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1.
含苯氧基萘并萘醌和偶氮苯双变色基化合物的合成和性质   总被引:2,自引:0,他引:2  
通过6-氯-5,12-萘并萘醌与4-羟基偶氮苯及其衍生物的反应合成了3种含苯氧基萘并萘醌和偶氮苯光致变色基的双变色基化合物,6-[4-(苯偶氮基)苯氧基]-5,12-萘并萘醌(5),6-[4-(p-乙氧基苯偶氮基)苯氧基]-5,12-萘并萘醌(6)和6-[4-(p-硝基苯偶氮基)苯氧基]-5,12-萘并萘醌(7).这些化合物的苯氧基萘并萘醌变色基的UV诱导光致变色性较弱;基于氨与苯氧基萘并萘醌ana显色体的不可逆反应,化合物5和6DMSO溶液在365nm紫外光辐照光稳态(PSS)下的ana醌式摩尔分数估计分别为22%和17%.这些结果说明,苯偶氮基对苯氧基萘并萘醌变色基的光致变色性质有着极强的影响.另一方面,与4-羟基偶氮苯母体不同,这些双变色基化合物在DMSO中偶氮苯变色基的顺式异构体是相对稳定的  相似文献   

2.
宋焕玲  陈革新 《应用化学》2000,17(3):284-287
在Mn-Na2WO4/SiO2催化剂上,考察了水蒸汽对惭烷氧化掊氢制乙烯反应伯影响。结果表明加入适量水蒸汽对提高乙烯选择性有利。在催化剂装量10mL,V(C2H6):V(O2):V(H2O)=1:0.65:3.8,GHSV=1600h^-1,740℃时,乙烯收率仍可以稳定在52%以上,过多加入水蒸汽将使催化剂活性很快下降,反应后的催化剂经XRD及XPS表征表明,不仅单层Na2WO4有流失,而且载体  相似文献   

3.
姚心侃  谢庆兰 《结构化学》1996,15(3):193-198
三环己基锡O,O’-二(4-氯苯基)二硫代磷酸酯(I),C30H41Cl2(O2PS2Sn,Mr=718.36,单斜晶系,P21/n,a=16.151(2),b=9.4159(1),c=22.987(3),A,β=105.69(1)°,Z=4,Dc=1.418g.cm^-3,R=0.063;二丁基锡双(O,O’-二(4-甲基苯基)二硫代磷酯酯(Ⅱ),C36H46O4P2S4Sn,Mr=851.66  相似文献   

4.
N-苯甲酰苯丙氨酸(BpheO)与Cu(phen)Cl2发生取代反应,生成了铜配合扬[Cu(BpheO)2(phen)]·H2O。晶体属单斜晶系,C2/C空间群。晶胞参数为:a=5.330(1),b=24.502(2),c=28.839(2),β=91.95(1)°,V=3764.1(8)3,Z=4,F(000)=1660,Dc=1.409g/cm3,μ=0.639mm-1。Cu与2个BpheO配体的羧基O原子及phen分子的2个N原子形成4配位的平面四边形结构。经元素分析,IR、ESR、UV、TG-DTA及磁性测定,对配合物的性质进行了研究。  相似文献   

5.
通过6-氯-5,12-萘并萘醌(1)与酚醛树脂经亲棱取代,一步合成制备具有光致变色性的酚醛树脂(3)。在苯溶液中,光致变色聚合物(3)与光致变色化合物6-{4-[2-(4-羟基苯基)异丙基]苯氧基}-5,12-萘并萘醌(2)有相似的光致变色行为。但是,在聚合物(3)中,由于苯基处于聚合物骨架中不易迁移,使聚合物(3)的变色速度较化合物(2)明显减慢,化合物(2)的光异构化速度常数是聚合物(3)的3倍。同时发现溶剂对聚合物(3)的光诱导trans-ana异构化反应速度有明显影响,在氯仿中的反应速度常数约为在苯中的2倍。  相似文献   

