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1.
在水热条件下,利用2,5-二甲基苯-1,4-二亚甲基二膦酸(H4L)与CoCl2·6H2O或NiSO4·6H2O反应得到2个同构的过渡金属有机膦酸化合物,[Co(H2O)4(H2L)]n1),[Ni(H2O)4(H2L)]n2),并用元素分析、红外光谱、粉末及单晶X-射线等方法对其进行了表征。晶体结构分析表明:化合物12都属于三斜晶系,空间群为P1,化合物1的晶胞参数为a=0.4970(2)nm,b=0.7113(3)nm,c=1.1778(5)nm,α=97.779(7)°,β=92.103(7)°,γ=107.217(6)°,V=0.3927(3)nm3,Z=2;化合物2的晶胞参数为a=0.49435(19)nm,b=0.7089(3)nm,c=1.1726(5)nm,α=97.919(6)°,β=92.130(6)°,γ=107.441(5)°,V=0.3870(3)nm3,Z=2。金属离子采取了八面体构型,6个配位氧原子分别来自2个反式构型的H2L配体和4个配位水分子。每1个金属离子与2个反式构型的H2L配体配位形成了一维线型链状结构。这2个化合物最终通过O-H…O氢键作用形成了三维结构。此外,对2个化合物的热稳定性也进行了研究。  相似文献   

2.
通过水热法合成了3个新型配位聚合物:[Cu(Hdppa)(H2O)]n1)、{[Cu2(dppa)(μ2-OH)(H2O)]·H2O}n2)和{[Mn3(dppa)2(H2O)4]·2H2O}n3),(H3dppa=3-(2,5-二羧基苯基)-吡啶羧酸),并对其进行了元素分析、红外光谱、粉末X射线衍射和热重分析表征。X射线单晶衍射分析结果表明:化合物1属于单斜晶系,P21/c空间群,a=1.371(2)nm,b=0.805(11)nm,c=1.266(19)nm,β=112.74(3)°,Z=4;化合物2属于三斜晶系,P1空间群,a=0.839(4)nm,b=1.039(5)nm,c=1.110(5)nm,α=98.31°,β=110.630(3)°,γ=111.90(3)°,Z=2;化合物3属于三斜晶系,P1空间群,a=0.881(6)nm,b=0.939(6)nm,c=1.038(7)nm,α=100.29°,β=97.990(10)°,γ=111.13(7)°,Z=1。化合物1以配体Hdppa2-桥联Cu(Ⅱ)形成一维链状结构;化合物23以配体dppa3-分别桥联Cu(Ⅱ)和Mn(Ⅱ)形成二维层状结构,并进一步通过氢键形成三维超分子结构。变温磁化率研究表明在化合物1和化合物2中存在较强的铁磁耦合作用,其磁交换常数分别为4.44和8.94 cm-1;而化合物3中Mn(Ⅱ)离子之间存在反铁磁相互作用。  相似文献   

3.
以柔性配体5,5’-二硫双(2-硝基苯甲酸)为主配体,与含氮辅助配体在水热条件下合成了2个Co(Ⅱ)配合物{[Co(dtb)(bpp)·H2O]}n1),{[Co(dtb)(phen)·2H2O]}n2)(H2dtb=5,5’-二硫双(2-硝基苯甲酸),phen=1,10-菲咯啉,bpp=1,3-二(4-吡啶)-丙烷),通过X-射线单晶衍射、X-射线粉末衍射、红外光谱、热重分析和元素分析方法对其进行表征。结构测试表明1为正交晶系,Pbca空间群,晶胞参数为a=1.0149(2)nm,b=2.2159(5)nm,c=2.5291(6)nm,V=5.688(2)nm3,Dc=1.564g·cm-3,Z=8。2为三斜晶系,P1空间群,晶胞参数为a=0.7401(3)nm,b=1.0742(4)nm,c=1.7837(6)nm,α=98.452(7)°,β=99.816(7)°,γ=98.979(7)°,V=1.3580(8)nm3,Dc=1.637g·cm-3,Z=2。化合物1为三维网络结构,并包含单股双轴假螺旋结构。配合物2为一维链状结构,相邻一维链之间通过氢键作用形成二维超分子网络结构。  相似文献   

