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1.
本文对PbI2合成反应体系的反应焓变,反应熵增,Gibbs自由能变化和反应平衡常数进行了理论计算,从热力学角度论证了选取PbI2熔点(678K)以上的723K作为体系合成反应控制温度的可行性.在723K的控温工艺下,采用两温区气相输运方法合成出高纯、单相的PbI2多晶材料,XRD分析结果表明符合热力学计算结果的控温工艺能有效地应用于PbI2多晶合成.  相似文献   

2.
采用固相合成和液相合成两种方法成功制备了Ca9Y0.5La0.5(VO4)7晶体的多晶原料,并采用提拉法生长了尺寸分别为30 mm×33 mm(固相合成多晶原料)和20 mm×27 mm(液相合成多晶原料)的Ca9Y0.5La0.5(VO4)7晶体。测试了该晶体在紫外、可见和近红外区域的透过率,采用Kurtz法测试了晶体的粉末倍频效应。结果表明,采用液相合成原料生长的晶体透过率大于采用固相合成原料生长的晶体约10%。前者粉末倍频效应约为KDP的1.8倍,后者约为KDP的2.5倍。晶体化学腐蚀实验表明采用液相合成原料生长的晶体具有更少的缺陷。采用液相合成方法制备多晶原料有利于提高晶体的光学质量。  相似文献   

3.
化学配比对CdSe单晶体的性能有较大的影响.本文根据相平衡原理,利用热力学分析方法,分析了CdSe单晶体的气相生长过程,阐明了控制化学配比的原理,指出只有在固-液-气三相平衡或接近三相平衡的条件下,才能生长出符合化学配比的CdSe单晶体;同时还指出利用符合化学配比的CdSe多晶原料,在1120~1130℃可以生长出符合化学配比的CdSe单晶体.  相似文献   

4.
硒化镉(CdSe)是一种重要的Ⅱ-Ⅵ族半导体材料,在核辐射探测、非线性频率转换等方面都有着重要的应用.高纯原料是生长优质CdSe单晶,实现上述应用的基础,但目前合成方法存在效率低、纯度不高等缺点.为此实验室对传统高温元素合成法进行优化,利用理论计算的反应温度点为指导,辅以外部加压,控制内外压差,有效实现原料的批量、安全合成,单次可合成200 g,经粉末衍射(XRD)、综合热分析(TG/DTA)、等离子发射光谱仪(ICP)等测试,合成的原料质量较好,能生长出较大尺寸单晶.文中对合成过程可能的纯度影响因素及控制措施也进行了相应讨论.  相似文献   

5.
采用固-液两相混合,使NdO3、Y2O3和V2O5在近常温条件下初步合成Nd:YVO4多晶原料,降低固相合成反应温度,减少V2O5在多晶原料制备过程中的挥发.讨论了a方向Nd:YVO4单晶生长条件,采用提拉法,以(100)方向进行单晶生长,得到一系列掺杂浓度的Nd:YVO4单晶.  相似文献   

6.
正钒酸钙晶体原料的合成与生长   总被引:5,自引:0,他引:5  
本文通过固相合成方法直接合成正钒酸钙晶体原料.并用红外光谱、X射线多晶粉末衍射对所合成的原料进行表征.结果表明,固相合成法可获得纯度较高的正钒酸钙晶体原料.使用该方法合成的原料采用Czochralski高温提拉法生长出φ20mm×25mm的Ca3(VO4)2单晶.  相似文献   

7.
钒酸钇(Nd3+:YVO4;YVO4)晶体的原料合成   总被引:9,自引:4,他引:5  
本文介绍了钒酸钇(Nd3+:YVO4;YVO4)剩料最多的固相和液相合成方法.使用该法合成的原料用提拉法生长出φ30×40mm~φ35×40mm的优质大尺寸单晶.剩料最多可以重复使用10~15次,仍能生长出优质晶体.  相似文献   

8.
采用固-液两相混合,使Nd2o3、Y2O3和V2O5在近常温条件下初步合成Nd:YVO4多晶原料,降低固相合成反应温度,减少V2O5在多晶原料制备过程中的挥发。讨论了α方向V单晶生长条件,采用提拉法,以(100)方向进行单晶生长,得到一系列掺杂浓度的Nd:YVO4单晶。  相似文献   

9.
采用固相合成及常压烧结的方法制备了CaCu3Ti4O12(CCTO)高介电常数陶瓷材料,采用XRD、SEM、LCR等测试手段对合成与烧结过程以及介电性能进行了研究.结果表明,在温度高于1000℃时,CaCO3、CuO和TiO2可完全反应生成CCTO;温度高于1150℃时,CCTO分解.CCTO合成粉体的适宜烧结温度为1100℃,烧结试样结晶完整,结构致密,1kHz频率下相对介电常数达1.5×104,介电损耗0.27.  相似文献   

