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1.
硬度是一个复杂的物理量,用第一性原理难以描述,我们基于固体硬度等于单位面积上所有键对压头的抵抗力之和的观点,从化学键理论出发定义了物质的硬度.本文利用复杂晶体的化学键理论计算了立方氮化物高压相的化学键参数,结果表明这些氮化物具有高的共价成键特性.利用硬度的化学键理论预测了立方氮化物高压相的硬度,通过与实验值的比较说明了结果的合理性.  相似文献   

2.
激光晶体的化学键和折射率   总被引:1,自引:0,他引:1  
利用介电描述的化学键理论求得8种激光基质晶体的化学键参数和晶体的折射率,计算的折射率和实验测量值符合较好。  相似文献   

3.
采用密度泛函理论(DFT)和赝势方法,研究CdHg(SCN)4(CMTC)的晶体结构、电子结构和光学性质.计算结果表明:优化后的晶体晶格常数与实验值基本一致,CMTC晶体以-Cd-N=C=S-Hg-为链形成的无限三维网络结构具有较强的稳定性;能带结构具有明显的直接带隙结构,用LDA+U方法计算CMTC晶体带隙为3.223 eV,与实验值3.265 eV相接近;键合性质的计算显示S-C和C-N键具有明显的共价性,而Cd-N和Hg-S键具有明显的离子性.依据阴离子基团理论,计算了CMTC晶体的倍频系数,CMTC晶体倍频系数的计算值(d14=1.58~ 1.74 pm/V,d15=5.77~7.69 pm/V)与实验值(d14=1.4 ±0.6 pm/V,d15 =6.0 ±0.9 pm/V)基本一致,研究发现CMTC晶体的非线性光学效应主要来自于多面体Cd (NCS)4和Hg (SCN)4基团.  相似文献   

4.
采用Czochralski技术生长不同Li/Nb双掺杂Zr:Fe:LiNbO3晶体,测试了晶体的光学均匀性和抗光折变能力.Zr:Fe:LiNbO3晶体双折射梯度比Fe:LiNbO3晶体降低一个数量级,抗光折变能力比Fe:LiNbO3晶体提高一个数量级,发现Zr4 在LiNbO3中具有抗光折变能力.采用二波耦合光路测试不同Li/Nb的Zr:Fe:LiNbO3晶体的衍射效率、响应时间、擦除时间并计算了动态范围和灵敏度,Zr:Fe:LiNbO3晶体的响应速度,灵敏度和动态范围都比Fe:LiNbO3晶体高,它的全息存储性能优于Fe:LiNbO3晶体.  相似文献   

5.
稀土掺杂萤石卤化物在国民经济、国防建设等领域发挥着不可替代的作用。萤石卤化物特殊的晶体结构导致稀土离子团聚,目前针对稀土离子团聚的系统研究还比较少。本文以稀土掺杂萤石卤化物为研究对象,采用第一性原理计算系统研究了从稀土离子单体到高阶团簇的结构特征、演变规律、联系及其影响因素。研究发现,稀土离子单体中心1|0|0|11(C4v)和1|0|0|12(C3v)稳定性随离子半径变化而改变,且不同晶体的变化趋势不同,与晶格畸变分析结果一致。晶格畸变与库仑作用相互耦合决定了电荷补偿间隙卤离子的占位倾向性,即C4v和C3v中心的相对稳定性。此外,共价效应使得PbF2和SrCl2晶体单体中心结构及其稳定性与CaF2、SrF2和BaF2不同。研究还揭示了晶体离子性和晶胞尺寸对单体中心能量差斜率的影响。文中还研究了稀土离子高阶团簇的结构,其稳定性演变规律与单体中心相对...  相似文献   

6.
Ni(en)3[Ni(en)2Ag2(NCS)6]·H2O晶体的吸收光谱和EPR谱的研究   总被引:1,自引:1,他引:0  
采用半自洽场(semi-SCF) d轨道模型和点电荷模型,建立起了过渡金属离子晶体局域结构、吸收光谱与EPR谱之间的定量关系,应用高阶微扰的方法,引入平均共价因子N,统一的解释了ENST晶体中过渡金属Ni2+在D4h对称的伸长和压缩八面体时的吸收光谱、顺磁g因子和零场分裂D的值,其计算结果与实验发现较好的符合,同时本文还确定了实验中测得的零场分裂D的符号以及在实验中未测得的部分吸收光谱的值.  相似文献   

