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1.
环庚烷的高压拉曼光谱研究   总被引:1,自引:0,他引:1  
 利用金刚石对顶砧(DAC)装置产生高压,在室温下对环庚烷进行了高压原位拉曼光谱研究。实验的最高压力是17.00 GPa。研究结果表明,在实验的压力范围内,室温常压下为液态的环庚烷在0.53 GPa发生了液-固相变;在3.45~5.58 GPa压力区间,环庚烷的拉曼频移随压力变化的曲线和拉曼峰的半高宽随压力的变化曲线都出现了拐点,由此判断,环庚烷可能发生了固-固相变。  相似文献   

2.
 采用金刚石对顶砧高压装置,在室温下对正辛烷(C8H18)进行了原位高压拉曼光谱研究,实验的最高压力为13GPa。在实验的压力范围内,正辛烷的拉曼峰位随压力的升高均向高频移动,峰强逐渐减弱,峰形变宽。常态为液态的正辛烷在0.8 GPa时,拉曼频移随压力的变化曲线出现了拐点,发生了液-固相变;在6.8 GPa时,伴随着原拉曼峰的消失或劈裂,以及新拉曼峰的出现,此时正辛烷可能发生了固-固相变。该相变压力低于已有的低碳数正烃烷的压致相变结果。正烃烷的压致相变压力点,具有随着结构链长的增加,其相变压力降低的规律。  相似文献   

3.
在室温条件下, 利用金刚石对顶砧超高压实验技术, 对液态的正庚烷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20.78 GPa。实验中发现, 当压力达到1.2 GPa左右时, 原本透明的样品腔内有小晶粒形成, 此时测量的拉曼谱上发现有许多新的拉曼峰出现。因此, 我们判断正庚烷在此压力下发生了一次相变; 当压力增加到3 GPa左右时, 在92.42 cm-1和2913.6 cm-1处又出现了2个新的拉曼峰, 并且拉曼频移随压力变化的曲线出现拐点, 我们推测在此压力下正庚烷可能又发生第二次相变; 当压力高于14.5 GPa时, 正庚烷发生了第三次压致相变; 而当压力介于7.5~14.5 GPa之间正庚烷处于两相共存的状态。我们给出了液体正庚烷在高压下的相变序列为: 液相-旋转相Ⅲ-旋转相Ⅳ-结晶相。该研究结果为进一步理解和研究其他正烷烃在高压下的结构、物理和化学特性提供了理论基础。  相似文献   

4.
本文利用金刚石对顶砧高压技术,在0.1MPa~47.5GPa压力范围内对粒径为8nm的纳米CeO2进行了高压拉曼光谱研究。研究结果表明,常压下萤石结构的纳米CeO2(空间群Fm3m)在24.3GPa时开始发生萤石结构到PbCl2类型(空间群Pnam)的结构相变。这个相变为可逆相变,卸压至零压时样品恢复至萤石结构。  相似文献   

5.
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   

6.
在室温条件下,利用金刚石对顶砧高压技术,对叠氮化钡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10 GPa。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,我们判断叠氮化钡在3 GPa左右时发生了第一次结构相变;随着压力继续增加,在3.5~6.5 GPa范围内拉曼光谱仍不断变化,我们判断可能是相变或者是N=N=N键角和两个键长的非对称压缩导致的;压力继续增加,在8 GPa左右,多处新峰出现和峰的劈裂表明又发生了一次结构相变,并且判断叠氮化钡向着更复杂的结构转变。通过实验可以确定,实验压力范围内N=N=N离子并未被破坏。其实验结果有待高压同步辐射实验的进一步确认。  相似文献   

7.
王海阔  贺端威  许超  刘方明  邓佶睿  何飞  王永坤  寇自力 《物理学报》2013,62(18):180703-180703
通过分析二级6-8型大腔体静高压装置八面体压腔的受力状况, 研制了一种使用成本低、尺寸大且易于加工的多晶金刚石-硬质合金复合二级(末级)顶锤(压砧). 采用原位电阻测量观测Zr在高压下相变(α-ω, 7.96 GPa; ω-β, 34.5 GPa)的方法, 标定了由多晶金刚石-硬质合金复合末级压砧构建的5.5/1.5(传压介质边长/二级顶锤锤面边长, 单位: mm)组装的腔体压力. 实验表明, 自行研制的多晶金刚石-硬质合金复合末级压砧可使基于国产六面顶压机构架的二级加压系统的压力产生上限从约20 GPa提高到35 GPa以上, 拓展了国内大腔体静高压技术的压力产生范围. 应用这一技术, 我们期望经过末级压砧材料与压腔设计的进一步优化, 在基于国产六面顶压机的二级6-8 型大腔体静高压装置压腔中产生超过50 GPa的高压. 关键词: 二级6-8型大腔体静高压装置 多晶金刚石-硬质合金复合末级压砧 压力标定  相似文献   