6.
标题化合物(Me_2SiSiMe_2)[η ̄5-(3-Me_3SiC_5H_3)Fe(CO)_2]_2/(μ-CO)_2(A)分子中的Fe-Fe键被钠汞齐还原断裂,生成相应的双铁负离子,分别与MeCOCl、PhCOCl、PhCH_2Cl、ClCH_2COOC_2H_5和Ph_3SnCl进行亲核取代反应,生成在铁原子上引入相应取代基的产物(Me_2SiSiMe_2)[η ̄5-(3-Me_3SiC_5H_3)Fe(CO)_2R]_2(R:MeCO(1),PhCO(2),PhCH_2(3),CH_2COOC_2H_5(4),Ph_3Sn(5),I(6))。A在氯仿中与碘反应,得到Fe-Fe断裂的双铁碘化物,但在苯中与过量碘反应,则得到Fe-I-Fe桥联的离子型化合物(Me_2SiSiMe_2)[η ̄5-(3-Me_3SiC_5H_3)Fe(CO)_2]_2I·I(7)。化合物6的晶体和分子结构经X射线衍射测定,6属单斜晶系,P21/c空间群,a=1.7217(4)nm,b=0.7753(2)nm,C=1.3629(7)nm,β=103.80(3)°,V=1.767(2)nm3,Z=4,Dc=1.6299·cm-1,最终偏差因子R=0.054。  相似文献   

7.
贾志胜  张斌 《结构化学》1995,14(5):408-411
用X射线晶体结构分析法测定和分析了dl-2,3-二氰基-2,3-二(3,4-二甲氧基苯基)丁二酸二乙酯的分子结构和晶体结构。晶体学数据为:C26H28N2O8,Mr=496.52,空间群P1,a=12.047(1),b=13.271(1),c=8.728(2)A,a=90.71(1),β=108.81(1),γ=84.87(1)°,V=1315.4(2)A^3,Z=2,Dc=1.254g/cm^3  相似文献   

8.
刘军  金祥林 《结构化学》1996,15(6):486-490
测定了O,O(2,2'-联萘基)-N-(α-苯基乙基)膦酰胺RS体与乙醇形成的分子化合笺晶体结构。晶体学数据为:C28H22NO3P.C2H5OH,Mr=497.5,单斜晶系,P21空间群,a=9.359(2),b=12.806(3),c=11.641(A),β=111.62(3)°,z=2,v=1294,0(5)a^3,Dc=1.277g/cm^3,MoKa(λ=0.71073A)射线,μ=1.  相似文献   

9.
本文介绍水杨配合与4-氨基-3,5-二乙基-1,2,4-三唑缩合而成对称三唑Schif碱(SAETZ)与氯化铜(CuCl2)形成一种新的配合物Cu(SAETZ)2(SAETZ=4-(邻羟苯基亚甲基)-亚胺-3,5-二乙基-1,2,4-三唑)。配合物的晶体结构表明,分子中两个偶氮甲碱的N原子及两个酚氧原子与中心Cu原子形成规则的平面配位结构。晶体属单斜晶系,空间群P21/n,a=8.688(2),b=9.314(1),c=16.515(4),β=94.34(2)。,V=1332.5(7)3,Z=2。  相似文献   

10.
铽与4—酰代吡唑啉酮—5的三元配合物的合成与荧光性质   总被引:4,自引:0,他引:4  
合成并表征了一系列铽与含不同4-酰代的1-苯基-3-甲基-吡唑啉酮-5的三元配合物Tb9L)3.2H2O和Tb(L)3.Dipy「L=1-苯基-3-甲基-4-乙酰基吡啥林酮-5(PMAP),1-苯基-3-甲基-4-丙酰基吡唑啉酮-5(PMPP),1-苯基-3-甲基-4-异丁酰基吡唑啉酮-5(PMIBP),1-苯基-3-甲基-4-特戊酰基吡唑啉酮-5(PMPVP),1-苯基-3-甲基-4-苯甲酰基吡  相似文献   

