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1.
用X射线衍射法测定了配合物(NH4)2(15-crown-5)3[Cu(mnt)2](1)及(NH4)2(benze-15-crown-5)4[Cu(mnt)2] ∙0.5H2O(2)的晶体结构, 两种配合物单晶分别由不同结构的冠醚超分子阳离子与[Cu(mnt)2]2-阴离子组成, 配合物1呈三层夹心(triple-decker)双阳离子结构, 配合物2的阳离子为三明治二聚物结构. 两种配合物在X波段、室温下作了单晶电子顺磁共振(EPR)研究, 配合物1没有检测到超精细结构, 配合物2的EPR谱显示出Cu磁性核引起的超精细结构. 用适于求非同轴的g和A张量的最小二乘法拟合技术严格计算了g张量和A张量的主值及其主轴的方向余弦, 并计算了配合物2的Cu(Ⅱ)上的电子自旋密度分布, 结果与用密度泛函理论(DFT)计算的值吻合.  相似文献   

2.
本文合成了单羟基桥连的双铜(Ⅱ)大环穴醚配合物[Cu2(OH)(ClO4)(C16H38N6)](ClO4)2·CHCl3,并测定与讨论了它的晶体结构.晶体属于正交晶系,空间群为D24-P212121,晶胞参数:a=12.749(4)Å,b=14.361(3)Å,c=18.064(3)Å,V=3307.3(13)Å3,Z=4.分子结构中单羟基桥连两个二价铜离子,Cu-O平均键长为1.935(6)Å,Cu-OH-Cu键角为135.2(2)°;铜原子的几何构型为畸变四方锥,配体的底面为穴醚的二乙三胺亚基的三个氮原子和一个羟基桥氧原子;顶点位置为高氯酸根的氧原子,因为该原子同时配位于另一个铜原子,所以分子的双铜中心存在第二个氧桥,即较弱的高氯酸根桥;Cu-O(ClO3)距离分别为3.005(9)Å和2.806(8)Å.  相似文献   

3.
本文用紫外可见光谱、pH滴定等方法研究了配合物[(dien)Cu(imH)]1(ClO_4)_2、[(tren)Cu(imH))(ClO_4)_2中Cu-imH的配位和离解作用,得到了它们的稳定常数,并探索了共存配体的影响。  相似文献   

4.
标题化合物晶体属三斜晶系;空间群为P1;晶胞参数:a=8.182(2)Å,b=10.389(2)Å,c=16.261(5)Å,α=99.38(2)°,β=89.97(2)°,γ=113.18(2)°;Z=2,两个phen上的四个N原子和一个配位水中的O原子围绕中心体Cu原子形成一个畸变的三角双锥构型,配位水与阴离子ClO4-中的O原子形成氢键。  相似文献   

5.
本文利用高压法制备HFe2Co(CO)93-S),作为原料,经脱质子化作用,再分别与(PPh3)2Cu(NO3)和PPh3AuCl反应,将Ph3Cu-或Ph3Au-联接到原始簇合物的中心骨架上,使簇核扩大,得到了组成为(PPh3)2CuFe2Co(CO)83-S)和(PPh3)3AuFe2Co(CO)73-S)的化合物.文中对此两个新化合物进行了IR,UV,1H和31P NMR.元素分析、熔点测定等性质表征,并对(PPh3)2CuFe2Co(CO)73-S)进行了单晶X-射线衍射分析.两个化合物具有类似的中心骨架,在Fe2和Co原子三角形的上面和下面分别键联着Cu和S,或Au和S原子,构成了三角双锥结构.其中一个簇合物由二个三苯基膦和八个羰基配位,另一个则由三个三苯基膦和七个羰基配位.  相似文献   

6.
合成了含Mo(0)的三核化合物(Et4N)2[(CO)4Mo(μ-S)2Mo(μ-S)2Mo(CO)4](Ⅰ)和(Et4N)2[(CO)4Mo(μ-S)2W(μ-S)2Mo(CO)4](Ⅱ),测定了(Ⅰ)的晶体结构.Ⅰ属单斜晶系,空间群P2相似文献   