8.
采用固相烧结法制备了纯度较高的钨酸锆(ZrW2O8)粉体,并利用金刚石对顶压砧(DAC)对其进行了原位高压同步辐射X射线衍射研究。结果表明:在常温下,压力0.27GPa附近,晶体的对称性降低,并发生α-ZrW2O8向γ-ZrW2O8晶体结构相变;压力3.81GPa附近,γ-ZrW2O8完全转变为非晶相。通过拟合得到α-ZrW2O8的体弹模量B=(40.0±3.8)GPa,γ-ZrW2O8的体弹模量B=(37.0±3.0)GPa。  相似文献   

9.
 采用金刚石压砧高压装置,研究了双钙钛矿结构化合物Sr2CrWO6在室温下、34.5 GPa压力内的同步辐射X射线衍射谱,发现在9.6 GPa的压力点样品的结构有所变化。结合室温下20 GPa内电阻和电容随压力的变化,证明样品在9 GPa附近发生了晶体结构相变,而在2~5 GPa的压力范围内样品发生了电子结构相变。  相似文献   

10.
王君龙  张林基  刘其军  陈元正  沈如  何竹  唐斌  刘秀茹 《物理学报》2017,66(16):166201-166201
锗化镁是一种窄带半导体,压力作用可以使锗化镁导带底与价带顶的能隙变小.本文基于第一性原理计算了锗化镁在高压下的能带结构以及反萤石相(常压稳定相)和反氯铅矿相(高压相)的焓值,发现在7.5 GPa时反萤石结构锗化镁导带底与价带顶的能隙闭合,预示着半导体相转变为金属相,计算结果还预测在11.0 GPa时锗化镁发生从反萤石结构到反氯铅矿结构的相变.实验研究方面,本文采用长条形压砧在连续加压条件下测量了锗化镁高压下的电阻变化,采用金刚石对顶压砧测量了锗化镁的高压原位拉曼光谱,发现在8.7 GPa锗化镁的电阻出现不连续变化,9.8 GPa以上锗化镁的拉曼振动峰消失.由于金属相的自由电子浓度高会阻碍激发光进入样品,进而引起拉曼振动峰消失,因此我们推测锗化镁在9.8 GPa转变为金属相.  相似文献   

11.
Single crystal Brillouin and Raman scattering measurements on NH3 in a diamond anvil cell have been performed under pressures up to 26 GPa at room temperature. The pressure dependencies of acoustic velocity, adiabatic elastic constants, and bulk moduli of ammonia from liquid to solid III and solid IV phase have been determined. All the nine elastic constants in orthorhombic structure phase IV were presented for the first time, each elastic constant grows monotonously with pressure and a crossover of the off‐diagonal moduli C12 and C13 was observed at around 12 GPa because of their different pressure derivative values. We also performed ab initio simulations to calculate the bulk elastic moduli for orthorhombic ammonia, the calculated bulk moduli agree well with experimental results. In Raman spectra the very weak bending modes ν2 and ν4 for orthorhombic ammonia are both observed at room temperature, a transition point near 12 GPa is also found from the pressure evolution of the Raman bands. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

12.
The high‐pressure behaviour of cordierite, a widespread ring aluminosilicate with channels incorporating fluid compounds (H2O, CO2), is characterized by the absence of phase transitions up to 2.5 GPa. However, the distortion of the ring tetrahedra observed previously at 2.3 GPa is supposed to introduce a phase transition at higher pressure, which has not been checked so far. This work presents a high‐pressure Raman spectroscopic study of natural cordierite compressed in water medium up to 4.7 GPa in a diamond anvil cell. At P > 4 GPa, a disordering of both the framework and intrachannel H2O subsystem is apparent from significant broadening of Raman peaks and the evolution of short‐range order parameters. This is followed by abrupt shifts of the framework and O–H stretching modes at about 4.5 GPa, indicating a first‐order phase transition. Its reversibility is seen from the recovery of the initial spectrum at P < 3 GPa. The shift amplitudes of different framework modes indicate the predominance of distortion over contraction of the framework polyhedra upon this transition. The disordering of the H2O subsystem in the high‐pressure phase is likely a consequence of distortion of the channel‐forming framework elements, which is supposed to be a driving force of this transition. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

