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1.
5-溴-吡啶偶氮-5-二乙氨基酚与铕(Ⅲ)的显色反应研究   总被引:4,自引:0,他引:4  
研究了 5 -溴 -吡啶偶氮 - 5 -二乙氨基酚 ( 5 - Br- PADAP)与 Eu( )的显色反应和光度性质 ,并探讨了其最佳光度分析条件。在 p H5 .0的乙酸盐缓冲溶液中 ,Eu( )与试剂形成了配位比为 1∶ 1的深红色二元配合物 ,配合物的最大吸收峰位于5 5 9nm,表观摩尔吸光系数为 7.8× 1 0 4 L· mol- 1· cm- 1。加标回收实验结果令人满意  相似文献   

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合成了 1 -(4 -硝基苯基 ) -3 -(5-硝基 -2 -吡啶 ) -三氮烯 ,并研究了它与汞(Ⅱ )的显色反应。在TritonX -1 0 0的存在下 ,pH1 1 2的Na2 B4 O7-NaOH缓冲溶液中 ,试剂与汞生成 2∶1型桔黄色配合物 ,在 4 3 8nm和 52 5nm处分别有一正一负两个吸收波峰 ,用双峰双波长测定 ,其表观摩尔吸光系数为 2 1× 1 0 5L·mo1 1·cm 1,Hg2 +的浓度在 0~ 2 80 μg/L范围内符合比耳定律。成功地测定了人发和尿液中微量的汞。  相似文献   

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2- ( 5 -溴 - 2 -吡啶偶氮 ) - 5 -二乙氨基酚 ( 5 - Br- PADAP)是一种灵敏的光度试剂 ,该试剂与铕 ( )的络合比及其稳定常数的研究尚未见报道。本文用双系列线性回归法研究了铕 ( )与 5 - Br- PADAP的络合反应 ,测得铕 ( )与 5 - Br- PADAP形成 1∶ 3的络合物 ,条件稳定常数 ( 1 gβn)为 1 6.5 2 ,最大吸收波长为60 5 nm,摩尔吸光系数为 4.67× 1 0 4 L· mol- 1· cm- 1。  相似文献   

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钌(Ⅱ)-2-(5-溴-2-吡啶偶氮)-5-二甲氨基苯胺显色反应的研究   总被引:4,自引:0,他引:4  
研究了钌 ( )与 2 - ( 5-溴 - 2 -吡啶偶氮 ) - 5-二甲氨基苯胺 (简称为 5- Br-PADMA)的显色反应。在 p H4.2~ 6.2的醋酸 -醋酸钠缓冲溶液中 ,盐酸羟胺存在并加热条件下 ,Ru( )可与试剂形成绿蓝色配合物 ,加酸酸化后 ,其最大吸收峰位于 61 9nm,表观摩尔吸光系数达 9.2 7× 1 0 4 L· mol-1· cm-1。钌 ( )浓度在 0~ 0 .80 mg/L范围内符合比尔定律。利用 EDTA作掩蔽剂 ,可允许较大量的常见金属离子存在。方法已用于样品中微量钌的测定  相似文献   

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报道了新显色剂 1 - (对 -偶氮苯 ) - 3- ( 5-硝基 - 2 -吡啶 ) -三氮烯 ( APNPT)的合成及其与镉的显色反应。在非离子表面活性剂 OP的存在下 ,p H1 0 .8时 ,镉 ( )与 APNPT形成 1∶ 2的稳定红色配合物 ,其最大吸收波长为 52 5nm,表观摩尔吸光系数为 1 .7× 1 0 5L· mol-1· cm-1,线性范围为 0~ 2 .8μg/1 0 m L,是目前测定微量镉的高灵敏显色反应之一 ,所拟方法已用于水样中微量镉 ( )的测定。  相似文献   

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研究了新试剂 1 -( 2 ,6 -二氯 -4 -硝基苯 ) -3 -( 4-硝基苯 ) -三氮烯与镉的显色反应。在 Triton X-1 0 0存在下 ,于 p H=9.8~ 1 1 .0的 Na2 B4 O7-Na OH缓冲溶液中 ,镉与试剂有高灵敏的显色反应 ,生成 1∶ 3型黄色配合物 ,最大吸收波长为 44 5nm。用双峰双波长法测定 ,其表观摩尔吸光系数为 2 .85× 1 0 5L·mol- 1·cm- 1。用拟定的方法测定了人发和废水中的镉含量 ,标准加入回收率分别为 1 0 4.5%和 1 0 5.8% ,相对标准偏差分别为 3 .2 %和 4.1 %。  相似文献   