7.
用MoCl5和C6H5COOH(或CH3C6H4COOH)在氯苯溶液中反应,得到四钼簇合物Mo43-O)2O4Cl2-(OCOC6H5)6(或[Mo43-O)2O4Cl2(OCOC6H4CH3)6]·2C6H5Cl)晶体。用X射线单晶衍射法测定了簇合物的晶体结构,运用18电子规则及簇合物的晶体结构数据,得到金属Mo-Mo键键价为1,钼在簇合物中均呈+5价。进行了反应机理的探讨,簇合物中端基氧和桥基氧的存在来自于苯甲酸(对甲基苯甲酸),MoCl5和C6H5COOH(CH3C6H4COOH)作用时,首先生成钼的含氧配合物MoOCl3,然后生成双核钼配合物Mo22-O)2O2Cl2,进一步形成配合物。红外光谱、激光拉曼光谱和磁化率的测定证明了结构分析的结果。值得注意的是,固体表面光电压谱和固体光声光谱的测定,簇合物Mo43-O)2O4Cl2(OCOC6H5)6的表面光电压谱在~600nm处有一光致电荷分离谱带。  相似文献   

8.
合成了导电分子晶体(Me3NEt)[Pd(dmit)2]2和(NEt4)[Pd(dmit)2]2 , 测定了它们的晶体结构和电导-温度曲线. 在能带计算基础上解释了(Me3NEt)[Pd(dmit)2]2的室温电导率(δ = 58(Ω·cm)-1)高于(NEt4)[Pd(dmit)2]2 (δ = 2.2(Ω·cm)-1)的原因. (Me3NEt)[Pd(dmit)2]2属单斜晶系, P21/m空间群; (NEt4)[Pd(dmit)2]2 属三斜晶系, P 空间群. 两种晶体的导电组元皆为平面型配位阴离子[Pd(dmit)2]0.5-, 它们以面对面形式的二聚体 存在. 凭借肩并肩形式的S…S分子间相互作用, 二聚体进一步形成二[Pd(dmit)2]21-维导电分子层. 两种配合物的二维导电分子层的微小结构差异导致电导率一个数量级的差别. 变温电导测定还表明, 两种晶体皆为小能隙的半导体.  相似文献   

9.
利用FTIR-ATR(傅里叶变换红外-衰减全反射)原位光谱技术在分子水平上研究了ZnSe基底上Mg(NO3)2气溶胶颗粒的潮解和风化过程. 根据FTIR-ATR光谱的演变可知, Mg(NO3)2气溶胶在潮解过程中经历了复杂的相变: 相对湿度(relative humidity, RH)接近3%时, Mg(NO3)2气溶胶颗粒为无定型水合物; 稍微升高相对湿度, 无定型颗粒转化为Mg(NO3)2·nH2O(n≤5)晶体, 并且在其表面逐渐形成热力学稳定的Mg(NO3)2·6H2O晶体; 相对湿度达到Mg(NO3)2·6H2O的饱和点(53% RH)时, Mg(NO3)2·6H2O开始溶解, 同时, 内核Mg(NO3)2·nH2O(n≤5)晶体在其表面持续转化为Mg(NO3)2·6H2O晶体, 导致固态气溶胶颗粒全部潮解时的相对湿度延迟到76%. 风化过程中, Mg(NO3)2液滴随相对湿度的降低逐渐失水进入过饱和区域; 相对湿度降至5%以下时, 形成无定形颗粒. 在过饱和Mg(NO3)2液滴的FTIR-ATR光谱中, NO3-对称伸缩振动(v1- NO3-)的吸收强度明显增加, 是溶剂共享离子对, 甚至接触离子对持续形成的结果.  相似文献   

10.
在三重桥氧三核铬羧酸配合物的系列研究中,采用与铬的一元羧酸配合物类似的实验条件,以丙二酸为配体合成了不同构型的配合物[Cr(C3H2O4)(H2O)4)][Cr(C3H2O4)2(H2O)2]·4H2O,通过X射线衍射测定了其单晶结构,并对-COO的配位方式作了讨论,还研究了配合物的红外光谱、拉曼光谱、紫外可见光谱、质谱、磁化率等性质,探讨了性质与结构的关系,并由此论证了二元羧酸和铬形成的双齿螯合构型化合物的稳定性.  相似文献   