13.
高压拉曼散射研究表明.CuGeO3,Li2GeO3和Li6Ge2O7三种晶体分别在7,12和11GPa压力下转变为非晶。在高于起始转变压力以上一定范围压致非晶是可逆的,CuGeO3,Li2GeO3和Li6Ge2O7压致非晶的不可逆转变压力分别为14.1,20和20GPa。压致非晶CuGeO3的重新晶化温度在600℃附近。锗酸及系列晶体的压致非晶化与它们的成份和结构有关,随着在这一系列晶体中Li2O含量的增加,压致非晶化的压力趋于减小。  相似文献   

14.
PZN的高压拉曼散射研究孟进芳黄亚彬莫育俊(河南大学物理系开封475001)RamanScateringofPZNunderHighPresureMengJinfang,HuangYabin,MoYujun(PhysicsDepartmentofH...  相似文献   

15.
The in situ high-pressure behavior of the semiconductor antimony trioxide(Sb_2O_s) is investigated by the Raman spectroscopy techniques and angle-dispersive synchrotron x-ray powder diffraction in a diamond anvil cell up to31.5 and 30.7 GPa,respectively.New peaks observed in the external lattice mode range in the Raman spectra at 13.5 GPa suggest that the structural phase transition occurs.The group mode(140 cm~(-1)) in Sb_2O_3 exhibits anomalous pressure dependence;that is,the frequency decreases gradually with the increasing pressure.High pressure synchrotron x-ray diffraction measurements at room temperature reveal that the transition from the orthorhombic structure to high-pressure new phase occurs at about 14.2 GPa,corresponding to the softening of the group optic mode(140 cm~(-1)).  相似文献   

16.
 本文分别使用4∶1的甲醇-乙醇混合溶液和固态氩做传压介质测量α-Bi2O3的高压拉曼光谱。实验结果表明,传压介质对样品的谱线频移速率及相变压力有明显的影响。通过对拉曼光谱的分析认定,α-Bi2O3在高压下可能经历了一次结构相变,在准静水压和非静水压条件下的相变压力分别为23.1 GPa和20.4 GPa。  相似文献   

17.
The first high pressure study of solid hydrazinium monochloride has been performed by in situ Raman spectroscopy and synchrotron X‐ray diffraction (XRD) experiments in diamond anvil cell (DAC) up to 39.5 and 24.6 GPa, respectively. The structure of phase I at room temperature is confirmed to be space group C2/c by the Raman spectral analysis and Rietveld refinement of the XRD pattern. A structural transition from phase I to II is observed at 7.3 GPa. Pressure‐induced position variation of hydrogen atoms in NH3+ unit during the phase transition is attributed to the formation of N―H…Cl hydrogen‐bonds, which play a vital role in the stability and subsequent structural changes of this high energetic material under pressure. This inference is proved from the abnormal pressure shifts and obvious Fermi resonance in NH stretching mode of N2H5+ ion in the Raman experiment. Finally, a further transition from phase II to III accompanied with a slight internal distortion in the N2H5+ ions occurs above 19.8 GPa, and phase III persists up to 39.5 GPa. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

18.
The polymorphism of cyclopentanol (C5H10O) has been investigated as a function of temperature at ambient pressure and as a function of hydrostatic pressures to 3.7?GPa at room temperature. Differential scanning calorimetry (DSC) and Raman spectra reveal that two plastic phases and two fully ordered crystalline phases are formed during cooling. High pressure Raman and infrared spectra show that cyclopentanol undergoes two-phase transformations. At around 0.6?GPa, the liquid cyclopentanol transforms to a solid plastic structure. On further compression to 1.9?GPa, one fully ordered crystalline phase is observed. Based on pieces of evidence such as peak splitting and emergence of new peaks, it can be concluded that the ordered crystalline structure has a lower symmetry. In addition, the decrease in the wavenumber of the O–H stretching modes at low temperature and high pressure suggests the ordered crystalline phases are characterized by the formation of hydrogen-bonded molecular chains.  相似文献   

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