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1-(3-((3-(2,5,8,11-tetraoxadodecyl)-5-ethynylphenyl)ethynyl)-5-((3-((3-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)-5-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)phenyl)-2,5,8,11-tetraoxadodecane | 318262-32-7

中文名称
——
中文别名
——
英文名称
1-(3-((3-(2,5,8,11-tetraoxadodecyl)-5-ethynylphenyl)ethynyl)-5-((3-((3-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)-5-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)phenyl)-2,5,8,11-tetraoxadodecane
英文别名
——
1-(3-((3-(2,5,8,11-tetraoxadodecyl)-5-ethynylphenyl)ethynyl)-5-((3-((3-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)-5-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)phenyl)-2,5,8,11-tetraoxadodecane化学式
CAS
318262-32-7
化学式
C64H82O16
mdl
——
分子量
1107.35
InChiKey
BOLZJFKJJMLCJN-UHFFFAOYSA-N
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):
    6.65
  • 重原子数:
    80.0
  • 可旋转键数:
    44.0
  • 环数:
    4.0
  • sp3杂化的碳原子比例:
    0.5
  • 拓扑面积:
    147.68
  • 氢给体数:
    0.0
  • 氢受体数:
    16.0

上下游信息

  • 上游原料
    中文名称 英文名称 CAS号 化学式 分子量

反应信息

  • 作为反应物:
    描述:
    (3-(3-Iodo-5-{2-[2-(2-methoxy-ethoxy)-ethoxy]-ethoxymethyl}-phenylethynyl)-5-{2-[2-(2-methoxy-ethoxy)-ethoxy]-ethoxymethyl}-phenylethynyl)-trimethyl-silane 、 1-(3-((3-(2,5,8,11-tetraoxadodecyl)-5-ethynylphenyl)ethynyl)-5-((3-((3-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)-5-(2,5,8,11-tetraoxadodecyl)phenyl)ethynyl)phenyl)-2,5,8,11-tetraoxadodecane 在 tris(dibenzylideneacetone)dipalladium (0) copper(l) iodide三乙胺三苯基膦 作用下, 以81%的产率得到
    参考文献:
    名称:
    Solvophobically Driven π-Stacking of Phenylene Ethynylene Macrocycles and Oligomers
    摘要:
    Phenylene ethynylene macrocycles and oligomers with three different side-chain linking groups (ester, benzyl ether, and phenyl ether) were synthesized to investigate their tendency to undergo solvent induced pi -stacked organization. H-1 NMR, UV, and fluorescence spectroscopies were used to probe two types of pi -stacked supramolecular organizations: the intramolecular conformational ordering of the oligomers, and the intermolecular aggregation of the macrocycles. One important conclusion is that solvent can play a very dramatic role in modulating the strength of the interactions that drive the association of these ct-stacked structures. The other important conclusion is that in a given solvent, the nature of the side chain linking group strongly influences the pi -stacking propensities. It was found that macrocycles and oligomers with the ether side chain linking group were prone to adopt pi -stacked structures in a range of solvents, whereas the corresponding macrocycles with benzyl ether and phenyl ether side chain linking groups showed only limited ability to pi -stack, even in the most polar solvent examined (DMSO). In the interest of manipulating the helix-coil folding transition of phenylene ethynylene oligomers, a heterosequence consisting of monomers with ester and benzyl ether side chain linkages was synthesized. The folding transition of the heterooligomer was intermediate to that observed for the corresponding homooligomers, suggesting that the backbone sequence can be used to tune the stability of conformations that are based on pi -stacked organizations.
    DOI:
    10.1021/ja002129e
  • 作为产物:
    参考文献:
    名称:
    Solvophobically Driven π-Stacking of Phenylene Ethynylene Macrocycles and Oligomers
    摘要:
    Phenylene ethynylene macrocycles and oligomers with three different side-chain linking groups (ester, benzyl ether, and phenyl ether) were synthesized to investigate their tendency to undergo solvent induced pi -stacked organization. H-1 NMR, UV, and fluorescence spectroscopies were used to probe two types of pi -stacked supramolecular organizations: the intramolecular conformational ordering of the oligomers, and the intermolecular aggregation of the macrocycles. One important conclusion is that solvent can play a very dramatic role in modulating the strength of the interactions that drive the association of these ct-stacked structures. The other important conclusion is that in a given solvent, the nature of the side chain linking group strongly influences the pi -stacking propensities. It was found that macrocycles and oligomers with the ether side chain linking group were prone to adopt pi -stacked structures in a range of solvents, whereas the corresponding macrocycles with benzyl ether and phenyl ether side chain linking groups showed only limited ability to pi -stack, even in the most polar solvent examined (DMSO). In the interest of manipulating the helix-coil folding transition of phenylene ethynylene oligomers, a heterosequence consisting of monomers with ester and benzyl ether side chain linkages was synthesized. The folding transition of the heterooligomer was intermediate to that observed for the corresponding homooligomers, suggesting that the backbone sequence can be used to tune the stability of conformations that are based on pi -stacked organizations.
    DOI:
    10.1021/ja002129e
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同类化合物

(11aR)-3,7-双(3,5-二甲基苯基)-10,11,12,13-四氢-5-羟基-5-氧化物-二茚基[7,1-de:1'',7''-fg][1,3,2]二氧杂膦酸 龙血素C 顺-1,7-二苯基-1-庚烯基-5-醇 那洛西芬 赤杨酮 赤杨二醇 血竭素 蒙桑酮C 萘-2,7-二磺基酸,钠盐 苯酚,4-(1,3-二苯基丁基)-2-(1-苯基乙基)- 苯甲酸,2-[[2-[(2-羧基苯基)氨基]-5-(三氟甲基)苯基]氨基]-5-[[[(4-羟基-3-甲氧苯基)甲基]氨基]甲基]- 苯基-[4-(2-苯基乙炔基)苯基]甲酮 苯基-[2-[3-(三氟甲基)苯基]苯基]甲酮 苯基-[2-(2-苯基苯基)苯基]甲酮 苯基-(3-苯基萘-2-基)甲酮 苯基-(2-苯基环己基)甲酮 苯,[(二甲基苯基)甲基]甲基[(甲基苯基)甲基]- 苯,1,3-二[1-甲基-1-[4-(4-硝基苯氧基)苯基]乙基]- 脱甲氧姜黄 紫外吸收剂 234 粗糠柴苦素 硫酸姜黄素 矮紫玉盘素 益智醇 白桦林烯酮;1,7-双(4-羟基苯基)-4-庚烯-3-酮 甲酮,苯基(1,6,7,8-四氢-1-甲基-5-苯基环戊二烯并[g]吲哚-3-基)- 甲酮,[3-(4-甲氧苯基)-1-苯基-9H-芴-4-基]苯基- 甲酮,(4-氯苯基)[1-(4-氯苯基)-3-苯基-9H-芴-4-基]- 环香草酮 溴敌隆 波森 桤木酮 桑根酮D 杨梅醇 杨梅酮 杨梅联苯环庚醇-15-葡糖苷 替拉那韦 替吡法尼(S型对映体) 替吡法尼 曲沃昔芬 姜黄素葡糖苷酸 姜黄素beta-D-葡糖苷酸 姜黄素4,4'-二乙酸酯 姜黄素-d6 姜黄素 姜烯酮 A 奈帕芬胺杂质D 四甲基姜黄素 四氢脱甲氧基二阿魏酰甲烷 四氢姜黄素二乙酸酯