11.
合成了大环穴醚配体C_(16)H_(32)N_6。在SCN~-参与下, 进一步合成了大环穴醚配合物[Cu_2(SCN)_3(C_(16)H_(38)N_6)]_2(ClO_4)_2, 并用X射线单晶结构分析测定了其晶体结构。晶体属单斜空间群C_(2h)~4-P2/n, a=1.6274(8), b=0.8114(3), c=2.3199(10) nm, β=98.46(4)°, V=3.0301 nm, Z=2。晶体中的Cu(Ⅱ)的配位几何构型为畸变的四方锥。硫氰酸根有两种配位形式, 一种是以N端的单配位, 处于四方锥的底面; 另一种是以S端和N端的桥连配位, 处于四方锥的顶端, 桥连的硫氰酸根把大环穴醚双铜络合物联成一维无限链状。  相似文献   

12.
用湿化学法合成了25KTiOPO4-75SiO2透明纳米玻璃陶瓷。采用X射线衍射、场发射扫描电子显微镜和二次谐波发生对玻璃陶瓷物相及纳米结构进行了分析。透明凝胶块经过热处理后,从SiO2基玻璃中析出了粒径为~30 nm的KTiOPO4纳米晶体,形成了透明KTiOPO4@SiO2纳米玻璃陶瓷;凝胶粒子的烧结致密化消除了大量不规则介孔,但形成了少量30 nm的球状孔;这种相对致密的玻璃陶瓷在可见光波段的光学透射率为64%左右。根据纳米结构数据,利用瑞利散射模型分析了纳米结构对玻璃陶瓷透明性的影响,结果表明,KTiOPO4晶体与SiO2玻璃相折射率之差是降低致密纳米玻璃陶瓷透明性的主要因素。  相似文献   

13.
研究了Rh(PPh3)3Cl/二烷基咪唑六氟磷酸盐或烷基吡啶六氟磷酸盐催化三乙基氢硅烷与烯烃的硅氢加成反应. 实验结果表明, 二烷基咪唑六氟磷酸盐或烷基吡啶六氟磷酸盐的存在既有利于提高加成反应的转化率和β加成物的选择性, 又有利于反应结束后产物与催化剂的分离. C16PyPF6作为催化剂的载体, Rh(PPh3)3Cl催化苯乙烯与三乙基氢硅烷加成反应的转化率为95.7%, β加成物的选择性为87.8%, α加成物的选择性为0.001%, 脱氢加成产物的选择性为9.2%. 同时, 此催化剂重复使用7次以后仍具有较高的活性.  相似文献   

14.
Two solid-state coordination compounds of rare earth metals with glycin, [Gd4/3Y2/3(Gly)6(H2O)4](ClO4)6·5H2O and [ErY(Gly)6(H2O)4](ClO4)6·5H2O were synthesized. The low-temperature heat capacities of the two coordination compounds were measured with an adiabatic calorimeter over the temperature range from 78 to 376 K. [Gd4/3Y2/3(Gly)6(H2O)4](ClO4)6·5H2O melted at 342.90 K, while [ErY(Gly)6(H2O)4](ClO4)6·5H2O melted at 328.79 K. The molar enthalpy and entropy of fusion for the two coordination compounds were determined to be 18.48 kJ mol−1 and 53.9 J K−1 mol−1 for [Gd4/3Y2/3(Gly)6(H2O)4](ClO4)6·5H2O, 1.82 kJ mol−1 and 5.5 J K−1 mol−1 for [ErY(Gly)6(H2O)4](ClO4)6·5H2O, respectively. Thermal decompositions of the two coordination compounds were studied through the thermogravimetry (TG). Possible mechanisms of the decompositions are discussed.  相似文献   

15.
Alkali and alkaline earth metal perchlorates exhibit electrostatic catalysis in the activation of anhydrides for the acylation reaction. Perchlorates with higher values of the charge-size function of the metal ion exhibit better catalytic activity following the order Mg(ClO4)2>Ba(ClO4)2>LiClO4. Acylation of structurally diverse phenols, thiols, alcohols, and amines have been carried out with stoichiometric amounts of anhydride at room temperature under solvent free conditions in the presence of catalytic amount of Mg(ClO4)2. Sterically hindered and electron deficient phenols are efficiently acylated. Acylation with sterically hindered anhydrides such as iso-butyric, pivalic, and benzoic anhydrides are carried out with phenols and alcohols in excellent yields. Acid-sensitive alcohols are acylated in excellent yields without any competitive side reactions.  相似文献   

