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1.
用XRD、Raman光谱和DSC研究了Al2 (MoO4)3、Cr2( MoO4)3和Fe2 (MoO4)3的结构与相变.Al2(MoO4)3、Cr2 (MoO4)3和Fe2 (MoO4)3在室温下为单斜相,分别在483 K、673 K和783 K附近转变为正交相.发现MO4四面体的对称和反对称伸缩振动模的频率和相对强...  相似文献   

2.
Weperformedthehigh-pressureRaman measurementofthethreenanosizedZnOcrystals. Wefoundthesmallerthesize,thehigherthe pressuretoinducethephasetransitionfrom w櫣rzitetorock-saltstructure. High-pressureRamanmeasurementsof nona-shapedZnOcrystalswerepreformed.The…  相似文献   

3.
硼酸锂系列晶体的高压拉曼散射研究   总被引:1,自引:1,他引:0  
本文进行了硼酸锂系列晶体的高压拉曼散射及其压致相变的研究。对于三硼酸锂(LiB3O5),我们发现在5.0GPa有一可逆的晶态到晶态的相变,在27.0GPa有一不可逆的晶态到非晶态的相变。二硼酸锂(Li2B4O7)不可逆压致非晶相变发生在32.0GPa附近。对于一硼酸锂,我们研究了0—55.8GPa范围内的高压拉曼光谱,只在2.0GPa发现了一个晶态到晶态的相变,但未发现不可逆压致非晶化现象。在硼酸锂系列晶体中,不可逆压致非晶化的压力随Li2O的含量的增加而升高。硼酸锂晶体中Li2O的含量越高,压致非晶化越不容易发生,这与熔体急冷法制备硼酸锂玻璃的规律是一致的。  相似文献   

4.
碳酸盐是碳在地球内部的重要载体之一,其在地幔高温高压条件下的晶体化学是理解地球深部碳的赋存状态和循环过程的关键,而结构稳定性和相变是晶体化学最基本的研究内容。碳酸钠(Na2CO3)是一种常见的碱性碳酸盐矿物,在产自地幔过渡带-下地幔的金刚石中已发现含钠的碳酸盐矿物包裹体,这成为碳酸钠能够俯冲进入地幔深部的直接矿物学证据。前人利用拉曼光谱技术研究了Na2CO3在常温常压下的晶格振动模式,但其在高压下的稳定性和结构变化却鲜有报道。利用金刚石压腔装置结合先进的共聚焦拉曼光谱技术,以硅油作为传压介质,在准静水压力条件下,在0.001~27.53 GPa压力区间对Na2CO3粉末在600~1 200 cm-1波段的振动特征进行了细致地分析。本次实验重点分析了[CO3]2-基团振动模式在升压和卸压过程中的行为。结果表明,在0.001~11.88 GPa压力范围内,[CO3]2-基团对称伸缩振动γ1(1 088.06和1 070.76 cm-1)、反对称伸缩振动γ3(865.10和797.50 cm-1)和面内弯曲振动γ4(720.10和696.71 cm-1)都出现了振动峰的分裂。随着压力增加,所有振动峰都向高频率漂移,半高宽也逐渐增加。在13.40 GPa时,Na2CO3发生结构相变,具体表现为690.08 cm-1处出现1条新的拉曼峰,并且随着压力升高该峰的强度逐渐增大。同时反对称伸缩振动峰γ3以及面内弯曲振动峰γ4的强度持续减弱,半高宽也继续变大。这些现象表明Na2CO3结构相变源于[CO3]2-内部晶格变化。当压力卸载到4.18 GPa时,[CO3]2-的振动模式与常温常压下的完全吻合,相变出现的新峰也已经消失,表明该相变是由[CO3]2-基团畸变引起的并且具有可逆性。继续升压至27.53 GPa,拉曼光谱继续蓝移,Na2CO3的拉曼谱线再没有变化,说明高压相在这一压强范围内保持稳定。在整个加压过程中,反对称伸缩振动γ3和面内弯曲振动γ4处的拉曼峰出现强度减弱现象。同时也计算了各个峰频率对压力的依赖系数dγ/dP,结果显示[CO3]2-基团内各个振动模式对压力的响应是不同的,这很可能与C-O键的键长有关。最后,对比发现,对称伸缩振动γ1峰的强度比反对称伸缩振动γ3和面内弯曲振动γ4峰的强度大,并且[CO3]2-基团对称伸缩振动γ1受压力影响相对较小,可以用来区别不同种类的碳酸盐矿物。  相似文献   

