏電流(50kV/cm下J=2.6×10-7A/cm2)以及較好的鐵電性能(+Pr=90μC/cm2,-Pr=14 μC/cm2,Ec=32.5kV/cm).同時,在SS基片上,通過引入LNO過渡層,製備的PZT薄膜也具有比較好的性能.
채용용효-응효법화쾌속열처리공예,분별이불수강(SS)화얼합금(NC)위기편,성공제비료표면균균、무렬문적고태산연(Pb(Zn0.53Ti0.47)O3,간사위PZT)박막.위료완해금속기편여PZT박막지간유우정격상수화열팽창계수불동소조성적불필배상태,인입료얼산란(LaNiO3,간사위LNO)박막작위과도층.XRD화SEM결과표명,경과600℃하30min적정화,PZT박막이경유무정형전화위개태광상.이LNO위과도층,재NC금속기편상제비적PZT박막구유교고적개전상수화교저적손모(1kHz하ε=717,tanδ=0.08),교저적루전류(50kV/cm하J=2.6×10-7A/cm2)이급교호적철전성능(+Pr=90μC/cm2,-Pr=14 μC/cm2,Ec=32.5kV/cm).동시,재SS기편상,통과인입LNO과도층,제비적PZT박막야구유비교호적성능.
Smooth and crack free lead zirconate titanate (PZT) thin films were successfully deposited on stainless steel (SS) and nickel -chromium (NC) substrates by sol -gel method combined with a rapid thermal annealing process (RTA). An intermediate LaNiO3 layer was deposited between the PZT thin films and metal substrates to buffer the mismatch. X -ray diffraction and scanning electron micro scopy (SEM) reveal that amorphous PZT layers are crystallized into a perovskite phase with dense and smooth surface after annealed at 600℃ for 30min. Excellent properties such as high dielectric constant and low dielectric dissipation (e = 717, tanδ = 0.08, at 1kHz),low leakage current ( J = 2.6×10-7A/cm2, at 50 kV/cm), and typical hysteresis loop ( + Pr = 90μC/cm2, - Pr = 14μC/cm2, Ec =32.5 kV/cm) are obtained on LNO - coated NC substrates and good results are also obtained on LNO coated SS substrates.