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1.
cis-[Ru(dpq)2Cl2]·2H2O(dpq=二吡啶[3,2-d:2',3'-f]二氮萘)为原料与5,5'-二(1-(三乙胺)甲基)-2,2'-联吡啶阳离子(L)合成钌(Ⅱ)配合物[Ru(dpq)2L](PF6)4,并研究了该配合物与G-四链体DNA的作用:FRET实验表明,配合物对人端粒DNA h-telo具有选择性,其作用能力要强于同癌基因启动子区域的四链DNA,如c-myc和bcl2;CD光谱表明,在Na+和K+都不存在的情况下,配合物能诱导h-telo形成平行结构;此外,紫外和发射光谱都显示,配合物在K+溶液中与h-telo的作用力要大于在Na+溶液中的。  相似文献   

2.
通过无机碘盐(MIn)与cis-[Fe (CO)4I2]反应制备了5个盐类化合物fac-M[Fe (CO)3I3]n(Mn+=Na+(1),K+(2),Mg2+(3),Ca2+(4),NH4+(5)),探讨了阳离子Mn+fac-[Fe (CO)3I3]-阴离子的稳定性和细胞毒性的影响。通过傅里叶变换红外光谱(FTIR)监测,发现盐1~5在DMSO、D2O、生理盐水等介质中均能缓释CO,其释放动力学符合一级反应动力学模型;还发现溶液中碘离子的浓度和酸度对该阴离子的缓释CO性能也具有调节作用。通过噻唑蓝(MTT)实验评估了盐1~5对膀胱癌细胞的毒性,其24 h半抑制浓度(IC50)在25~43 μmol·L-1。与有机铵阳离子类的盐化合物相比,盐1~5在含水介质中的释放CO速率下降,毒性亦有下调。研究还发现这类fac-[Fe (CO)3I3]-阴离子在缓释CO的同时释放碘自由基,并能导致线粒体活性氧(ROS)水平、Parkin蛋白表达均上调。铁死亡抑制剂(Ferrostatin-1和Liproxstatin-1)试验结果表明这类化合物可能引发铁死亡通路并促进肿瘤细胞死亡。  相似文献   

3.
以2种配体去甲基斑蝥酸钠(Na2DCA=7-氧杂二环[2.2.1]庚烷-2,3-二甲酸钠)和咪唑(IM),分别与镍(Ⅱ)和镉(Ⅱ)的醋酸盐通过溶液法合成了2种配合物[Ni(IM)(DCA)(H2O)2]·2H2O(1),[Cd2(IM)4(DCA)2]·2H2O(2)。应用元素分析、热重分析、红外光谱及X-射线单晶衍射法对配合物的组成和结构进行了表征。配合物12的中心离子分别与咪唑的亚胺氮原子、去甲基斑蝥酸根的羧基氧原子和醚键氧原子配位,配位数均为6,分别为单核(1)和双核(2)配合物。通过紫外光谱法、荧光光谱法和粘度法研究了配合物与DNA的相互作用。结果表明,配合物能通过部分插入模式与DNA发生较强的结合作用(Kb:5.51×103(1)、1.01×103(2)L·mol-1)。同时,利用荧光光谱法研究了配合物与牛血清白蛋白(BSA)的相互作用。配合物能与BSA发生强烈的相互作用(KAM:1.91×105(1)和6.17×105(2)L·mol-1),结合位点数均为1。测试了配合物对人肝癌细胞(SMMC7721)和人乳腺癌(MCF-7)的体外抗增殖活性。结果显示,配合物对不同癌细胞具有选择性抑制作用。镍配合物(1)对SMMC7721的抗癌活性较去甲基斑蝥酸钠有明显提高。  相似文献   