5.
对金刚烷(C_(10)H_(16))进行了常温原位高压拉曼光谱研究,最高压力为25 GPa。通过分析高压拉曼光谱,结合拉曼频移随压力的变化情况,得出在实验压力范围内C_(10)H_(16)发生了多次相变。0.6 GPa时,C_(10)H_(16)由常温常压下的无序相(α相)转变为有序相(β相);继续加压至1.7 GPa时,第2次结构相变开始,直至3.2 GPa,第2次相变完全结束;第3次相变开始于6.3 GPa,结束于7.7 GPa;22.9 GPa时发生了第4次结构相变。另外,首次在拉曼光谱上探测到第3次相变过程中晶格振动峰的变化,说明第3次相变并非前人报道的等结构相变。  相似文献   

6.
应用金刚石压腔结合拉曼光谱技术研究了方解石-Ⅰ在静水高压作用下相转变为方解石-Ⅲ的过程.结果表明,压力增大的过程中,方解石-Ⅰ晶体的三个拉曼特征峰均向高频移动;在1 103 MPa条件下,体系中的水介质结冰,冰点处方解石-Ⅰ晶体性质没有变化;继续加压至1 752 MPa时矿物的拉曼特征峰发生了突变,表明晶体由方解石-Ⅰ相转变为方解石-Ⅲ相中的的A型方解石;相变后矿物的拉曼特征峰显示了从矿物内部向边缘的过渡中,相变程度逐渐增大的趋势;该研究也体现了金刚石压腔结合拉曼光谱技术在定性分析矿物结构相变过程中原位测试的优势.  相似文献   

7.
本文对非静水压淬火的 C_(60)样品进行了拉曼光谱研究。在14.8GPa 以上,C_(60)的1468cm~(-1)特征峰的频率和线宽保持不变,这是 fullerite 相己转变成“透明相”的拉曼光谱证据。在32GPa 以上,原 C_(60)的散射峰全部消失,只观察到两个新的弥散的弱散射峰。表明 C_(60)原子团簇已倒塌或严重畸变。  相似文献   

8.
β—BaB2O4晶体高压相变的拉曼光谱研究   总被引:2,自引:0,他引:2  
  相似文献   

9.
在室温条件下,利用金刚石对顶砧高压技术对叠氮化钠进行了原位高压拉曼光谱研究,采用红宝石荧光压标测压,实验的最高压力为37.7GPa。实验压力范围内拉曼光谱随压力增加发生了丰富的变化。由于多处拉曼峰的出现和消失并伴随频移有拐点,我们判断叠氮化钠在0~0.4GPa时发生了第一次结构相变,在相变过程中叠氮根的天平振动模式(Eg)出现了振动模式分裂为Ag和Bg,并且伴随着叠氮根离子之间的电荷转移。随着压力继续增加,在14.1GPa和27.3GPa分别发生了第二次和第三次结构相变。压致相变的路径为β-NaN_3→α-NaN_3→γ-NaN_3→δ-NaN_3。我们的拉曼散射研究,证实了此前的XRD研究。此外,结合计算,我们对常压下β-NaN_3的拉曼振动进行了指认。  相似文献   

10.
利用原位高压拉曼散射的方法, 在6.0 GPa及3.0 GPa分别观察到锆石型化合物CaCrO4与YCrO4压力诱导的晶体结构相变。卸压后的拉曼光谱表明了结构相变的不可逆性。并且, 通过比较与实验的方法, 高压新相被确认为白钨矿相。在锆石-白钨矿相变中, 晶体对称性由I41/amd (No. 141, Z=4)降低为I41/a (No. 88, Z=4)。  相似文献   

