摩熵化学
数据库官网
小程序
打开微信扫一扫
首页 分子通 化学资讯 化学百科 反应查询 关于我们
请输入关键词

N-methyl-tetraphenylporphyrin zinc(II) acetate | 127972-25-2

中文名称
——
中文别名
——
英文名称
N-methyl-tetraphenylporphyrin zinc(II) acetate
英文别名
acetato(N-methyltetraphenylporphinato)zinc(II);[(N-methyltetraphenylporphine(-1H))Zn(OAc)];[(Ac)Zn(N-CH3)TPP];[(AcO)Zn(N-Me)TPP]
N-methyl-tetraphenylporphyrin zinc(II) acetate化学式
CAS
127972-25-2
化学式
C47H34N4O2Zn
mdl
——
分子量
752.203
InChiKey
ISXWWSFFIKPBEI-PLILZHJESA-M
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

计算性质

  • 辛醇/水分配系数(LogP):
    None
  • 重原子数:
    None
  • 可旋转键数:
    None
  • 环数:
    None
  • sp3杂化的碳原子比例:
    None
  • 拓扑面积:
    None
  • 氢给体数:
    None
  • 氢受体数:
    None

反应信息

  • 作为反应物:
    描述:
    N-methyl-tetraphenylporphyrin zinc(II) acetate 以 neat (no solvent, solid phase) 为溶剂, 生成 zinc tetraphenylporphyrin
    参考文献:
    名称:
    Synthesis, chemical stability, and electrocatalytic properties of zinc(II) and cobalt(II) complexes of N-methyltetraphenylporphine
    摘要:
    Distortion of flat ligand structure in metal complexes of porphyrins caused by N-methyl substitution considerably decreases the kinetic stability of these compounds in DMSO-HOAc proton-releasing medium ((AcO)Zn(N-Me)TPP (Ib) < (AcO)Co-II(N-Me)TPP (Ia) < ZnTPP (IIb) < (CoTPP)-T-II (IIa)) and their resistance to thermal destruction in crystal state {(AcO)Co-II(N-Me)TPP (Ia) < (AcO)Zn(N-Me)TPP (Ib) < H(N-Me)TPP (I) < H2TPP (II) < (CoTPP)-T-II (IIa) < ZnTPP (IIb)}, however, exerts a positive effect on the electrocatalytic activity of the compounds in the electroreduction of molecular oxygen, which changes in the following order: II < I < IIa < Ib A << Ia. It was proved by thermogravimetry and electron spectroscopy that N-substituted metal complexes with Zn(II) and Co(II), in contrast to the corresponding ligands, undergo dealkylation to form metal porphyrins (MP) when heated above 200A degrees C under both an inert and air oxygen atmosphere.
    DOI:
    10.1134/s0036023615100046
  • 作为产物:
    描述:
    Cd(N-Me)TTP(OAc) 在 Zn(NO3)2 作用下, 以 二甲基亚砜 为溶剂, 生成 N-methyl-tetraphenylporphyrin zinc(II) acetate
    参考文献:
    名称:
    Metal exchange reactions in cadmium complexes with porphyrins of various structures
    摘要:
    The reaction kinetics of the metal exchange Cd(II)-Cu(II) and Cd(II)-Zn(II) in the cadmium complexes (CdP) with porphyrin ligands (H(2)P) differing by degree of stiffness (tetraphenylporphin, N-methyltetraphenylporphin, and tetraphenyltetrabenzoporphin) in the DMSO medium, was studied using spectrophotometric method. The rate of metal exchange reaction depends on the nature of the non-planatrity of H(2)P in the structure of CdP complexes, as well as on the additional screening of the reaction center MN(4) by the extra-ligands and substituents. The reduction of the coordinating ability of the anion X(-) in the structure of the solvate-salt of incoming metal M'X(2)(Solv) (n-2) in a series: acetylacetonate > acetate > chloride > nitrate favors the metal exchange. In the most studied cases the reaction of CdP proceeds along a combined associative-dissociative mechanism. The order of the metal exchange reaction is found to be depending on temperature indicating a change in the contributions of associative and combined routes. The "pure" associative reaction mechanism in a medium of DMSO was for the first time found for the labile complex CdTPTBP with the saddle-type nonplanar ligand.
    DOI:
    10.1134/s1070363210030254
点击查看最新优质反应信息