4.
合成了一个新的Ru(II)配合物[Ru(bpy)2(H2iip)](ClO4)2•5H2O [bpy=2,2'-联吡啶, H2iip=2-吲哚基-咪唑并[4,5-ƒ][1,10]-邻菲罗啉]. 通过酸碱滴定发射光谱测定了该配合物的表观电离常数; 用紫外可见光谱、荧光光谱、稳态荧光淬灭、溴化乙锭竞争键合、粘度测量和DNA裂解实验研究了配合物与DNA的相互作用性质. 结果表明配合物以经典的插入模式与DNA键合, 键合常数Kb=(5.97±0.27)×105 mol-1•L (50 mmol/L NaCl).  相似文献   

5.
合成并表征了一个新的Ru(II)配合物[Ru(bpy)2(hedppc)](ClO4)2 {bpy=2,2'-联吡啶, hedppc=二联吡啶[3,2-a: 2',3'-c]吩嗪-11-羧酸(2-羟乙基)酯}. 通过紫外-可见吸收光谱、与溴化乙锭竞争实验、粘度测量和DNA裂解实验研究了配合物与小牛胸腺DNA的相互作用性质. 结果表明配合物以插入模式与DNA键合,键合常数Kb=(6.99±1.34)×106 mol-1•L (s=2.03±0.04)与母体配合物[Ru(bpy)2 (dppz)]2+相近,但光致发光和溶剂变色等光学性质与[Ru(bpy)2 (dppz)]2+有明显的差别.  相似文献   

6.
利用柔性酚胺类配体N,N'-二甲基-N,N'-(2-羟基-4,5-二甲基苄基)乙二胺(H2L)与Cu(Ⅱ)反应,合成了2个新的酚氧桥联多核Cu(Ⅱ)配合物[Cu3II(L)2(CH3OH)2](ClO4)2(1),[Cu3II(L)2(CuICl2)2](2)。配合物1~2中,3个Cu2+之间通过2个酚氧桥连接,形成线性三核结构。两边的铜离子分别被配体L2-上的N2O2螯合配位,轴向与甲醇分子的氧(配合物1)或[CuCl2]-的氯(配合物2)配位,形成四方锥配位构型。中间铜离子与两侧L2-上的4个酚氧原子以平面四边形配位。CuII-O-CuII键角为100.14°~101.79°。对配合物1~2进行变温磁化率测量表明,铜离子之间通过酚氧桥存在强的反铁磁耦合,磁耦合常数J分别为-277(9)cm-1(配合物1)和-299(3)cm-1(配合物2)(基于自旋哈密顿算符Ĥ=-2J(Ŝ1·Ŝ2+Ŝ2·Ŝ3)。J值与酚氧桥桥联键角有一定相关性,即Cu-O-Cu桥联键角越大,反铁磁耦合越强。  相似文献   

7.
以2,2'-二硫代二苯甲酸、2,2'-联吡啶、咪唑、硝酸锌和硝酸锰为原料,使用水热方法合成了配合物[Zn(EBLA)(2,2'-bipy)(H2O)](EBLA=2,2'-二苯甲酸硫醚)(2,2'-bipy=2,2'-联吡啶)(1),自然挥发法制备了配合物[Mn(EBSA)(im)2(H2O)]n(EBSA=2,2'-二硫代二苯甲酸)(im=咪唑)(2).利用元素分析、红外和热重分析对其进行了表征.利用X-射线单晶衍射对结构进行了测定,并研究了配合物1的荧光性质.配合物1中,2,2'-二苯甲酸硫醚是通过水热方法由2,2'-二硫代二苯甲酸发生原位反应制备,Zn2+离子是五配位的四角锥双核结构;配合物2中,Mn2+离子是六配位的变形八面体一维链状结构.配合物中存在氢键和π-π堆积等弱的分子间作用力.  相似文献   