11.
通过酚醛树脂羟基活性基团与6-氯-5,12-萘并萘醌(1)接枝反应,制备了3种有光致变色性的酚醛树脂:萘并萘醌酚醛树脂(2),甲基萘并萘醌酚醛树脂(3)和氯代萘并萘醌酚醛树脂(4).在四氢呋喃(THF)溶液中,3种光致变色聚合物有与6-苯氧基-5,12-萘并萘醌相似的光致变色行为.同时,发现聚合物骨架上的取代基对聚合物的变色速度影响较小,聚合物的平均分子量影响聚合物的变色速度.  相似文献   

12.
A new 3d-4f heterometallic polymer {[Sm2Cu(PDC)2(SO4)2(H2O)6]·2H2O}n 1 has been synthesized by Sm2O3, Cu(SO4)2·5H2O and pyridine-3,5-dicarboxylic acid under hydrothermal conditions. The compound crystallizes in triclinic system, space group P1, with a = 6.352(7), b = 10.040(10), c = 10.315(11) , α = 94.958(14), β = 95.556(7), γ = 99.747(14)°, V = 641.7(12)3, Z = 1, Mr = 1030.63, Dc = 2.651 Mg/m3, μ = 5.615 mm-1, F(000) = 491, the final R = 0.0491 and wR = 0.1345 for 2098 observed reflections with I > 2σ(I). The compound is a three-dimensional network structure in which infinite lanthanide-carboxylate chains are linked by [Cu(SO4)2]2- metalloligands to form a mixed-metal coordination network.  相似文献   

13.
刘浪  贾殿赠  郁开北 《化学学报》2002,60(3):493-498
通过1-苯基-3-甲基-4-氯乙酰基-吡唑啉酮-5(PMCP)和氨基硫脲( TSC)缩合,形成了一种含NNS六元杂环的光致变色化合物(PMCP-TSC)。利用元 素分析,MS,”1H NMR,IR和UV光谱进行了表征。通过紫外可见光谱对它的光致 变色性质进行了研究,测出了光致变色反应的动力学常数。并用X线单晶衍射仪测 定了PMCP-TSC变色后的晶体结构,该晶体属单斜晶系,具有P2_1/c空间群,a = 0.105 10(2) nm, b = 0.150 61(3) nm, c = 0.993 70(10) nm, β = 107.890 (10)°, V = 1.496 9(4) nm~3, Z - 4, D_c = 1.417 Mg/m~3, μ = 0.232 mm~(- 1), F(000) = 672, R = 0.033 4, wR = 0.089 6。结构分析表明:其光致变色现 象是由于它在溶剂与光的共同作用下发生了从醇式到酮式的异构化。同时该化合物 经分子间氢键形成二聚体,又通过甲醇与本体分子之间的氢键使化合物形成具有三 维网络结构的超分子化合物。  相似文献   

14.
用MnSO4H2O和哌嗪在水-甲醇混合溶剂中反应得到了1个超分子化合物[H2(C4H10N2)](SO4)(H2O) (C4H14N2O5S)。 该晶体属单斜晶系, 空间群为P21/n, 晶胞参数为: a = 6.386(1), b = 11.695(2), c = 11.680(2) ? = 101.06(3), V = 856.1(3) 3, Z = 4, Mr =202.23 , Dc = 1.569 g/cm3, F(000) = 432, ?= 0.368 mm-1。 该化合物是由[H2(C4H10N2)]2+、SO42-、H2O通过氢键自组装而形成的。 其中[H2(C4H10N2)]2+存在2种椅式构象:一种[H2(C4H10N2)]2+与4个SO42-、2个H2O通过氢键相连, 另一种[H2(C4H10N2)]2+则与6个SO42-相连。 它们分别沿着b、c方向交替排列展开, 通过SO42-桥联成二维的层状结构;层与层之间在NH…O、CH…O、OH…O氢键的作用下互相连接, 形成了具有网状结构的三维超分子化合物。 差热及热重测试表明:该化合物从92℃开始分解,首先失去1个H2O, 然后再失去[H2(C4H10N2)]2+和SO4 2-。  相似文献   