11.
Polarized Raman spectra of a single crystal of gadolinium molybdate [Gd2(MoO4)3] were obtained between 1 atm and 7 GPa. Using a mixture of alcohols as the pressure‐transmitting medium, YY, ZZ, XY components of scattering matrices were measured. The ZZ spectra were also obtained in argon. Five phase transitions and amorphization were identified. The first and second transitions are reversible, while amorphization is not. In alcohol, amorphization is observed above 6.5 GPa. With argon as the pressure‐transmitting medium, amorphization is progressive and begins above 3 GPa. The spectral changes with pressure affect the high wavenumber bands attributed to symmetric and antisymmetric MoO4 stretching modes as well as the very low wavenumber modes such as librations of the tetrahedra. This means that both short‐range and long‐range organizations of the tetrahedra are involved in these phase transitions. The amorphization mechanism and its dependence on the pressure‐transmitting medium are discussed, and the steric hindrance between polyhedra is believed to be the most relevant mechanism. The TO and LO low wavenumber modes of A1 symmetry, observed in the Y(ZZ)Y and Z(YY)Z geometries, respectively, below 50 cm−1, soften continuously through the first three phases when increasing pressure. The strong A2 mode observed in the Z(XY)Z spectra exhibits the same anomalous behavior by decreasing from 53 to 46 cm−1 at 2 GPa. The softening of these modes is related to the orientation change of tetrahedra observed by ab initio calculations when the volume of the cell is decreased. These orientation changes can explain the wavenumber decrease of the Mo O stretching modes above 2 GPa, which indicates an increase of Mo coordination. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

12.
ABSTRACT

The ferroelastic phase transitions in KFe(MoO4)2 have been studied by means of polarized light microscopy. The crystal undergoes a sequence of ferroelastic phase transitions. It has been found that the second transition consists of two transitions separated by the temperature interval of about 0.4 K. Both these transitions are of the first order and are evidenced through a phase front passing, without the domain structure rebuilding. The disposition of optical indicatrix axes ng, nm has been established, and the birefringence has been measured in the plane (0001) in the temperature range covering all ferroelastic phases. From temperature studies of the morphic birefringence, a critical exponent of the order parameter has been estimated.  相似文献   

13.
A Jayaraman  S K Sharma  S Y Wang 《Pramana》1993,40(5):357-365
High pressure Raman spectroscopic studies on Gd2(MoO4)3(GMO) have been carried out at ambient temperature in the diamond cell to 10 GPa hydrostatic pressure. These experiments have revealed pressure-induced phase transitions in GMO near 2 GPa and 6.0 GPa. The first transition is from Pba2(β′) phase to another undetermined crystalline phase, designated as phase II, and the second transition is to an amorphized state. On releasing pressure there is a partial reversion to the crystalline state. The Raman data indicate that the amorphization is due to disordering of the MoO4 tetrahedral units. Further, it is inferred from the nature of the Raman bands in the amorphized material that the Mo-O bond lengths and bond angles have a range of values, instead of a few set values. The results of the present study as well as previous high pressure-high temperature quenching experiments strongly support that pressure-induced amorphization in GMO is a consequence of the kinetically impededβ toα phase transition. The system in frustration becomes disordered. The rare earth trimolybdates crystallizing in theβ′ structure are all expected to undergo similar pressure-induced amorphization.  相似文献   

14.
The temperature dependences of the heat capacity, the unit cell parameter, and the permittivity for the (NH4)3MoO3F3 cryolite (space group Fm $ \overline 3 The temperature dependences of the heat capacity, the unit cell parameter, and the permittivity for the (NH4)3MoO3F3 cryolite (space group Fm m) are investigated. It is revealed that the compound undergoes ferroelectric and ferroelastic structural phase transitions at temperatures of 297 and 205 K, respectively. The mechanism of structural distortions is discussed in terms of the entropy parameters, pressure-temperature phase diagrams, and electron density maps for critical atoms. An analysis is made of the influence of the cation size and shape on the phase transitions in oxyfluorides of the general formula A 2 AMO3 (A,A′ = NH4, K; M = Mo, W). Original Russian Text ? I.N. Flerov, V.D. Fokina, A.F. Bovina, E.V. Bogdanov, M.S. Molokeev, A.G. Kocharova, E.I. Pogorel’tsev, N.M. Laptash, 2008, published in Fizika Tverdogo Tela, 2008, Vol. 50, No. 3, pp. 497–506.  相似文献   