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研究了新试剂1-(2,6-二氯-4-硝基苯)-3-(4-硝基苯)-三氮烯(DCNPNPT)与铜(Ⅱ)显色反应。在表面活性剂Tween-80存在下,pH 9.0~10.0范围内,铜(Ⅱ)与DCNPNPT形成1:4黄色配合物,其最大吸收波长为460nm,用双峰双波长法测定,表观摩尔吸光系数为1.I×10~5L·mol~(-1)·cm~(-1)。铜(Ⅱ)含量在0~240μg·L~(-1)范围内符合比耳定律。拟定方法用于铜矿和环境水标样中铜的测定,结果满意。  相似文献   

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研究了 5- ( 5-氯 - 2 -吡啶偶氮 ) - 2 .4-二氨基甲苯 ( 5- Cl- PADAT)与钌 ( )的显色反应。在 p H4.0~ 6.5HAc- Na Ac缓冲溶液中 ,在加热的条件下 ,5- Cl-PADAT与 Ru( )形成稳定的配合物 ,加入无机酸 ( HCl,HCl O4 ,H2 SO4 ,H3 PO4 )酸化后 ,其最大吸收波长位于 50 5nm处 ,表观摩尔吸光系数为 8.5×1 0 4 L· mol-1· cm-1,钌浓度在 0~ 6μg/ 1 0 m L范围内服从比耳定律 ,Ru( )与 5- Cl- PADAT配合物的摩尔比为 1∶ 2。以 EDTA为掩蔽剂 ,方法具有良好的选择性 ,已应用于合成样中钌的测定。  相似文献   

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研究了试剂2_(5_溴_2_吡啶偶氮 )_5_二甲氨基苯胺 (5_Br_PADMA)与铱 (Ⅲ )的显色反应 ;在 pH4.75~6.00的HAc -NaAc缓冲溶液中 ,铱 (Ⅲ )与5_Br_PADMA形成摩尔比为1∶2型稳定的红色络合物 ,在0.6mol/LH2SO4溶液中 ,其最大吸收波长为558nm ,表观摩尔吸光系数为5.1×104L/(mol·cm) ,铱 (Ⅲ )含量在0~0.8mg/L范围内符合比尔定律 ,采用加入适量EDTA的方法消除了Fe3 + 、Co2 + 、Ni2 + 等干扰离子 ,建立了在二元络合物体系中测定微量铱 (Ⅲ )的灵敏度高、选择性好、简便、稳定的分光光度法  相似文献   

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三氮烯试剂与第IB、IIB族金属元素有高灵敏的显色反应 1 [1] ,可用来测定样品中微量的Cd2 + 、Hg2 + 、Zn2 + 、Ni2 + 。随着表面活性剂引入该显色体系 ,使该试剂与金属离子显色反应的灵敏度有了很大的提高。目前报道的三氮烯显色剂与Hg2 + 显色反应的灵敏度一般在ε =1 .0× 1 0 5L·mol-1·cm-1左右 ,但也有部分试剂的灵敏度较高 ,如OC Cadion[2 ] 的ε =1 .77× 1 0 5L·mol-1·cm-1,DNAAB[3 ] ε=1 .74× 1 0 5L·mol-1·cm-1,MDAA[4]的ε=1 .8× 1 0 5L·mol-1·cm-1,APD…  相似文献   

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A low barrier in the reaction pathway between the double Rydberg isomer of OH(3) (-) and a hydride-water complex indicates that the former species is more difficult to isolate and characterize through anion photoelectron spectroscopy than the well known double Rydberg anion (DRA), tetrahedral NH(4) (-). Electron propagator calculations of vertical electron detachment energies (VEDEs) and isosurface plots of the electron localization function disclose that the transition state's electronic structure more closely resembles that of the DRA than that of the hydride-water complex. Possible stabilization of the OH(3) (-) DRA through hydrogen bonding or ion-dipole interactions is examined through calculations on O(2)H(5) (-) species. Three O(2)H(5) (-) minima with H(-)(H(2)O)(2), hydrogen-bridged, and DRA-molecule structures resemble previously discovered N(2)H(7) (-) species and have well separated VEDEs that may be observable in anion photoelectron spectra.  相似文献   

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Pure, highly explosive CF(3)C(O)OOC(O)CF(3) is prepared for the first time by low-temperature reaction between CF(3)C(O)Cl and Na(2)O(2). At room temperature CF(3)C(O)OOC(O)CF(3) is stable for days in the liquid or gaseous state. The melting point is -37.5 degrees C, and the boiling point is extrapolated to 44 degrees C from the vapor pressure curve log p = -1875/T + 8.92 (p/mbar, T/K). Above room temperature the first-order unimolecular decay into C(2)F(6) + CO(2) occurs with an activation energy of 129 kJ mol(-1). CF(3)C(O)OOC(O)CF(3) is a clean source for CF(3) radicals as demonstrated by matrix-isolation experiments. The pure compound is characterized by NMR, vibrational, and UV spectroscopy. The geometric structure is determined by gas electron diffraction and quantum chemical calculations (HF, B3PW91, B3LYP, and MP2 with 6-31G basis sets). The molecule possesses syn-syn conformation (both C=O bonds synperiplanar to the O-O bond) with O-O = 1.426(10) A and dihedral angle phi(C-O-O-C) = 86.5(32) degrees. The density functional calculations reproduce the experimental structure very well.  相似文献   