15.
<正> The title compound was obtained by reaction of CoCl2.6H2O and mp2- (σ-C6H4SO2-) in MeCN,crystallized as Et4N+ salt in monoclinic system with space group P21/c, Mr=877.040. The cell parameters are:a =16.606(2), b=15.575(1),c=17.725(2)A,β=111.07(1)°,V=4277.8A3,Z=4,Dx= 1.36g/cm3.It is a dimer of [Co(mp)(Hmp)]- connected by two strong hydrogen bonds with a twist angle of about 36.94 .  相似文献   

16.
The title compound ethyl 2-(6-(1,3-dioxo-4,5,6,7-tetrahydro-1H-isoindol-2(3H)-yl)-7-fluoro-3-oxo-2H-benzo[b][1,4]oxazin-4(3H)-yl) butanoate 3 was synthesized by the reaction of ethyl 2-(6-amino-7-fluoro-3-oxo-2H-benzo[b][1,4]oxazin-4(3H)-yl) butanoate with 4,5,6,7-tetraydrophthalic anhydride,and its structure was determined by X-ray single-crystal diffraction.The crystal belongs to the monoclinic system,space group P21/n with a = 9.3469(2),b = 16.7715(5),c = 13.7153(4) ,β = 104.9680(10)°,μ = 0.107 mm-1,Mr = 430.42,V = 2077.08(10) 3,Z = 4,Dc = 1.376 g/cm3,F(000) = 904,T = 296(2) K,R = 0.0508 and wR = 0.1478.  相似文献   

17.
合成了一种新的砷-钒-氧簇合物(H2en)6[As8V14O42(SO4)]28H2O(en为乙二胺),用元素分析、IR和TG-DTA等手段进行了表征,并用X射线衍射法测定了晶体结构。结果表明, 该晶体属单斜晶系,P21/c空间群,晶胞参数a = 20.9235(4),b = 11.9382(2),c = 43.5783(6) 牛琤 = 102.13,V = 10642.1(3) ?,Z = 4,Mr = 4678.01,Dc = 2.920 g/cm3,F(000) = 8944,m = 7.437 mm-1,R = 0.0735,wR = 0.1361。结构测定表明,结构中2个簇阴离子{[As8V14O42(SO4)]6-}与有机铵阳离子[H2en]2+之间靠静电作用相结合,同时与H2O通过氢键构成无限的三维骨架结构。  相似文献   