15.
Raman spectra of Rb2KTiOF5 crystal were obtained and analyzed in the temperature range from 77 to 297 K and under hydrostatic pressure up to 4.2 GPa (at T = 295 K). The experimental results were compared with quantum‐chemical simulation of TiOF5 pseudo‐octahedron. To interpret effects of lattice ordering, phonon spectra of several ordered phases of Rb2KTiOF5 were calculated within ab initio generalized Gordon–Kim model, and ordering of TiOF5 molecular groups were simulated within Monte Carlo approach. The spectra exhibited orientation disordering in the cubic phase under ambient conditions. Cooling below the phase transition temperature (215 K) leads to partial ordering of the structure. The isotropic perovskite‐like phase was found to undergo first‐order transition into a low‐symmetry anisotropic phase at about 1 GPa. Further compression up to 4.1 GPa did not show any effects associated with phase transitions. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

16.
(NH4)2MoO2F4 single crystals were grown and studied using polarization-optical methods, and the birefringence was measured in the temperature range 90–350 K. The following sequence of phase transitions is revealed: G 0 ? G 1 ? G 2. It is established that the phase transition at T 01 ≈ 267 K is of the first order and exhibits thermal hysteresis δT 01 ≈ 0.6 K. A weak anomaly is found in Δn(T) at T 02 ≈ 180 K. The crystals are shown to retain the orthorhombic symmetry during the phase transitions.  相似文献   

17.
The mechanism of the ferroelectric transition of pure and rubidium-doped ammonium sulfate is investigated by means of Raman, Brillouin and dielectric measurements. The study contributes to spectroscopic evidences of temperature anomalies of lattice vibrations in the paraelectric and ferroelectric range. The different behaviour of rubidium-doped crystals with respect to their dielectric and elastic properties at the transition is interpreted as an indication that different order parameters might become active in this first order transformation.  相似文献   

18.
High pressure behaviour of FePO4 in berlinite form has been investigated up to 10 GPa using vibrational Raman spectroscopy and energy dispersive x-ray diffraction. Combination of these techniques along with studies on pressure quenched samples reveal structural transitions in this material from its room pressure trigonal phase to a disordered and a crystalline phase near 3±0.5 GPa. The latter is the Cmcm phase which is the equilibrium structure at high pressures. These high pressure phases do not revert back to its initial structure after release of pressure. Irreversibility of these transformations indicates that FeO4 tetrahedra do not regain their initial coordination. These high pressure transitions can be rationalized in terms of the three level free energy diagram for such systems.  相似文献   

19.
The mode assignment of the cubic phase of anhydrous Na2MoO4 was carried out on the basis of lattice dynamic calculation using the classical rigid‐ion model. Temperature‐dependent studies indicate that this crystal remains in the cubic structure in the 15–773 K range and undergoes a phase transition at around 783 K. The behavior of the Raman modes indicates that this transition is strongly first‐order in nature and the phase above 773 K may have an orthorhombic symmetry. This transition is connected with tilting and/or rotations of the MoO4 tetrahedra, which lead to a disorder at the MoO4 sites. Our results give also evidence that the Mo O bond lengths decrease in the high‐temperature phase. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

20.
The inelastic light scattering spectra of the europium chalcogenides are analyzed in terms of a one phonon-one spin Raman process. Calculations are presented for the temperature dependence of the integrated intensity of the “spin-disorder” spectrum of EuS and compared with experiment. The observed temperature dependence of the Raman spectrum of EuSe in the two-sublattice antiferromagnetic phase is presented and examined in terms of the one phonon-one spin mechanism. Experiments are suggested in which the Raman spectra can be used to measure the magnetic field dependence of the order parameter exponent β in EuTe.  相似文献   

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