7.
复杂晶体硬度的理论和计算   总被引:1,自引:0,他引:1  
高发明 《人工晶体学报》2008,37(5):1136-1140
现有材料的硬度可用硬度计来测量.从理论上严格计算硬度值是一件困难的事情.但随着超硬材料理论设计的蓬勃发展,硬度的预测成为一个瓶颈问题.本文系统介绍了利用复杂晶体化学键理论计算晶体硬度的基本理论,以及关于纳米晶硬度的计算方法.利用第一性原理几何优化方法建立了新近合成的具有氧缺陷的四方BC2N相的晶体结构.利用硬度理论预测了它的硬度.结果表明该物质是一个超硬半导体材料.  相似文献   

8.
黄雅妮 《人工晶体学报》2012,41(6):1653-1656
本文采用基于密度泛函理论的第一性原理计算方法,系统研究了Mg(OH)2晶体的几何构型、能量及微观电子结构。结果显示:Mg(OH)2具有三角系晶体结构,其理论计算的晶胞参数包括晶格常数与原子坐标等均与实验值吻合;分解反应热的计算结果表明Mg(OH)2具有较高的热稳定性及良好的阻燃效果;电子结构分析表明Mg(OH)2晶体呈现绝缘体性质,在其晶体内部,Mg与OH间呈离子键作用,而O-H间则呈混合的共价-离子键作用,且O(2s)(2p)与H(s)轨道电子间的成键作用决定了Mg(OH)2晶体的稳定性。  相似文献   

9.
在LiNbO3晶体中掺进0.1wt?O2和0.03wt?2O3以Czochralski技术生长不同Li/Nb比(0.94、1.20、1.40)Ce:Fe:LiNbO3晶体,其中Li/Nb=1.40的Ce:Fe:LiNbO3晶体是化学计量比.测试了不同Li/Nb比Ce:Fe:LiNbO3晶体抗光损伤能力,得到随着Li/Nb比的增加,晶体的抗光损伤能力增加.研究了晶体抗光损伤能力增强的机理.随着Li/Nb比的增加,晶体的响应速度和光折变灵敏度增加.测试不同Li/Nb比Ce:Fe:LiNbO3晶体位相共轭效应,利用产生的位相共轭光波消除图像的位相共轭畸变.利用Li/Nb=1.40的Ce:Fe:LiNbO3晶体做记录介质,Li/Nb=1.20的Ce:Fe:LiNbO3晶体作位相共轭镜进行全息关联存储实验.实验结果表明,存储系统具有实时处理,成像质量好,信噪比高和可反复使用的优点.  相似文献   

10.
在KNSBN晶体中掺进CuO,采用硅钼棒作加热体,以Czochralski技术生长Cu:KNSBN晶体.以二波耦合光路,测试晶体的衍射效率和记录时间,计算折射率变化值Δn.Cu:KNSBN晶体的衍射效率,记录速度和折射率变化值皆高于Fe:LiNbO3晶体.尤其记录速度比Fe:LiNbO3晶体高一个数量级以上.测试Cu:KNSBN晶体位相共轭反射率R和自泵浦位相共轭反射率RC.Cu:KNSBN晶体的自泵浦位相共轭反射率RC值达到64;,是纯KNSBN晶体的二倍.以Cu:KNSBN晶体自泵浦位相共轭镜进行消畸变实验.实验结果表明:输出光波确系输入探测光波的位相共轭光波.  相似文献   