10.
合成β-SiCw的催化剂熔球机理研究   总被引:2,自引:0,他引:2  
本文用扫描电镜(SEM)研究了合成β-SiCw的反应过程和晶须的生长机理.通过对催化剂熔球的元素含量分析,发现β-SiCw的形成过程属气-液-固(VLS)三相反应过程,反应体系中含硅、碳的物质熔解在催化剂熔球中反应生成SiC,SiC在催化剂熔球的定向修正作用下沿(111)面结晶形成β-SiCw.用此方法合成β-SiCw反应速度快,晶须质量好,晶须生成率高.  相似文献   

11.
12.
Triethyl ammonium Salt of O,O′-bis(p-tolyl)dithiophosphate and O,O′-bis(m-tolyl)dithiophosphate have been obtained by reaction of p- and m-cresol, respectively with P2S5 in toluene and have been characterized by elemental analysis, IR, 1H and 31P NMR spectroscopy. The molecular structure of O,O′-bis(p-tolyl)dithiophosphate has been determined. Crystal data: [Et3NH]+[(4-MeC6H4O)2PS2]: Monoclinic, P21/c, a=15.2441(9) ?, b=10.415(2) ?, c=3.9726(9) ?, β=91.709(7)°, V=2217.5(1) ?−3, Z=4.Supplementary materials Additional material available from the Cambridge Crystallographic Data Centre (CCDC no. 600927 for [Et3NH]+[(4-MeC6H4O)2PS2] comprises the final atomic coordinates for all atoms, thermal parameters, and a complete listing of bond distances and angles. Copies of this information may be obtained free of charge on application to The Director, 12 Union Road, Cambridge CB2 2EZ, UK (fax: +44-1223-336033; email: deposit@ccdc.cam.ac.uk or www:http://www.ccdc.cam.ac.uk).  相似文献   

13.
P. Ganesh  M. Widom 《Journal of Non》2011,357(2):442-445
We perform first-principles coexistence simulations of the low-density and the high-density phases of supercooled liquid silicon and find a negative slope for the coexisting line in the temperature-pressure plane. Electron density maps and electron-localization function plots of the two phases of silicon show marked differences. The calculated differences suggest more localized electrons in the low-density liquid compared to the high-density liquid, coming from an increased population of covalent bonds, which further explain the calculated negative slope in the two phase coexistence regime. This is consistent with the presence of a pseudo-gap in low-density liquid silicon, absent in the high-density liquid which shows a metallic behavior.  相似文献   

14.
Structures of both thecis andtrans isomers of dithiahexahydro[3.3]metacyclophane, ?C6H4?CH2SCH2?C6H10?CH2SCH2?, have been determined, wherecis andtrans refer to the attachments to the cyclohexane ring. Thecis form crystallizes in the monoclinic space groupP21/c witha=8.4299(11)Å,b=21.772(2)Å,c=8.9724(13)Å, β=116.574(11)o, andZ=4. Thetrans isomer packs into the monoclinic space groupP21 witha=8.159(16)Å,b=10.185(5)Å,c=9.558(2)Å, β=112.435(18)o, andZ=2. The cyclohexane ring of thecis isomer is in the chair conformation, while the cyclohexane of thetrans isomer is found in a twisted boat conformation.  相似文献   

15.
以表面活性剂CTAB和SDBS为化学添加剂,采用化学共沉淀法对碳酸锶晶体的生长形态进行调控,成功地制备出了实心的树枝状和花瓣为空心的花状碳酸锶粉体,并用X射线衍射(XRD)、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)等分析手段对样品进行了表征;最后重点对化学添加剂可能产生的影响机理进行了初步的探讨.结果表明,CTAB和SDBS在晶体生长的过程中能起到显著的影响作用,两者对粒子分散性能的作用效果相反,而且后者对晶体(013)和(213)晶面表面能降低的贡献明显大于前者.  相似文献   

16.
The structure of Zn4Na(OH)6SO4Cl·6H2O, a secondary mineral from Hettstedt, Germany, was determined by single-crystal X-ray diffraction. The crystals are hexagonal,a=8.413(8),c=13.095(24) Å, space group $P\bar 3$ , Z=2. The structure was refined to R=0.0554 and Rw=0.0903 for 970 reflections with I≥3σ(I). The structure can be described as zinc hydroxide layers perpendicular toc, from which sulfates and chlorides extend. The layers are held together by a system of hydrogen bonds involving hexaaquo Na+ ions which occupy the interlayer space.  相似文献   

