首页> 外文期刊>European journal of mineralogy >Electronic absorption spectra of phosphate minerals with olivine-type Structures: II. The oxidized minerals ferrisicklerite, (M1[6])(square Li-1-x(x))(M2[6])(Fe-1-x(3+) Mn-x(2+))[PO4], and heterosite, (M1[6])(square(1.00))(M2[6])(Fe-1-x(3+) Mn-x(3+))
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Electronic absorption spectra of phosphate minerals with olivine-type Structures: II. The oxidized minerals ferrisicklerite, (M1[6])(square Li-1-x(x))(M2[6])(Fe-1-x(3+) Mn-x(2+))[PO4], and heterosite, (M1[6])(square(1.00))(M2[6])(Fe-1-x(3+) Mn-x(3+))

机译:具有橄榄石型结构的磷酸盐矿物的电子吸收光谱:II。氧化的矿物铁硅闪石(M1 [6])(方Li-1-x(x))(M2 [6])(Fe-1-x(3+)Mn-x(2 +))[PO4],和杂位,(M1 [6])(平方(1.00))(M2 [6])(Fe-1-x(3+)Mn-x(3+))

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摘要

Electronic absorption spectra of the orthorhombic, Pnmb, oxidized phosphate minerals ferrisicklerite and heterosite with defect olivine structures were obtained either as single crystal spectra or as powder remission spectra, scanned on unoriented fine grained powders. In all cases microscope-spectrometric methods were used. Single-crystal spectra on two mineral phases were also measured, one of which was very strongly pleochroic and deeply violet colored contained in a 6 mu m thick platelet of a ferrisicklerite-heterosite intergrowth. The most remarkable feature of the ferrisicklerite spectrum is a shift of the high-energy absorption edge by ca. 10000 cm(-1) towards the red, compared to triphylite. By this, the edge cuts the blue and green, leaving the dark yellow color of the mineral ferrisicklerite. The low energy wing of the edge exhibits, attached as weak shoulder-like features, relatively broad band at ca. 18 300 and ca. 12 600 cm-1. These energies are typical of spin-allowed dd-bands of Mn, as in piemontites (E//Y violet). This result on ferrisicklerite is consistent with the polarized crystal spectrum of heterosite, showing very strong and broad bands of Mn3+ at 18 240 and 12 900 cm(-1).
机译:以单晶光谱或粉末吸收光谱的形式获得了正交晶,Pnmb,氧化的磷酸盐矿物硅铁矿和杂有橄榄石结构的电子吸收光谱,并在未取向的细粒粉末上进行了扫描。在所有情况下均使用显微镜光谱法。还测量了两个矿物相的单晶光谱,其中一个非常强烈的多色性和深紫罗兰色,包含在一块6微米厚的硅铁矿-异铁矿共生体中。铁硅铝石光谱的最显着特征是高能吸收边缘的移动量约为。 10000 cm(-1)朝向红色,与三方沸石相比。这样,边缘就切成蓝色和绿色,留下了矿物硅铁矿的深黄色。边缘的低能量机翼表现为弱的像肩一样的特征,在大约2毫米处具有相对较宽的频带。 18300和12600厘米-1。这些能量是自旋允许的dd Mn波段的典型能量,就像在蒙脱石中一样(E // Y紫罗兰色)。铁硅钙石上的这一结果与异位点的极化晶体光谱一致,在18240和12900 cm(-1)处显示出非常强而宽的Mn3 +带。

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