18.
The electrochemical and spectroelectrochemical properties of niobium(V) and the Nb(3)O(2)(SO(4))(6)(H(2)O)(3)(5-) cluster in sulfuric acid and methanesulfonic acid were investigated using cyclic voltammetry, constant potential electrolysis, and spectroelectrochemistry. These chemical systems were suitable to probe the formation of "Nb(3)O(2)" core trinuclear clusters. In 9 M H(2)SO(4) the cluster Nb(3)O(2)(SO(4))(6)(H(2)O)(3)(5-) exhibited a reversible 1-electron reduction peak at E(pc) = -1.30 V vs Hg/Hg(2)SO(4) electrode, as well as a 4-electron irreversible oxidation peak at E(pa) = -0.45 V. Controlled potential reduction at E = -1.40 V produced the green Nb(3.33+) cluster anion Nb(3)O(2)(SO(4))(6)(H(2)O)(3)(6-). In 12 M H(2)SO(4) Nb(V) displayed two reduction peaks at E(pc) = -1.15 V and E(pc) = -1.30 V. It was determined that the first process involves a quasi-reversible 2-electron reduction. After reduction of Nb(V) to Nb(III) the following chemical step involves formation of [Nb(III)](2) dimer, which further reacts with Nb(V) to produce the Nb(3)O(2)(SO(4))(6(H(2)O)(3)(5-) cluster (ECC process). The second reduction peak at E(pc) = -1.30 V corresponds to further 2-electron reduction of Nb(III) to Nb(I). The electrogenerated Nb(I) species also chemically reacts with starting material Nb(V) to produce additional [Nb(III)](2). In 5 M H(2)SO(4), the rate of the second chemical step in the ECC process is relatively slower and reduction of Nb(V) at E = -1.45 V/-1.2 V produces a mixture of Nb(3)O(2)(SO(4))(6)(H(2)O)(3)(5-) and [Nb(III)](2) dimer. [Nb(III)](2) can be selectively oxidized by two 2-electron steps at E = -0.65 V to Nb(V). However, if the oxidation is performed at E = -0.86 V, the product is Nb(3)O(2)(SO(4))(6)(H(2)O)(3)(5-). A double potential pulse electrolysis waveform was developed to direct the reduction of Nb(V) toward selective formation of the Nb(3)O(2)(SO(4))(6)(H(2)O)(3)(5-) cluster. Proper application of dc-voltage pulses alternating between E(1) = -1.45 V and E(2) = -0.86 V yields only the target trinuclear cluster. Analogous double potential pulse electrolysis of Nb(V) in methanesulfonic acid generates the "Nb(3)O(2)" core cluster Nb(3)O(2)(CH(3)SO(3))(6)(H(2)O)(3)(+).  相似文献   

19.
Reaction of Na(2)Mo(VI)O(4) x 2H(2)O with (NH(4))(2)SO(3) in the mixed-solvent system H(2)O/CH(3)CN (pH = 5) resulted in the formation of the tetranuclear cluster (NH(4))(4)[Mo(4)(VI)SO(16)] x H(2)O (1), while the same reaction in acidic aqueous solution (pH = 5) yielded (NH(4))(4)[Mo(5)(VI)S(2)O(21)] x 3H(2)O (2). Compound {(H(2)bipy)(2)[Mo(5)(VI)S(2)O(21)] x H(2)O}(x) (3) was obtained from the reaction of aqueous acidic solution of Na(2)Mo(VI)O(4) x 2H(2)O with (NH(4))(2)SO(3) (pH = 2.5) and 4,4'-bipyridine (4,4'-bipy). The mixed metal/sulfite species (NH(4))(7)[Co(III)(Mo(2)(V)O(4))(NH(3))(SO(3))(6)] x 4H(2)O (4) was synthesized by reacting Na(2)Mo(VI)O(4) x 2H(2)O with CoCl(2) x 6H(2)O and (NH(4))(2)SO(3) with precise control of pH (5.3) through a redox reaction. The X-ray crystal structures of compounds 1, 2, and 4 were determined. The structure of compound 1 consists of a ring of four alternately face- and edge-sharing Mo(VI)O(6) octahedra capped by the trigonal pyramidal sulfite anion, while at the base of the Mo(4) ring is an oxo group which is asymmetrically shared by all four molybdenum atoms. Compound 3 is based on the Strandberg-type heteropolyion [Mo(5)(VI)S(2)O(21)](4-), and these coordinatively saturated clusters are joined by diprotonated 4,4'-H(2)bipy(2+) through strong hydrogen bonds. Compound 3 crystallizes in the chiral space group C2. The structure of compound 4 consists of a novel trinuclear [Co(III)Mo(2)(V)SO(3)(2-)] cluster. The chiral compound 3 exhibits nonlinear optical (NLO) and photoluminescence properties. The assignment of the sulfite bands in the IR spectrum of 4 has been carried out by density functional calculations. The cobalt in 4 is a d(6) octahedral low-spin metal atom as it was evidenced by magnetic susceptibility measurements, cw EPR, BVS, and DFT calculations. The IR and solid-state UV-vis spectra as well as the thermogravimetric analyses of compounds 1-4 are also reported.  相似文献   

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