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Photoluminescence, FTIR, and Laser-Raman spectroscopic studies of PMN-PT containing iron

机译:PMN-PT含铁的光致发光,FTIR和激光拉曼光谱研究

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Lead magnesium niobate - lead titanate, Pb(Mg, Nb)O_3-PbTiO_3 is a piezoelectric, ferroelectric crystal at room temperature with large electromechanical coefficient. The crystals were grown by PbO-B_2O_3 flux method. Typically the crystals were colorless and transparent, but a small fraction of them were Brown/reddish colored and show interesting photoluminescence (PL) properties. The PL studies were conducted under XeCl (308nm) excitation and under Argon Ion (Ar~+) laser excitation. The excitation with 308nm gave broad PL centered at 500nm and intense emission at 710nm. The emission at 710nm in colorless crystals is very weak. The excitation with Ar~+ laser coinciding with electronic absorption in brown samples gave rich and sharp PL particularly with 514.5 nm excitation. The PL with 514.5nm -Ar~+ laser excitation, consisted of intense anti stokes emission in addition to intense red and near infrared emission, is a result of photo-transfer optically stimulated luminescence (PT-OSL). This involved electron-hole recombination at photoinduced magnetic polaron site. The PL emissions and the centers identified are the followings: 718nm emission due to magnetic polaron and 360nm emission due to cooperative emission from two polarons, Fe-R line at 660nm due to Fe~(3+) coupled to a cation; 380nm and 399nm due to Pb~(2+) clusters and Nb~(5+) center; 630 and 860 nm due to 6p→6s transition of Pb~(3+) and 760nm due to isolated Fe~(3+) ions. Raman spectrum of brown samples revealed the presence of nano particles/wires of orthorhombic β PbO. The FTIR spectrum gives evidence of significant amount of hydroxyl impurity.
机译:铅铌酸镁钛酸铅,Pb(Mg,Nb)O_3-PBTIO_3是在室温下的压电,铁电晶体,具有大的机电系数。通过PbO-B_2O_3助熔剂法生长晶体。通常,晶体是无色透明的,但它们的一小部分是棕色/红色的彩色,并且显示有趣的光致发光(PL)性质。 PL研究在Xecl(308nm)激发下并在氩离子(Ar〜+)激光激发下进行。 308nm的激发使宽普拉在500nm处以500nm以710nm的发射为中心。在无色晶体中为710nm的发射非常弱。用Ar〜+激光与棕色样品中的电子吸收重合的激发,特别是514.5nm激发的富含锐利的PL。除了强烈的红色和近红外发射之外,具有514.5nm-ar〜+激光激发的PL,包括强烈的红色和近红外发射,是光转移光学刺激的发光(PT-OSL)的结果。这涉及光诱导磁极焦位位点的电子空穴重组。识别的PL排放和中心是以下:由于磁极化子和360nm发射,由于两种极性的合作发射,由于Fe〜(3+)与阳离子相结合的Fe-R线,Fe-R线,由于磁性极化仪和360nm发射。由于PB〜(2+)簇和NB〜(5+)中心,380nm和399nm;由于6p→6s过渡,Pb〜(3+)和760nm引起的6ps→660nm,由于孤立的Fe〜(3+)离子。棕色样品的拉曼光谱显示出纳米颗粒/正交βPBO的颗粒/线。 FTIR光谱给出了大量羟基杂质的证据。

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