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ACID-BASE PROPERTIES OF ARYLNITRENIUM IONS

机译:芳纶离子的酸碱性质

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This study uses a combination of laser flash photolysis (LFP) and product analysis to show that singlet nitrenes from the irradiation of phenyl, 4-biphenylyl, and 2-fluorenyl azide can be trapped by protonation in aqueous solutions forming nitrenium ions. With phenyl azide, the phenylnitrenium ion is indicated by the formation of ring-substituted anilines in yields of up to 50% in 1 M acids. The acidity dependence furnishes the ratio k(H):k(exp) = 1.1, where k(H) refers to H+-trapping of singlet phenylnitrene and k(exp) to ring expansion of this species. With k(H) expected to be 2-4 x 10(10) M(-1) s(-1), k(exp) is therefore estimated as 2-4 x 10(10) s(-1). Protonation by solvent water also occurs, but even though the rate constant is of the order of 10(9) s(-1), it constitutes a minor pathway in competition with the ring expansion. LFP studies in acids reveal a transient that is assigned the structure of N-protonated 4-hydroxy-2,5-cyclohexadienone imine, the intermediate formed by water addition to the para position of the phenylnitrenium ion. With 4-biphenylyl- and 2-fluorenylnitrene, ring expansion (and intersystem crossing) occurs more slowly and protonation by water is faster, with the consequence that there are substantial yields of nitrenium ion without added acids. These nitrenium ions are detected with ns LFP, and their formation from singlet nitrene is observed with ps LFP. Combining the LFP experiments with product analysis furnishes a pK(a) value of 16 for the 4-biphenylylnitrenium ion deprotonating to singlet nitrene in 20% acetonitrile. Thus singlet 4-biphenylylnitrene falls close to the category of a strong base in this solution. LFP experiments in acids show behavior consistent with N-protonation of the nitrenium ion forming an aniline dication. Kinetic analyses furnish pK(a) values of 0.1 (4-aminobiphenyl dication) and 0.6 (2-aminofluorene dication) in 20% acetonitrile with 1 M ionic strength. This and other pieces of evidence are consistent with these arylnitrenium ions being better regarded as 6-iminocyclohexadienyl carbocations. Overall, arylnitrenium ions (ArNH+) are very weak acids in water in their deprotonation to singlet nitrenes. They are also weak bases, accepting a proton to form the aniline dication-(ArN)-Ar-1 reversible arrow (ArNH+)-Ar-1 reversible arrow (ArNH2)(2+).
机译:这项研究结合了激光闪光光解(LFP)和产物分析,结果表明,质子交换可将苯,4-联苯甲酰基和2-芴基叠氮化物辐射产生的单线态氮烯截留在形成氮离子的水溶液中。在叠氮化苯中,通过在1 M酸中产率高达50%的环取代苯胺的形成来指示苯基硝鎓离子。酸度依赖性提供的比率k(H):k(exp)= 1.1,其中k(H)表示单线苯基苯丁烯的H +捕获,k(exp)表示该物种的环膨胀。由于k(H)预期为2-4 x 10(10)M(-1)s(-1),因此k(exp)估计为2-4 x 10(10)s(-1)。溶剂水也会发生质子化,但是即使速率常数约为10(9)s(-1),它也构成了与环膨胀竞争的次要途径。在酸中的LFP研究表明,瞬态具有N-质子化的4-羟基-2,5-环己二烯酮亚胺的结构,该亚胺是通过将水添加到苯硝鎓离子的对位而形成的中间体。对于4-联苯基-和2-芴基-亚硝基,发生环膨胀(和系统间交叉)的速度更慢,并且水的质子化速度更快,结果是在不添加酸的情况下产生了大量的substantial离子。使用ns LFP检测到这些亚硝酸根离子,使用ps LFP观察到它们由单线态亚硝基形成。将LFP实验与产物分析相结合,可得到20%乙腈中的4-联苯基基氮离子去质子化成单线态氮的pK(a)值为16。因此,在该溶液中,单线态4-联苯基基氮烯接近于强碱的类别。在酸中的LFP实验表明,其行为与形成苯胺指示的亚硝酸根离子的N质子化一致。动力学分析在离子强度为1 M的20%乙腈中提供的pK(a)值为0.1(4-氨基联苯指示)和0.6(2-氨基芴指示)。该证据和其他证据与这些芳基氮化物离子被更好地视为6-亚氨基环己二烯基碳正离子相一致。总体而言,芳基氮化物离子(ArNH +)在水中脱质为单线态亚硝基时是非常弱的酸。它们也是弱碱,接受质子形成苯胺指示-(ArN)-Ar-1可逆箭头(ArNH +)-Ar-1可逆箭头(ArNH2)(2+)。

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