文献信息

  • Some peculiarities of metal exchange reactions in porphyrin and phthalocyanine complexes
    作者:D. B. Berezin、O. V. Shukhto、M. S. Nikol?skaya、B. D. Berezin
    DOI:10.1007/s11173-005-0004-7
    日期:2005.2
    The crystal and molecular structures of the K[EuIII (Edta)(H2O)3]·3.5H2O (I) (H4Edta = ethylenediaminetetraacetic acid) and K4[Eu2III(HTtha)2] · 13.5H2O (II) (H6Ttha = triethylenetetraminehexaacetic acid) complexes have been determined by single-crystal X-ray diffraction analyses. The crystal of I belongs to orthorhombic crystal system and Fdd2 space group. The crystal data are as follows: a = 1.9849(6)nm
    K [Eu III(Edta)(H 2 O)3 ]·3.5H 2 O(I)(H 4 Edta =乙二胺四乙酸)和K 4 [Eu 2 III(HTtha)2 ]·的晶体和分子结构13.5H 2 O(II)(H 6 Ttha =三亚乙基四胺六乙酸)络合物已通过单晶X射线衍射分析确定。I的晶体属于正交晶系和Fdd2空间群。晶体数据如下:a = 1.9849(6)nm,b = 3.5598(11)nm,c = 1.2222(4)nm,V = 8.636(5)nm 3,Z = 16,M = 596.37,ρ(计算)= 1.835g / cm 3,µ = 3.166mm-1和F(000)=4752。2936年(I <2.0σ(I))反射的最终R和wR值分别为0.0269和0.0692,所有7284个唯一反射的最终R和wR值分别为0.0317和0.0708。[Eu III(Edta)(H 2 O)3 ]
  • Effect of the type of molecular nonplanar structure on the chemical reactivity of NH bonds in the coordination center of porphyrin molecule
    作者:D. B. Berezin、O. V. Mal’tseva
    DOI:10.1134/s1070363209040276
    日期:2009.4
    Effect of out-of-plane screwing of the porphyrin macrocycle (H2P) by means of tetra-meso-substitution and intracyclic N-substitution on the state of NH bonds in the molecule is explored. By applying H-1 NMR, kinetic and quantum-chemical criteria of evaluation of the macrocycle NH-reactivity is found that such type of H2P screwing does not increase reactivity of the NH bonds. It is shown that increased chemical NH activity is observed only in the porphyrins undergoing at a significant conformational screwing possess the polarization of the molecular pi-system.
  • ——
    作者:D. B. Berezin、N. V. Zharnikova、V. G. Andrianov、P. A. Shatunov、A. S. Semeikin
    DOI:10.1023/a:1015565132623
    日期:——
    The effect of peripheral substitution in the porphyrin macrocycle (H2OEtP, H2TPP) of the nature of the N-substituent (X = Me, Ph) and of the anion in the salt solvate (A = Ac-, NO3-, Acac(-)) on the complexation of the N-substituted porphyrins with zinc salts in DMSO is studied. The positions of the bands in the electronic absorption spectrum of the (A)M(N-X)P metal complex were found to depend only slightly on the nature of the A anion in the composition of the coordination sphere of the complex. An inhibition of coordination of the N-substituted H2TPP derivatives by zinc nitrate was discovered that is not typical of porphyrins proper. The type of hybridization of the substituted nitrogen atom in the porphyrin molecule is discussed. A mixed type of hybridization is suggested: the sp(2)- and p(3)-forms in the ligands and an almost complete transition to the p(3)-form in the N-substituted metal complexes.
  • Metal exchange in cadmium porphyrins with spatially shielded coordination centers
    作者:D. B. Berezin、N. V. Lazareva、O. V. Shukhto、R. S. Kumeev、A. S. Semeikin
    DOI:10.1134/s0036023613090027
    日期:2013.9
    Shielding of coordination centers in metalloporphyrins (MPs, M = Cd) through covering it with a covalently bonded "lid" or by an endocyclic N-substituent results in retardation of metal exchange reaction (Cd/Zn or Cd/Cu) by up to 10 times. A decrease in the metal exchange rate was observed in spite of the fact that the shielding gave rise to a pronounced distortion of the predominately planar structure of aromatic ligands in the MP structure in the studied objects, which was confirmed by electronic and fluorescence spectroscopy as well as by H-1 NMR spectroscopy. It was found that 2,8,12,18-tetramethyl-3,7,13,17-tetrabutyl-10,20-di-ortho-methoxyphenylporphin exists as a mixture of cis- and trans-atropisomers with a ratio of 1: 2.
  • Stability of nonplanar N-methylporphyrins and their zinc complexes
    作者:D. B. Berezin、E. N. Mis’ko、E. V. Antina、M. B. Berezin
    DOI:10.1134/s1070363206030200
    日期:2006.3
    Resistance of N-methyl-substituted porphyrins and their Zn(II) complexes to thermooxidative degradation and to the action of a DMSO-AcOH proton-donor solvent was studied by thermogravimetry and chemical kinetics. The fairly low stability of the complexes is caused by decreased planarity and, as a consequence, aromaticity of the macrorings and also by the tendency of the complexes to demethylation. The stability of the zinc complexes in AcOH varies in parallel with the degree of nonplanarity and resistance to thermooxidative degradation of their ligands.
查看更多