17.
Abstract  The title compound, C18H18BrN3O3S, a derivative of 1,3,4-oxadiazole, crystallizes in the triclinic space group P-1 with unit cell parameters a = 6.8731(3), b = 8.9994(4), c = 15.7099(6) ?, α = 92.779(3)°, β = 130.575(3)°, γ = 107.868(4)°, Z = 2. The dihedral angle between the mean planes of the planar naphthyl and morpholine (chair) rings with the planar oxadiazol ring is 50.1(8) and 76.8(6)°, respectively. The planar naphthyl ring is twisted 52.2(5)° with the mean plane of the morpholine ring. A group of four intermolecular close contacts are observed between a bromine atom and hydrogen atoms from the closely packed naphthyl, morpholine and oxy–methyl groups in the unit cell. These molecular interactions in concert with an additional series of π–π stacking interactions that occur between the center of gravity of the two 6-membered rings of the naphthalene group influence the twist angles of each of these three groups. A MOPAC AM1 calculation of the conformation energy of the crystal structure [226.0128(9) kcal] compared to that of the minimum energy structure after geometry optimization [29.9744(1) kcal] reveals a significantly reduced value. The twist angles of the three groups above also change after the AM1 calculation giving support to the influence of both intermolecular C–H···Br short-range interactions and Cg π–π stacking interactions on these angles which therefore play a role in stabilizing crystal packing. Graphical Abstract  Crystal structure of 5-{[(6-bromonaphthalen-2-yl)oxy]methyl}-3-(morpholin-4-ylmethyl)-1,3,4-oxadiazole-2(3H)-thione, C18H18BrN3O3S, is reported and its geometric and packing parameters described and compared to a MOPAC computational calculation. Electronic supplementary material  The online version of this article (doi:) contains supplementary material, which is available to authorized users.  相似文献   

18.
Irisolidone (5,7-dihydroxy-6,4′-dimethoxyisoflavone) was isolated from the flowers of Pueraia lobata and its crystal structure was examined by X-ray single crystal diffraction. The crystal structure of irisolidone is monoclinic, space group P21/c with a = 15.491(9) ?, b = 7.895(4) ?, c = 13.321(7) ?, β = 110.546(9)° and Z = 4. Hydrogen bonding and aromatic ππ stacking assemble the title compound into a three-dimensional networking structure.  相似文献   

19.
The natural amino acid L-Spinacine (4,5,6,7-tetrahydro-1H-imidazo[4,5-c]pyridine-6-carboxylic acid) has been synthesized following a new pathway which gives a chemically and optically pure product with an excellent yield. The crystal structures of a synthetic intermediate, Nπ-hydroxymethyl-spinacine, and a spinacine derivative, Nα-methyl-spinaceamine, have been investigated through X-ray diffraction: Spi(πMeOH)·H2O, monoclinicP2 i,a=8.571(1),b=6.682(1),c=8.588(1) Å, and β=94.67(1)o. Spm(αMe)·2HCl·H2O, triclinicP l,a=7.492(4),b=10.799(3),c=7.040(2) Å, α=91.88(2), β=98.36(3) and γ=73.34(3)o. Spi(πMeOH) crystallizes with a water molecule and displays a zwitterionic character. The carboxylate group is in equatorial position and forms a short electrostatic interaction of 2.618(2) Å between one of its oxygens and the protonated nitrogen of the tetrahydropyridine ring. The crystal packing is assured by strong O?H???O, O?H???N, N?H???N intermolecular hydrogen bonds and C?H???O close contacts. The biprotonated compounds Spm(αMe) crystallizes with two Cl? anions and a water molecule. The positive charge on the imidazole ring is delocalized on the conjugated moiety N=C?N. The crystal is built up by clusters formed by two biprotonated Spm(αMe) molecules, four Cl? anions and two water molecules linked together by hydrogen bonds.  相似文献   

20.
    
The natural amino acid L-Spinacine (4,5,6,7-tetrahydro-1H-imidazo[4,5-c]pyridine-6-carboxylic acid) has been synthesized following a new pathway which gives a chemically and optically pure product with an excellent yield. The crystal structures of a synthetic intermediate, Nπ-hydroxymethyl-spinacine, and a spinacine derivative, Nα-methyl-spinaceamine, have been investigated through X-ray diffraction: Spi(πMeOH)·H2O, monoclinicP2 i,a=8.571(1),b=6.682(1),c=8.588(1) ?, and β=94.67(1)o. Spm(αMe)·2HCl·H2O, triclinicP l,a=7.492(4),b=10.799(3),c=7.040(2) ?, α=91.88(2), β=98.36(3) and γ=73.34(3)o. Spi(πMeOH) crystallizes with a water molecule and displays a zwitterionic character. The carboxylate group is in equatorial position and forms a short electrostatic interaction of 2.618(2) ? between one of its oxygens and the protonated nitrogen of the tetrahydropyridine ring. The crystal packing is assured by strong O−H−−−O, O−H−−−N, N−H−−−N intermolecular hydrogen bonds and C−H−−−O close contacts. The biprotonated compounds Spm(αMe) crystallizes with two Cl anions and a water molecule. The positive charge on the imidazole ring is delocalized on the conjugated moiety N=C−N. The crystal is built up by clusters formed by two biprotonated Spm(αMe) molecules, four Cl anions and two water molecules linked together by hydrogen bonds.  相似文献   

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