4.
采用水热法合成了2个具有二维结构的吡啶羧酸类稀土配位聚合物{[Ln2(bpdc)3(H2O)2]·5H2O}n,(Ln=Nd(1),Eu(2),2,2’-Bipyridyl-3,3’-dicarboxylicacid)。单晶衍射分析显示1、2结构相似,均属于单斜晶系,P2/c空间群。1、2的晶胞参数分别为a=1.24100(19)nm,b=0.74835(59)nm,c=2.06050(20)nm,β=94.84(1)°;a=1.24100(19)nm,b=0.74301(20)nm,c=2.05250(30)nm,β=94.95(2)°。配合物是由之字形一维链构成的二维网络结构,其拓扑符号为{3^9;4^18;5}。热重测试结果表明1、2热稳定性较好。配合物2显示出很好的荧光性能。  相似文献   

5.
采用K[Ru(Hedta)Cl]·1.5H2O(edta为乙二胺四乙酸根)与含氮杂环配体5-(4-吡啶)四唑(4-ptz)或2,5-吡啶二甲酸(2,5-Pydc)反应,设计合成了2个单核[Ru(Hedta)(4-ptz)]·4H2O(1)和[Ru(Hedta)(2,5-Pydc)]·3H2O(2)配合物。晶体结构解析表明配合物1属于单斜晶系C2/c空间群,晶胞参数为a=2.348 06(15) nm,b=1.301 23(8) nm,c=14.930 8(9) nm,β=101.075 0(10)°;配合物2属于单斜晶系I2/a空间群,晶胞参数为a=3.249 4(7) nm,b=0.966 23(19) nm,c=1.434 1(3) nm,β=93.88(3)°。对2个配合物分别进行了IR及UV-Vis的表征,并通过电子吸收光谱和荧光淬灭光谱研究了配合物与DNA的作用,实验结果表明这2个钌配合物通过插入方式与DNA作用。  相似文献   

6.
以醋酸锌、异烟肼(INH)、2-氨基吡啶(2-APy)为原料在N,N-二甲基甲酰胺(DMF)溶液中合成了2个Zn(Ⅱ)配位聚合物[Zn(CH3COO)2(INH)]n1),[Zn(CH3COO)2(2-APy)]n2),用红外光谱、元素分析、粉末X射线衍射、X射线单晶衍射对配合物进行了表征。晶体结构测试表明,配聚物1属单斜晶系,空间群P21/c,晶胞参数:a=0.914 44(17)nm,b=0.161 86(3)nm,c=0.871 75(16)nm,β=96.181(3)°,V=1.282 8(4)nm3,Z=4;配聚物为2D层状结构,该层状结构通过氢键弱相互作用,进一步形成3D超分子结构。配聚物2属三斜晶系,空间群P1,晶胞参数:a=0.747 0(4)nm,b=0.814 5(5)nm,c=1.895 7(11)nm,α=88.276(8)°,β=86.202(8)°,γ=84.334(8)°,V=1.144 9(11)nm3,Z=2;配聚物2为一维zig-zag链状结构。室温固态荧光测试显示,配聚物12分别在最大波长382.6和367.5 nm处具有较强的荧光发射。  相似文献   

7.
采用水热法合成了一个新的一维铅(Ⅱ)配位聚合物[Pb(QOA)2]n(QOA=8-喹啉氧基乙酸根离子),通过红外光谱、元素分析和X-射线单晶衍射分析给予表征。该配位聚合物属于单斜晶系,C2/c空间群。晶胞参数a=2.1132(2)nm,b=1.18986(7)nm,c=0.79073(2)nm,β=99.081(3)°,V=1.9633(4)nm3,Z=4。固体UV-Vis-NIR漫反射光谱结果显示它的光学能隙约为3.4eV,表明配合物具有潜在的半导体性质。固体荧光测定表明配合物表现出良好的荧光性质。  相似文献   