同类化合物

()-2-(5-甲基-2-氧代苯并呋喃-3(2)-亚乙基)乙酸乙酯 (双(2,2,2-三氯乙基)) (乙基N-(1H-吲唑-3-基羰基)ethanehydrazonoate) (Z)-3-[[[2,4-二甲基-3-(乙氧羰基)吡咯-5-基]亚甲基]吲哚-2--2- (S)-(-)-5'-苄氧基苯基卡维地洛 (S)-(-)-2-(α-(叔丁基)甲胺)-1H-苯并咪唑 (S)-(-)-2-(α-甲基甲胺)-1H-苯并咪唑 (S)-氨氯地平-d4 (S)-8-氟苯并二氢吡喃-4-胺 (S)-4-(叔丁基)-2-(喹啉-2-基)-4,5-二氢噁唑 (S)-4-氯-1,2-环氧丁烷 (S)-3-(2-(二氟甲基)吡啶-4-基)-7-氟-3-(3-(嘧啶-5-基)苯基)-3H-异吲哚-1-胺 (S)-2-(环丁基氨基)-N-(3-(3,4-二氢异喹啉-2(1H)-基)-2-羟丙基)异烟酰胺 (SP-4-1)-二氯双(喹啉)-钯 (SP-4-1)-二氯双(1-苯基-1H-咪唑-κN3)-钯 (R,S)-可替宁N-氧化物-甲基-d3 (R,S)-六氢-3H-1,2,3-苯并噻唑-2,2-二氧化物-3-羧酸叔丁酯 (R)-(+)-5'-苄氧基卡维地洛 (R)-(+)-2,2'',6,6''-四甲氧基-4,4''-双(二苯基膦基)-3,3''-联吡啶(1,5-环辛二烯)铑(I)四氟硼酸盐 (R)-卡洛芬 (R)-N'-亚硝基尼古丁 (R)-DRF053二盐酸盐 (R)-4-异丙基-2-恶唑烷硫酮 (R)-3-甲基哌啶盐酸盐; (R)-2-苄基哌啶-1-羧酸叔丁酯 (N-(Boc)-2-吲哚基)二甲基硅烷醇钠 (N-{4-[(6-溴-2-氧代-1,3-苯并恶唑-3(2H)-基)磺酰基]苯基}乙酰胺) (E)-2-氰基-3-(5-(2-辛基-7-(4-(对甲苯基)-1,2,3,3a,4,8b-六氢环戊[b]吲哚-7-基)-2H-苯并[d][1,2,3]三唑-4-基)噻吩-2-基)丙烯酸 (E)-2-氰基-3-[5-(2,5-二氯苯基)呋喃-2-基]-N-喹啉-8-基丙-2-烯酰胺 (8α,9S)-(+)-9-氨基-七氢呋喃-6''-醇,值90% (6R,7R)-7-苯基乙酰胺基-3-[(Z)-2-(4-甲基噻唑-5-基)乙烯基]-3-头孢唑啉-4-羧酸二苯甲基酯 (6-羟基嘧啶-4-基)乙酸 (6,7-二甲氧基-4-(3,4,5-三甲氧基苯基)喹啉) (6,6-二甲基-3-(甲硫基)-1,6-二氢-1,2,4-三嗪-5(2H)-硫酮) (5aS,6R,9S,9aR)-5a,6,7,8,9,9a-六氢-6,11,11-三甲基-2-(2,3,4,5,6-五氟苯基)-6,9-甲基-4H-[1,2,4]三唑[3,4-c][1,4]苯并恶嗪四氟硼酸酯 (5R,Z)-3-(羟基((1R,2S,6S,8aS)-1,3,6-三甲基-2-((E)-prop-1-en-1-yl)-1,2,4a,5,6,7,8,8a-八氢萘-1-基)亚甲基)-5-(羟甲基)-1-甲基吡咯烷-2,4-二酮 (5E)-5-[(2,5-二甲基-1-吡啶-3-基-吡咯-3-基)亚甲基]-2-亚磺酰基-1,3-噻唑烷-4-酮 (5-(4-乙氧基-3-甲基苄基)-1,3-苯并二恶茂) (5-溴-3-吡啶基)[4-(1-吡咯烷基)-1-哌啶基]甲酮 (5-氯-2,1,3-苯并噻二唑-4-基)-氨基甲氨基硫代甲酸甲酯一氢碘 (5-氨基-6-氰基-7-甲基[1,2]噻唑并[4,5-b]吡啶-3-甲酰胺) (5-氨基-1,3,4-噻二唑-2-基)甲醇 (4aS-反式)-八氢-1H-吡咯并[3,4-b]吡啶 (4aS,9bR)-6-溴-2,3,4,4a,5,9b-六氢-1H-吡啶并[4,3-B]吲哚 (4S,4''S)-2,2''-环亚丙基双[4-叔丁基-4,5-二氢恶唑] (4-(4-氯苯基)硫代)-10-甲基-7H-benzimidazo(2,1-A)奔驰(德)isoquinolin-7一 (4-苄基-2-甲基-4-nitrodecahydropyrido〔1,2-a][1,4]二氮杂) (4-甲基环戊-1-烯-1-基)(吗啉-4-基)甲酮 (4-己基-2-甲基-4-nitrodecahydropyrido〔1,2-a][1,4]二氮杂) (4,5-二甲氧基-1,2,3,6-四氢哒嗪)