8.
以共沉淀法与煅烧法联用,成功制备了一系列ZnAl2O4:xMn样品。通过扫描电镜和X射线粉末衍射测试研究了样品的形貌和物相特征,结果表明尖晶石结构的ZnAl2O4中[AlO6]的八面体位可以有效被Mn4+替代。通过荧光激发和发射光谱研究了样品的发光性能,发现Mn4+在ZnAl2O4体系中掺杂可以显示出明亮的红色发光(发射峰值位于680 nm处)。比较不同Mn4+浓度(Mn与Al的物质的量之比)掺杂样品的发光强度时发现,Mn4+最佳掺杂浓度为0.06%。通过德克斯特公式分析了发光强度与浓度关系,探究浓度猝灭机制,结果表明最邻近离子之间能量传递造成Mn4+浓度猝灭的发生。为了提高Mn4+的发光强度,选择了7种金属离子(Li+、Na+、K+、Ca2+、Sr2+、Sn2+和Ga3+)与Mn4+共掺杂进入ZnAl2O4基质中,其中效果较突出的为Li+和Ga3+,其共掺杂使Mn4+发光强度分别增强0.6倍和1倍。  相似文献   

9.
trans-[XRu(py)4(NO)]2+(X=Cl,Br)与等物质的量的NaN3在甲醇中反应后生成中间体trans-[XRu(py)4(CH3OH)]+,它再与过量的Na[N(CN)2]或K[C(CN)3]反应后生成单核配合物trans-XRu(py)3L(X=Cl,Br,L=N(CN)2-,C(CN)3-)。单核配合物XRu(py)4L与[X′Ru(py)4(CH3OH)]+进行分子组装,生成了一系列双核钌配合物trans-[X(py)4Ru(μ-L)Ru(py)4X′]+。用等物质的量的NOBF4或(NH4)2[Ce(NO3)6]氧化这些RuRu双核钌配合物,得到了一系列RuRu混合价配合物trans-[X(py)4Ru(μ-L)Ru(py)4X′]2+。N(CN)2-桥联的RuRu混合价配合物在近红外区存在中等强度的吸收,起源于混合价态间的电荷跃迁(Intervalence Charge Transfer,简称为IVCT),且其最大吸收波长随着溶剂极性的改变而发生变化,它们属于Class Ⅱ类型的混合价化合物;而C(CN)3-桥联的RuRu混合价配合物在近红外的吸收要强得多,且溶剂极性的改变对IVCT最大吸收波长基本无影响,它们属于介于价态定域与离域之间的混合价配合物。  相似文献   

10.
四氯合铂酸钾分别与邻、间、对磺基苯甲酸在乙腈和水中利用水热合成获得了3个铂的N-(1-亚氨基乙基)乙脒配合物:[Pt(NIA)2]·(2-sb)·2H2O(1),[Pt(NIA)2]·(3-sb)·3H2O(2)和[Pt(NIA)2]·(1,4-dsb)·2H2O(3)(NIA=N-(1-亚氨基乙基)乙脒,2-sb2-=2-磺基苯甲酸二价阴离子、3-sb2-=3-磺基苯甲酸二价阴离子、1,4-dsb2-=1,4-二磺基苯二价阴离子)。合成过程中发生了乙氰三聚以及4-sb2-转变为1,4-dsb2-的反应。对配合物进行了元素分析、红外、紫外、荧光、热重和粉末X射线衍射表征,并利用单晶X射线衍射测定了配合物的晶体结构。3个配合物为阳离子-阴离子物种,阳离子为[Pt(NIA)2]2+,中心金属离子四配位平面构型;阴离子与阳离子、水形成氢键,组成一个三维网络结构,但3个配合物的氢键模式不同。配合物在热稳定性、荧光性质上有一定差异。  相似文献   

11.
The phase relations in the cross-section of the K2W2O7-K2WO4-KPO3 containing 15 mol% Bi2O3 were undertaken using flux method. Crystallization fields of K6.5Bi2.5W4P6O34, K2Bi(PO4)(WO4), Bi2WO6, KBi(WO4)2 and their cocrystallization areas were identified. Novel phase K6.5Bi2.5W4P6O34 was characterized by single-crystal X-ray diffraction: sp. gr. P−1, a=9.4170(5), b=9.7166(4), c=17.6050(7) Å, α=90.052(5)°, β=103.880(5)° and γ=90.125(5)°. It has a layered structure, which contains {K7Bi5W8P12O68} layers stacked parallel to ab plane and sheets composed by potassium atoms separating these layers. Sandwich-like {K7Bi5W8P12O68} layers are assembled from [W2P2O13] and [BiPO4] building units, and are penetrated by tunnels with K/Bi atoms inside. FTIR-spectra of K2Bi(PO4)(WO4) and K6.5Bi2.5W4P6O34 were discussed on the basis of factor group theory.  相似文献   