16.
Reaction of the N-(2-pyridyl)carbonylaniline ligand (L) with Cu(NO3)2, Cu(ClO4)2, Zn(ClO4)2, Ni(NO3)2 and PdCl2 gives complexes with stoichiometry [Cu(L)2(H2O)2](NO3)2, [Cu(L)2(H2O)2](ClO4)2, [Zn(L)2(H2O)2] (ClO4)2, [Ni(L)2(H2O)Cl](NO3) and PdLCl2. The new complexes were characterized by elemental analyses and infrared spectra. The crystal structures of [Cu(L)2(H2O)2](NO3)2, [Cu(L)2(H2O)2](ClO4)2, and [Zn(L)2(H2O)2](ClO4)2 were determined by X-ray crystallography. The cation complexes [M(L)2(H2O)2] contain copper(II) and zinc(II) with distorted octahedral geometry with two N-(2-pyridyl)carbonylaniline (L) ligands occupying the equatorial sites. The hexa-coordinated metal atoms are bonded to two pyridinic nitrogens, two carbonyl oxygens and two water molecules occupying the axial sites. Both the coordinated water molecules and uncoordinated amide NH groups of the N-(2-pyridyl)carbonylaniline (L) ligands are involved in hydrogen bonding, resulting in infinite hydrogen-bonded chains running in one and two-dimensions.  相似文献   

17.
DSC measurements were carried out for [Ni(H2O)6](ClO4)2 (sampleH) and [Ni(D2O)6](ClO4)2 (sampleD) in the temperature range 300–380 K. For both compounds two anomalies on the DSC curves were detected. The results for sampleH are compared to those previously obtained using adiabatic calorimetry method. For both compounds studied in this work the high-temperature transition appears at the same temperature while the low-temperature one is shifted towards higher temperatures in sampleD. Disorder connected with H2O or D2O groups is suggested in the intermediate phase between the low- and high-temperature transitions.  相似文献   

18.
Interaction energies between two similar plane parallel double layers for (NH4)2Fe(SO4)2 or (NH4)2Cu(SO4)2 type complex salt electrolytes at positive surface potential were expanded in a power series and accurate numeral results were given for 0.1 ≤ y e  < y 0 ≤ 20. The general expressions were given for the interaction energies of A ν +B ν′ +Cν? type complex salt electrolytes at y > 0. The interaction energies for simple salts NaCl, CaCl2, Na2SO4, FeCl3, Na3PO4, Mg3(PO4)2, Al2(SO4)3, and complex salts (NH4)2Fe(SO4)2 or (NH4)2Cu(SO4)2 at y 0 = 1 were compared. There was hardly difference between these simple salts and this complex salt for the interaction energies. The interaction energy for complex salt (NH4)2Fe(SO4)2 was close to that for simple salt Na3PO4.

Supplemental files are available for this article. Go to the publisher's online edition of the Journal of Dispersion Science and Technology to view the free supplemental file.  相似文献   

19.
A dinuclear copper(Ⅱ) complex[Cu2(TATP)2(L-Leu)2(CIO4)2]2·2H2Owas synthesized and characterized, where, TATP=1,4,8,9-tetraazatriphenylene, and L-Leu=L-leucinate. The complex was crystallized in the triclinic space group P1, with two independent molecules in a unit cell. Two Cu(Ⅱ) ions in each complex [Cu2(TATP)2(L-Leu)2(CIO4)2] molecule were found to be in different coordination geometries, i.e., Cu2 or Cu4 of a distorted square-pyramidal geometry coordinated with two nitrogens of TATP, the amino nitrogen and one carboxylate oxygen of L-Leu and one oxygen of perchlorate, and Cul or Cu3 with an octahedral geometry coordinated with the above stated similar coordinated atoms, and another carboxylate oxygen of L-Leu coordinating to Cu2 or Cu4. The complex can interact with CT-DNA by an intercalative mode and cleave pBR322 DNA in the presence of ascorbate.  相似文献   

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