11.
The syntheses, properties, and structures of N-phenylmaleimidetriazole derivatives are described. Intermediates and by-products are also discussed. 1b. a = 43.997(7) Å, 5.7610(9) Å, 8.245(1) Å, = 99.339(4), C2/c; 2a. a = 13.646(4) Å, b = 7.744(2) Å, c = 10.612(3) Å, = 91.979(6), P21/c. 3a. a = 22.245(1) Å, b = 22.245(1) Å, 10.010(1) Å, P42/n. 3a. a = 11.727(2) Å, b = 14.075(3) Å, c = 16.080(3) Å, = 105.859(3), = 105.331(3), = 98.187(3), P-1. 3b. a = 8.561(3) Å, b = 14.755(5) Å, c = 22.771(7) Å, = 97.006(5), P21/c. 3c. a = 10.500(2) Å, b = 12.189(2) Å, c = 13.040(2) Å, = 109.091(3), = 106.089(3), = 101.022(3), P-1. 8a. a = 16.389(8) Å, b = 5.749(3) Å, c = 19.316(3) Å, = 97.467(9), P21/n. 8b. a = 5.822(2) Å, b = 10.114(3) Å, c = 16.705(4) Å, = 84.681(5), = 82.840(5), = 75.769(4), P-1. 9b. a = 11.251(1) Å, 13.335(3) Å, 13.376(3) Å, = 102.456(4), P21/n. 9c. a = 15.836(3) Å, b = 8.236(2) Å, c = 5.447(3) Å, = 92.551(3), P21/c. 10a. a = 13.177(2) Å, b = 14.597(2) Å, c = 5.5505(8) Å, = 110.979(2), Cc. 11a. a = 14.720(2) Å, b = 13.995(2) Å, c = 38.245(6) Å, = 94.430(3), P21/n. 12b. a = 15.067(5) Å, b = 20.378(6) Å, c = 8.669(5) Å, = 99.16(4), = 99.32(3), = 105.23(3), P-1. 13b. a = 8.2824(6) Å, b = 10.5245(7) Å, c = 15.518(1) Å, = 92.305(1), = 100.473(1), = 100.124(1), P-1. 15a. a = 15.357(3) Å, b = 7.778(2) Å, c = 22.957(2) Å, Pbca. 16b. a = 18.0384(4) Å, b = 12.474(3) Å, c = 20.078(5) Å, Pbca.  相似文献   

12.
Using sol-gel method, mesoporous and photoluminescent silica nanocomposites of soluble starch have been synthesized and characterized. Different ratios of H2O, TEOS and EtOH were used at fixed template (soluble starch) and catalyst (NH4OH) concentrations to obtain materials of different performances in terms of heavy metal binding from a solution which has been monitored using Cd(II) as representative divalent heavy metal ion. Optimum material was obtained when H2O, TEOS and EtOH were used in 14:1:2 ratio. This sample was not only an efficient metal ion adsorbent but also had an intense luminescence in ultra-violet region and potentially may be used in silicon-based UV-emitting devices. Metal binding by the material was further enhanced after calcination (at 800 °C in air) while its luminescence had a multipeak profile in UV-visible region. In a batch adsorption study, calcined hybrid composite (0.25 g/L) could remove 98.5% Cd(II) from 100 mg/L Cd(II) solution in 2 h. The chemical, structural and textural characteristics of the synthesized materials have been investigated using Fourier Transform Infrared Spectroscopy (FTIR), X-rays Diffraction (XRD), Thermal Analysis (TGA/DTA), Photoluminescence (PL), Brunauer-Emmett-Teller Analysis (BET) and Scanning Electron Microscopy (SEM).  相似文献   

13.
本文研究了压电、铁电晶体中负离子配位多面体的结晶方位与形变,提出了压电晶体中同一种负离子配位多面体的结晶方位是一致的.在铁电晶体中,负离子配位多面体发生形变,伴随着晶体发生顺电-铁电相变,并从这一基本过程出发,对铁电体相变的形成机理进行了讨论.  相似文献   