12.
phase diagrams of KCl-KBO2-K2CO3, K2MoO4-KBO2-K2CO3, and K2WO4-KBO2-K2CO3 ternary systems were studied by a calculation-experimental method and differential thermal analysis (DTA). The coordinates of ternary eutectics were determined to be E 1: 622°C, 8.5 mol % KBO2, 56.5 mol % KCl, and 35 mol % K2CO3; E 2: 710°C, 23 mol % KBO2, 43 mol % K2CO3, and 34 mol % K2MoO4; E 3: 710°C, 23 mol % KBO2, 43 mol % K2CO3, and 34 mol % K2WO4. The specific heats of melting of the eutectics were determined.  相似文献   

13.
K3InF6 is synthesized by a sol-gel route starting from indium and potassium acetates dissolved in isopropanol in the stoichiometry 1:3, with trifluoroacetic acid as fluorinating agent. The crystal structures of the organic precursors were solved by X-ray diffraction methods on single crystals. Three organic compounds were isolated and identified: K2InC10O10H6F9, K3InC12O14H4F18 and K3InC12O12F18. The first one, deficient in potassium in comparison with the initial stoichiometry, is unstable. In its crystal structure, acetate as well as trifluoroacetate anions are coordinated to the indium atom. The two other precursors are obtained, respectively, by quick and slow evaporation of the solution. They correspond to the final organic compounds, which give K3InF6 by decomposition at high temperature. The crystal structure of K3InC12O14H4F18 is characterized by complex anions [In(CF3COO)4(OHx)2](5−2x)− and isolated [CF3COOH2−x](x−1)− molecules with x=2 or 1, surrounded by K+ cations. The crystal structure of K3InC12O12F18 is only constituted by complex anions [In(CF3COO)6]3− and K+ cations. For all these compounds, potassium cations ensure only the electroneutrality of the structure. IR spectra of K2InC10O10H6F9 and K3InC12O12F18 were also performed at room temperature on pulverized crystals.  相似文献   

14.
Solubility in the Na2Cr2O7-(NH4)2Cr2O7-K2Cr2O7-H2O four-component water-salt system at 25, 50, and 75°C was studied for the first time. Phase field boundaries for individual salts and potassium and ammonium dichromate solid solutions, monovariant lines, and invariant points were determined. Experimental data were used to optimize the looped isohydric process of potassium dichromate preparation involving additional salts.  相似文献   

15.
马修臻  胡斌 《化学通报》2018,81(10):939-943,938
本文用高精度数字式振荡管密度计测定了288K至318K温度范围内Li2SO4 + Na2SO4 + H2O和 Li2SO4 + K2SO4 + H2O三元体系的密度。混合溶液的离子强度范围从0.1到4.5 mol.kg–1,混合溶液中Na2SO4和K2SO4的离子强度分数为0.2,0.4,0.6和0.8。用密度实验值拟合得到了不同温度下Pitzer离子相互作用模型混合参数θV和 ψV,模型的计算值与实验值的偏差在±0.002 g.cm3以内。用Pitzer模型计算了不同离子强度下三元体系的混合体积。  相似文献   

16.
The phase diagrams of the NaBO2-NaCl-Na2CO3, NaBO2-Na2CO3-Na2MoO4, NaBO2- Na2CO3-Na2WO4, and NaBO2-NaCl-Na2WO4 ternary systems were studied by a calculation-experimental method and differential thermal analysis. The coordinates of ternary eutectics were determined: E 1: 612°C, 16 mol % NaBO2, 42 mol % NaCl, and 42 mol % Na2CO3; E 2: 568°C, 12 mol % NaBO2, 28 mol % Na2CO3, and 60 mol % Na2MoO4; E 3: 575°C, 12 mol % NaBO2, 32 mol % Na2CO3, and 56 mol % Na2WO4; E 4: 628°C, 8 mol % NaBO2, 20 mol % NaCl, and 72 mol % Na2WO4; and E 5: 655°C, 9 mol % NaBO2, 53 mol % NaCl, and 38 mol % Na2WO4.  相似文献   

