Finikova Olga S, Aleshchenkov Sergei E, Briñas Raymond P, Cheprakov Andrei V, Carroll Patrick J, Vinogradov Sergei A
Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Org Chem. 2005 Jun 10;70(12):4617-28. doi: 10.1021/jo047741t.
A new method of synthesis of meso-tetraaryltetranaphtho[2,3]porphyrins (Ar4TNP) has been developed. Ar4TNPs with peripheral functional groups are obtained by oxidative aromatization of meso-tetraarylporphyrins in which pyrrole units are fused with either octahydro- or dihydronaphthalene moieties. These precursor porphyrins are synthesized in four to five steps from readily available starting materials, such as naphthalene or 1,4-benzoquinone. The pathway originating in dihydronaphthalene, i.e., the "dialine" route, was found to be superior to the alternative "octaline"route in that it (1) enables the shortening of the overall reaction sequence, (2) has a broader scope in terms of the peripheral substitution in Ar4TNPs, and (3) affords higher yields of the target porphyrins. Pd complexes of the synthesized Ar4TNPs exhibit remarkably strong absorption bands at 710-720 nm (epsilon approximately 200,000 M(-1) cm(-1)) and phosphoresce at room temperature with moderate quantum yields (phi = 2-3%, lambda(max) = 900-1000 nm). The absorption maxima of naphthoporphyrins substituted with eight methoxy groups (Ar4TNP(OMe)8) were found to be about 15-20 nm red shifted compared to the corresponding maxima of unsubstituted Ar4TNPs. The X-ray crystallographic data suggest that these spectral shifts are caused not by the differences in nonplanar distortions of the macrocycles but by the purely electronic effects of the substituents.
已开发出一种合成中位 - 四芳基四萘并[2,3]卟啉(Ar4TNP)的新方法。通过将吡咯单元与八氢萘或二氢萘部分稠合的中位 - 四芳基卟啉进行氧化芳构化,可得到具有外围官能团的Ar4TNP。这些前体卟啉由萘或1,4 - 苯醌等易得的起始原料经四至五步合成。发现源自二氢萘的途径,即“二氢萘”路线,优于另一种“八氢萘”路线,因为它(1)能够缩短整个反应序列,(2)在Ar4TNP的外围取代方面具有更广泛的范围,并且(3)能提供更高产率的目标卟啉。合成的Ar4TNP的钯配合物在710 - 720 nm处显示出非常强的吸收带(ε约为200,000 M⁻¹ cm⁻¹),并在室温下以中等量子产率(φ = 2 - 3%,λmax = 900 - 1000 nm)发出磷光。发现用八个甲氧基取代的萘卟啉(Ar4TNP(OMe)8)的吸收最大值与未取代的Ar4TNP的相应最大值相比,红移约15 - 20 nm。X射线晶体学数据表明,这些光谱位移不是由大环的非平面扭曲差异引起的,而是由取代基的纯电子效应引起的。