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首页> 外文期刊>Central European Journal of Chemistry >Ternary complexes of vanadium(IV) with 4-(2-pyridylazo)-resorcinol (PAR) and ditetrazolium chlorides (DTC)
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Ternary complexes of vanadium(IV) with 4-(2-pyridylazo)-resorcinol (PAR) and ditetrazolium chlorides (DTC)

机译:钒(IV)与4-(2-吡啶基偶氮)-间苯二酚(PAR)和氯化双四唑(DTC)的三元络合物

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Complex formation and liquid-liquid extraction have been studied for ternary complexes of vanadium(IV) with 4-(2-pyridylazo)- resorcinol (PAR) and ditetrazolium chlorides (DTC) in a water-chloroform medium. The specific ditetrazolium compounds investigated were i) 3,3'-(4,4'-biphenylene)-bis(2,5-diphenyl-2H-tetrazolium) chloride (Neotetrazolium chloride, NTC); ii) 3,3'-(3,3'-dimetoxy-4,4'- biphenylene)-bis(2,5-diphenyl-2H-tetrazolium) chloride (Blue Tetrazolium chloride, BTC); and iii) 3,3'-(3,3'-dimetoxy-4,4'-biphenylene)- bis[2-(4-nitrophenyl)-5-phenyl-2H-tetrazolium] chloride (Nitro Blue Tetrazolium chloride, NBT). Molar absorptivity coefficients and the composition of the complexes have been calculated. Association constants (β) have also been obtained for the interactions between the vanadium(IV) - PAR anionic chelates [VO(PAR)2]~(2-) (I) and [VO(OH)2(PAR)2]~(4-) (II), and ditetrazolium cations (DT2+). Some special features of NBT as an extraction-spectrophotometric reagent for vanadium(IV) have been discussed. Unlike NTC and BTC which form complexes with both I and II, NBT associates only with II. The pH interval for complete extraction of (NBT~(2+))2[VO(OH)2(PAR)2] is broader and allows work at lower pH values the other ion-associates of V(IV,V)-PAR that were studied. NBT is -therefore the appropriate reagent both for direct V(IV) determination and for V(IV)/V(V) separation. Some additional characteristics for the V(IV)- PAR-NBT-water-chloroform system have been determined: extraction constant, distribution constant, recovery factor, limit of detection and limit of quantification. Beer's law is valid up to 1.4 μg mL~(-1) vanadium(IV) with molar absorptivity coefficient of 3.55×10~4 L mol~(-1) cm-1 at λ_(max)=559 nm.
机译:在水-氯仿介质中,研究了钒(IV)与4-(2-吡啶基偶氮)-间苯二酚(PAR)和氯化二四唑鎓(DTC)的三元络合物的形成和液-液萃取。研究的特定的双四唑鎓化合物为:i)3,3'-(4,4'-联苯)-双(2,5-二苯基-2H-四唑鎓)氯化物(Neotetrazolium chloride,NTC); ii)3,3'-(3,3'-二甲氧基-4,4'-联苯)-双(2,5-二苯基-2H-四唑鎓)氯化物(氯化四氮唑鎓,BTC);和iii)3,3'-(3,3'-二甲氧基-4,4'-联苯)-双[2-(4-硝基苯基)-5-苯基-2H-四唑鎓]氯化物(氯化硝基四氮唑鎓,NBT )。摩尔吸收系数和复合物的组成已被计算。还获得了钒(IV)-PAR阴离子螯合物[VO(PAR)2]〜(2-)(I)和[VO(OH)2(PAR)2]〜的相互作用的缔合常数(β)。 (4-)(II)和双四唑阳离子(DT2 +)。讨论了NBT作为钒(IV)萃取光度法试剂的一些特殊功能。与NTC和BTC与I和II形成复合物不同,NBT仅与II相关。完全萃取(NBT〜(2 +))2 [VO(OH)2(PAR)2]的pH间隔较宽,并允许在较低的pH值下与V(IV,V)-PAR的其他离子缔合经过研究。因此,NBT是用于直接测定V(IV)和分离V(IV)/ V(V)的合适试剂。已经确定了V(IV)-PAR-NBT-水-氯仿系统的一些其他特征:萃取常数,分布常数,回收率,检出限和定量限。在λ_(max)= 559 nm处摩尔吸收系数为3.55×10〜4 L mol〜(-1)cm-1时,比尔定律有效至1.4μgmL〜(-1)钒(IV)。

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