17.
We have studied the preparation and crystallographic structure of three perovskite-type compounds: Sr3Cr2WO9, cubic, the lattice parameter of which is a = 7.812Å; Ca3Cr2WO9, tetragonal, the lattice parameters of which are a = 5.408 Å and c = 7.635Å; and Ba3Cr2WO9, hexagonal, the lattice parameters of which are a = 5.691 Å and c = 13.957Å. We have compared these three structures and shown the relationship between the dimensions of the alkaline-earth metal and the existence of the different structures.  相似文献   

18.
Two compounds of formula La7A3W4O30 (with A=Nb and Ta) were prepared by solid-state reaction at 1450 and 1490 °C. They crystallize in the rhombohedric space group R-3 (No. 148), with the hexagonal parameters: , and , . The structure of the materials was analyzed from X-ray, neutron and electronic diffraction. These oxides are isostructural of the reduced molybdenum compound La7Mo7O30, which are formed of perovskite rod along [111]. An order between (Nb, Ta) and W is observed.  相似文献   

19.
The structural, electronic, and vibrational characteristics and energies of the isolated polyoxide clusters B20O30, Al20O30, V20O50, Si20O30H20, and Si20O30F20 and their complexes with the H ion and ammonia complexes Al20O30 · nNH3 have been calculated by the density functional theory B3LYP method with different basis sets. The computation results show that the symmetric closo structure I h with oxygen bridges located above the centers of the faces of an empty [M20] dodecahedron is more favorable for V20O50, Si20O30H20, and Si20O30F20. For B20O30, the cage closo isomer is also more favorable than the other isomers, but its structure is severely distorted as compared to a dodecahedron and has a symmetry close to C 3 . For Al20O30, the I h structure corresponds to a high-lying local minimum of the potential energy surface. For Al20O30, a set of unusual puckshaped isomers of symmetry C i , with different numbers of four-coordinate atoms IVAl and three-coordinate atoms IIIO, was localized; these structures are more than 90 kcal/mol more favorable than the dodecahedron I h . The most favorable isomer of Al20O30 contains twelve four-coordinate atoms IVAl and four five-coordinate atoms VAl. The energies of dissociation of the most favorable M20O30 clusters into the M2O3 (C 2v ) and M4O6 (T d ) fragments and, in the case of Al20O30, also into the Al8O12 (O h ) and Al12O18 (D 3d ) fragments, have been estimated. The conclusion has been drawn that these clusters can, in principle, exist and can be experimentally detected in the isolated state. Analogous calculations have been performed for ammonia complexes Al20O30 · nNH3 with n varying from 1 to 20. The effect of solvation on the relative stability of the dodecahedral and puckshaped isomers of the Al20O30 cluster is observed. The isomers with ammonia molecules in their first coordination sphere become much closer to one another on the energy scale; however, the dodecahedron remains a considerably less favorable intermediate. Original Russian Text ? O.P. Charkin, N.M. Klimenko, D.O. Charkin, 2008, published in Zhurnal Neorganicheskoi Khimii, 2008, Vol. 53, No. 4, pp. 624–635.  相似文献   

20.
SnSbBiS4-SnS and SnSbBiS4-Sn2Sb6S11 sections were studied by physicochemical methods (DTA, X-ray powder diffraction, microstructure observation, and microhardness measurements). These sections were found to be eutectic quasi-binary sections of the SnS-Sb2S3-Bi2S3 ternary system. Solid solution regions based on the initial components were found on either side of the sections. Alloys in the solid solution region are p-type semiconductors.  相似文献   

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