14.
A series of X-ray diffraction experiments were performed for the first time to study stress-induced biocrystallization (structural response to stress) in the bacteria E. coli, the spore-forming bacteria Bacillus cereus, and in cells and spores of the mycelial fungus Umbelopsis ramanniana. High-intensity areas with spacings of 90 and 44 Å are indicative of a periodically ordered arrangement (most likely nanocrystalline) of the bacterial nucleoid. For the starved bacteria Bacillus cereus, a peak at a spacing of 45 Å is also assigned to nanocrystalline complexes of DNA with the Dps protein. The spores of the fungus Umbelopsis ramanniana VKM F-582, as well as the spores of Bacillus cereus, form ordered arrays of DNA molecules with DNA-condensing acid-soluble proteins SASPs. Starved dehydrated mycelial cells of the fungus Umbelopsis ramanniana form ordered structures with spacings from 27 to 55 Å. A series of peaks reflect the formation of a number of ordered protein arrays, apparently with DNA, with continuously varying characteristic interplanar spacings.  相似文献   

15.
By means of the reduction of Pb(II) and Se(IV) with hydrazine, oval monodispersed PbSe nanoparticles characterized by sizes ~100 nm and the cubic symmetry were obtained. Their compaction and sintering into quasi-ceramic state were performed. The samples were investigated by means of scanning electron microscopy, X-ray diffraction and FTIR spectroscopy. The results obtained are discussed.  相似文献   

16.
X-ray double crystal topography and high resolution diffractometry reveal very small deformations of the crystal lattice. However, this information can be directly obtained from the topographs or diffractometer curves only if certain conditions are fulfilled. Generally a deformation model has to be used, that is compared to the measurements by simulation calculations based on the dynamical diffraction theory. Trial and error allow to adapt the parameters of the model. An example illustrates that with a few parameters an automatic fit is possible.  相似文献   

17.
I. Kanazawa 《Journal of Non》1992,150(1-3):271-274
A theory is proposed to explain two-dimensional melting based on the gauge-invariant Lagrangian with spontaneous breaking (Higgs mechanism) or the SU(2) gauge field to U(1) symmetry. The first-order phase transition in two-dimensional melting may be strongly related to the asymptotic freedom-like interaction of the SU(2) gauge field in the case when the distance between each excited disk is shorter than a critical length, 2/ boxv;mboxv, near the melting temperature.  相似文献   

18.
N-trans-cinnamylidene-m-toluidine (1) C16H15N, and N-trans-cinnamylidene-m-chloroaniline (2) C15H12NCl form isomorphous crystals which are monoclinic, space group P2l/c, with unit cell dimensionsa=5.967(2),b=13.793(3),c=15.048(5) Å, =91.97(3)° anda=5.868(2),b=13.788(4),c=15.191(4) Å, =91.87(3)°, respectively. The single-crystal X-ray structure determinations of the title compounds revealtrans structures. Ring (A) C10–15 and ring (B) C1–6, are practically planar in both structures with dihedral angels of 61.3(3) and 63.6(2)°, respectively.1H nmr, u.v. and i.r. spectra are also reported.  相似文献   

19.
Abstract

Considerable variation in the conditions of electrochemical crystal growth of TMTSF2X (i.e., constant current versus constant potential, ambient versus inert atmosphere, etc.) and in the purity of the constituents (donor, electrolyte, solvent) does not significantly affect the unusual low-temperature properties of this class of materials. Our results suggest that the electrocrystallization procedure may be self-purifying by selecting for conducting crystal phases with constituents having specific oxidation potentials and solubility properties. However, doping solutions with structurally and chemically similar constituents (i.e., TMTTF, and IO? 4 in CIO? 4) leads to their incorporation in the crystal structure where they have a profound effect. Several mole percent of these dopants suppress superconductivity in the PF? 6 and CIO? 4 salts, and increase and broaden the metal-insulator phase transition.  相似文献   

20.
The hydrothermal treatment of different glasses of the composition 2 Na2O–8 CaO–10 Al2O3– 20 SiO2 and 2 BaO–2 Al2O3–6 SiO2 at one kilobar pressure in a temperature-range between 80 °C and 230 °C lead to the formation of the zeolite-minerals thomsonite (orthorhombic symmetry space-group Pbmn, a = 13.05 Å, b = 13.09 Å and c = 13.22 Å), and edingtonite (orthorhombic symmetry, space-group: P2,2,2, a = 9.55 Å, b = 9.67 Å and c = 6.52 Å). Under the chosen hydrothermal conditions both mineral phases are formed in the whole temperature interval.  相似文献   

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