18.
Huang FQ  Ibers JA 《Inorganic chemistry》2001,40(10):2346-2351
The alkali metal/group 4 metal/polychalcogenides Cs(4)Ti(3)Se(13), Rb(4)Ti(3)S(14), Cs(4)Ti(3)S(14), Rb(4)Hf(3)S(14), Rb(4)Zr(3)Se(14), Cs(4)Zr(3)Se(14), and Cs(4)Hf(3)Se(14) have been synthesized by means of the reactive flux method at 823 or 873 K. Cs(4)Ti(3)Se(13) crystallizes in a new structure type in space group C(2)(2)-P2(1) with eight formula units in a monoclinic cell at T = 153 K of dimensions a = 10.2524(6) A, b = 32.468(2) A, c = 14.6747(8) A, beta = 100.008(1) degrees. Cs(4)Ti(3)Se(13) is composed of four independent one-dimensional [Ti(3)Se(13)(4-)] chains separated by Cs(+) cations. These chains adopt hexagonal closest packing along the [100] direction. The [Ti(3)Se(13)(4-)] chains are built from the face- and edge-sharing of pentagonal pyramids and pentagonal bipyramids. Formal oxidation states cannot be assigned in Cs(4)Ti(3)Se(13). The compounds Rb(4)Ti(3)S(14), Cs(4)Ti(3)S(14), Rb(4)Hf(3)S(14), Rb(4)Zr(3)Se(14), Cs(4)Zr(3)Se(14), and Cs(4)Hf(3)Se(14) crystallize in the K(4)Ti(3)S(14) structure type with four formula units in space group C(2)(h)()(6)-C2/c of the monoclinic system at T = 153 K in cells of dimensions a = 21.085(1) A, b = 8.1169(5) A, c = 13.1992(8) A, beta = 112.835(1) degrees for Rb(4)Ti(3)S(14);a = 21.329(3) A, b = 8.415(1) A, c = 13.678(2) A, beta = 113.801(2) degrees for Cs(4)Ti(3)S(14); a = 21.643(2) A, b = 8.1848(8) A, c = 13.331(1) A, beta = 111.762(2) degrees for Rb(4)Hf(3)S(14); a = 22.605(7) A, b = 8.552(3) A, c = 13.880(4) A, beta = 110.919(9) degrees for Rb(4)Zr(3)Se(14); a = 22.826(5) A, b = 8.841(2) A, c = 14.278(3) A, beta = 111.456(4) degrees for Cs(4)Zr(3)Se(14); and a = 22.758(5) A, b = 8.844(2) A, c = 14.276(3) A, beta = 111.88(3) degrees for Cs(4)Hf(3)Se(14). These A(4)M(3)Q(14) compounds (A = alkali metal; M = group 4 metal; Q = chalcogen) contain hexagonally closest-packed [M(3)Q(14)(4-)] chains that run in the [101] direction and are separated by A(+) cations. Each [M(3)Q(14)(4-)] chain is built from a [M(3)Q(14)] unit that consists of two MQ(7) pentagonal bipyramids or one distorted MQ(8) bicapped octahedron bonded together by edge- or face-sharing. Each [M(3)Q(14)] unit contains six Q(2)(2-) dimers, with Q-Q distances in the normal single-bond range 2.0616(9)-2.095(2) A for S-S and 2.367(1)-2.391(2) A for Se-Se. The A(4)M(3)Q(14) compounds can be formulated as (A(+))(4)(M(4+))(3)(Q(2)(2-))(6)(Q(2-))(2).  相似文献   

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Summary Dichlorobis(methylsalicylato)titanium(IV) reacts with potassium or amine salts of dialkyl or diaryl dithiocarbamates in 11 and 12 molar ratios in anhydrous benzene (room temperature) or in boiling CH2Cl2 to yield mixed ligand complexes: (AcOC6H4O)2 Ti(S2CNR2)Cl (1) and (AcOC6H4O)2 Ti(S2CNR2)2 (2), R=Et, n-Pr, n-Bu, cyclo-C4H8 and cyclo-C5H10. These compounds are moisture sensitive and highly soluble in polar solvents. Molecular weight measurement in conjunction with i.r.,1H and13C n.m.r. spectral studies suggest coordination number 7 and 8 around titanium(IV) in (1) and (2) respectively.  相似文献   

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