中国科技论文
中國科技論文
중국과기논문
Sciencepaper Online
2015年
16期
1911-1915
,共5页
磁性材料%变磁性%ZrCuSiAs 型结构
磁性材料%變磁性%ZrCuSiAs 型結構
자성재료%변자성%ZrCuSiAs 형결구
magnetic materials%metamagnetism%ZrCuSiAs type structure
为了探究 SmCoAsO 体系中 Sm 在其磁性中的作用,用 Ca 在 Sm 位进行掺杂。采用固相反应法制备 Sm1-x Cax CoAsO(x=0,0.05,0.1,0.2),通过 X 射线衍射仪、超导量子干涉仪等对其结构和磁性进行表征。结果表明,制得的 Sm1-x Cax CoAsO 单相性较好,具有四方 ZrCuSiAs 型晶体结构,且 Ca 掺杂对晶格参数的影响很小。Sm1-x Cax CoAsO 在低温下发生了反铁磁、铁磁及亚铁磁多重磁转变,而且在反铁磁转变温度以下,观察到了磁场导致的变磁性转变,且变磁场随温度的升高而降低。Ca 在 Sm位掺杂抑制了 SmCoAsO 的亚铁磁转变,当掺杂量为0.2时,亚铁磁转变温度降低了23 K。因此,在 SmCoAsO 中,Co 的磁矩决定铁磁和反铁磁性,而 Sm 经由在 c 方向上的 Sm-O 层与 Co-As 层之间的相互作用决定亚铁磁性。
為瞭探究 SmCoAsO 體繫中 Sm 在其磁性中的作用,用 Ca 在 Sm 位進行摻雜。採用固相反應法製備 Sm1-x Cax CoAsO(x=0,0.05,0.1,0.2),通過 X 射線衍射儀、超導量子榦涉儀等對其結構和磁性進行錶徵。結果錶明,製得的 Sm1-x Cax CoAsO 單相性較好,具有四方 ZrCuSiAs 型晶體結構,且 Ca 摻雜對晶格參數的影響很小。Sm1-x Cax CoAsO 在低溫下髮生瞭反鐵磁、鐵磁及亞鐵磁多重磁轉變,而且在反鐵磁轉變溫度以下,觀察到瞭磁場導緻的變磁性轉變,且變磁場隨溫度的升高而降低。Ca 在 Sm位摻雜抑製瞭 SmCoAsO 的亞鐵磁轉變,噹摻雜量為0.2時,亞鐵磁轉變溫度降低瞭23 K。因此,在 SmCoAsO 中,Co 的磁矩決定鐵磁和反鐵磁性,而 Sm 經由在 c 方嚮上的 Sm-O 層與 Co-As 層之間的相互作用決定亞鐵磁性。
위료탐구 SmCoAsO 체계중 Sm 재기자성중적작용,용 Ca 재 Sm 위진행참잡。채용고상반응법제비 Sm1-x Cax CoAsO(x=0,0.05,0.1,0.2),통과 X 사선연사의、초도양자간섭의등대기결구화자성진행표정。결과표명,제득적 Sm1-x Cax CoAsO 단상성교호,구유사방 ZrCuSiAs 형정체결구,차 Ca 참잡대정격삼수적영향흔소。Sm1-x Cax CoAsO 재저온하발생료반철자、철자급아철자다중자전변,이차재반철자전변온도이하,관찰도료자장도치적변자성전변,차변자장수온도적승고이강저。Ca 재 Sm위참잡억제료 SmCoAsO 적아철자전변,당참잡량위0.2시,아철자전변온도강저료23 K。인차,재 SmCoAsO 중,Co 적자구결정철자화반철자성,이 Sm 경유재 c 방향상적 Sm-O 층여 Co-As 층지간적상호작용결정아철자성。
In order to investigate the contribution of Sm in SmCoAsO magnetism,Ca-doped SmCoAsO compounds (Sm1-x Cax-CoAsO,x=0,0.05,0.1,0.2)were synthesized by solid-state reaction.The crystal structure was studied by powder X-ray dif-fraction.DC magnetization was measured by a superconducting quantum interference device magnetometer.All samples showed a single phase and can be indexed as a tetragonal ZrCuSiAs type structure,and Ca doping did not change the cell parameters.Com-plicated magnetism consists of antiferromagnetism,ferromagnetism,and ferrimagnetism at low tempertures were found in Sm1-x Cax CoAsO.Magnetic field resulted in metamagnetic transition was observed in Sm1-x Cax CoAsO below antiferromagnetic transi-tion temperature,and metamagnetic transition field decreased with increasing temperature.Ca doping limited ferrimagnetic transi-tion of SmCoAsO.The ferrimagnetic transition temperature of Sm0.8 Ca0.2 CoAsO sample was 23 K lower than that of SmCoAsO. The magnetic moment of Co influences the ferromagnetism and antiferromagnetism in SmCoAsO,and Sm decides ferrimagnetism by the interaction between Sm-O layer and Co-As layer along the c-axis.