8.
以醋酸锌、异烟肼(INH)、2-氨基吡啶(2-APy)为原料在N,N-二甲基甲酰胺(DMF)溶液中合成了2个Zn(Ⅱ)配位聚合物[Zn(CH3COO)2(INH)]n1),[Zn(CH3COO)2(2-APy)]n2),用红外光谱、元素分析、粉末X射线衍射、X射线单晶衍射对配合物进行了表征。晶体结构测试表明,配聚物1属单斜晶系,空间群P21/c,晶胞参数:a=0.914 44(17)nm,b=0.161 86(3)nm,c=0.871 75(16)nm,β=96.181(3)°,V=1.282 8(4)nm3,Z=4;配聚物为2D层状结构,该层状结构通过氢键弱相互作用,进一步形成3D超分子结构。配聚物2属三斜晶系,空间群P1,晶胞参数:a=0.747 0(4)nm,b=0.814 5(5)nm,c=1.895 7(11)nm,α=88.276(8)°,β=86.202(8)°,γ=84.334(8)°,V=1.144 9(11)nm3,Z=2;配聚物2为一维zig-zag链状结构。室温固态荧光测试显示,配聚物1、2分别在最大波长382.6和367.5 nm处具有较强的荧光发射。  相似文献   

9.
以3,3’,5,5’-(1,3-苯基)-联苯四羧酸(H4BTB)与4,4’-联吡啶(4,4’-bpy)为配体,与硝酸锌在水热条件下反应合成一个具有四重dmd穿插结构的3D骨架化合物{[Zn(BTB)0.5(4,4’-bpy)0.5(H2O)2]·0.5H2O}n1),并用元素分析、红外分析、热重分析、粉末衍射等对其进行了表征。化合物1属于单斜晶系,空间群为C2/c,晶胞参数:a=1.82536(5)nm,b=1.16325(9)nm,c=1.61528(7)nm,β=112.2540(10)°,V=3.1743(3)nm3,Z=8,Dc=1.631g·cm-3,F(000)=1592,R1=0.0353,wR2=0.0740[(I>2σ(I)]。结构分析表明H4BTB与Zn(Ⅱ)离子连接形成一个1D纳米管,并进一步通过4,4’-bpy连接成一个3D孔洞骨架结构,最终穿插形成具有四重穿插的dmd结构。  相似文献   

10.
以4-(1H-1,2,4-三氮唑)苯甲酸为配体,采用水热法合成了2种稀土配位聚合物[Tb(tbc3)(H2O)3]n1)和{[Nd(tbc3)(H2O)3]·H2O}n2)(Htbc=4-(1H-1,2,4-三氮唑)苯甲酸)。运用X-射线单晶衍射法对该配位聚合物进行了结构测定,并对其进行了元素分析、红外光谱、TG及荧光光谱表征。单晶结构表明,配位聚合物1为三斜晶系,空间群P1,配位聚合物2属于单斜晶系,空间群为P21/c。配位聚合物12均为一维链结构,均通过非共价键作用形成三维超分子构造。  相似文献   

11.
The title compound was synthesized and characterized by IR, ^1H NMR, elemental analysis and single crystal X-ray diffraction analysis. Its biological activities were also tested. The results show that the title compound reveals inhibiting activities towards wheat gibberellin, apple ringspot, tomato early blight, peanut cercospora arachidicola and stem wilt of asparagus.  相似文献   

12.
The corresponding 1-(2-quinoxalyl)-, 1-[3,5-di(trifluoromethyl)phenyl]-, and 1-ethoxycarbonyl-3-methyl-4-oxo-4,5,6,7-tetrahydroindazoles have been obtained from reactions of 2-acetyl-1,3-cyclohexanedione, its 5,5-dimethyl and 5-(2-furyl) derivatives, with 2-hydrazinoquinoxaline, 3,5-di(trifluoromethyl)phenylhydrazine, and ethoxycarbonylhydrazine. On interaction with ethoxycarbonylhydrazine the intermediate 2-[1-(-ethoxycarbonyl)hydrazino]ethylidene-1,3-cyclohexanediones were also isolated. From the potassium salt of 2-formyldimedone and 2-carboxyphenylhydrazine hydrochloride, 2-(2-carboxyphenyl)hydrazinomethylene-5,5-dimethyl-1,3-cyclohexanedione was obtained, the cyclization of which in ethanol in the presence of HCl led to 1-(2-carboxyphenyl)- and 1-(2-ethoxycarbonylphenyl)-6,6-dimethyl-4-oxo-4,5,6,7-tetrahydroindazole.  相似文献   

13.
The four acridinecarbaldehydes, namely, acridine-1-carbaldehyde, acridine-2-carbaldehyde, acridine-3-carbaldehyde, and acridine-4-carbaldehyde have been synthesized for the first time.  相似文献   

14.
Conclusions The reaction of 2-triethylsilyl-substituted ethyl-, vinyl-, and ethynyltrialkoxysilanes with triethanolamine gave 1-substituted silatranes possessing neurotropic activity.Translated from Izvestiya Akademii Nauk SSSR, Seriya Khimicheskaya, No. 11, pp. 2611–2613, November, 1984.  相似文献   

15.
2-芳氧基-5-苯基-1,3,4-噁二唑类化合物的合成   总被引:1,自引:0,他引:1  
本文通过芳氧基负离子在2—甲磺酰基—苯基—1,3,4—噁二唑环2—位上的亲核取代反应制得9个新的2—芳氧基—5—苯基—l,3,4—噁二唑衍生物。所有化合物的结构经元素分析,IR,~1H NMR和MS确认。初步抗菌实验表明这些化合物具有一定的抑制枯草芽孢杆菌繁殖的活性。 2,5—二取代l,3,4—噁二唑衍生物具有广泛的生物活性,如抗菌,抗黄球菌,除草杀棉花牙虫等。Madhavan等曾通过芳胺在2— 甲磺酰基—5—芳基1,3,4—噁二唑环上的亲核取代反应,制得了2—芳氨基—5—芳基—l,3,4—噁二唑衍生物,我们也曾通过酰肼等亲核试剂在2—甲磺酰基—5—(3,4,5—三甲氧基苯基)—1,3,4—噁二唑环上的亲核取代反应,得到了2—取代酰肼基—5—(3,4,5—三甲氧基苯基)—l,3,4—噁二唑衍生物。在此基础上,我们拟通过Aro在2—甲磺酰基  相似文献   

16.
Maillard polymers were prepared from D-glucose-1 and -6-14C, glycine-1 and -2-14C, as well as C-1 and methyl-14C methionine, and the activities of the isolated polymers measured as a function of time. In both cases, C-1 of the amino acids were incorporated at the lowest levels, with D-glucose carbon atoms at the highest levels. The data support the conclusions that carbon dioxide, produced during the Maillard reaction, arises from C-1 of the amino acids, but also suggests that other carbons of the amino acids may contribute as well.  相似文献   

17.
A systematic study has been carried out on the three isomeric cyclohexanedicarboxylates (CHDCs) formed by cadmium and manganese with the three isomeric dicarboxylic acids, in the presence or absence of amines. The CHDCs have been prepared under hydrothermal conditions and their structures established by X-ray crystallography. We have been able to isolate two-dimensional layered structures of 1,2-, 1,3- and 1,4-cyclohexanedicarboxylates and chain structures of 1,3- and 1,4-cyclohexanedicarboxylates. The infinite metal-oxygen-metal linkages are observed only in the case of the 1,2-dicarboxylate. In all the three isomeric cyclohexanedicarboxylates, the e,e conformation is most favored, although the 1,4-CHDCs often contain rings in both the e,e and the a,e conformations.  相似文献   

18.
By the reaction of 5-amino-1, 2, 4-triazoles with benzoyl isothiocyanate we have synthesized 5-amino-1-(benzoylaminothioformyl)-1, 2, 4-triazoles, which form 5-amino-1-(aminothioformyl)-1, 2, 4-triazoles on alkaline hydrolysis.  相似文献   

19.
Microbial transformation of 1-menthol (1) by six isolates of soil-borne plant pathogenic fungi Rhizoctonia solani AG-1-IA (Rs24, Joichi-2 and RRG97-1) and AG-1-IB (TR22, R147 and 110.4) as a biocatalyst was investigated. Twenty one days precultivation of Rhizoctonia solani AG-1-IA Rs24 and AG-1-IB 110.4 showed excellent yield (98.5-98.6%) of (-)-(1S,3R,4S,6S)-6-hydroxymenthol (2) and (-)-(1S,3R,4S)-1-hydroxymenthol (3) from 1.  相似文献   

20.
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