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2,8,14-tri(1-dodecylaminocarbonyl)-5,6,11,12,17,18-hexaazatrinaphthylene

中文名称
——
中文别名
——
英文名称
2,8,14-tri(1-dodecylaminocarbonyl)-5,6,11,12,17,18-hexaazatrinaphthylene
英文别名
6-N,16-N,26-N-tridodecyl-3,10,13,20,23,30-hexazaheptacyclo[20.8.0.02,11.04,9.012,21.014,19.024,29]triaconta-1(30),2,4(9),5,7,10,12,14(19),15,17,20,22,24(29),25,27-pentadecaene-6,16,26-tricarboximidic acid
2,8,14-tri(1-dodecylaminocarbonyl)-5,6,11,12,17,18-hexaazatrinaphthylene化学式
CAS
——
化学式
C63H87N9O3
mdl
——
分子量
1018.44
InChiKey
GPPCJUAQSHEOFB-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):
    18.6
  • 重原子数:
    75
  • 可旋转键数:
    36
  • 环数:
    7.0
  • sp3杂化的碳原子比例:
    0.57
  • 拓扑面积:
    175
  • 氢给体数:
    3
  • 氢受体数:
    12

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

  • 作为产物:
    参考文献:
    名称:
    Patterning of Robust Self-Assembled n-type Hexaazatrinaphthylene-Based Nanorods and Nanowires by Microcontact Printing
    摘要:
    The one-dimensional (1-D) self-assembly property of an n-type hexaazatrinaphthylene (HATNA) discotic pi-conjugated molecule was studied. Structurally robust unimolecular columnar stacks of HATNA with tunable length have been fabricated through a combination of supramolecular self-assembly and post-polymerization approach. Moreover, microcontact printing can be utilized to transfer the self-assembled nanostructures to the surface to create desired functional patterns.
    DOI:
    10.1021/ja064934k
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文献信息

  • Patterning of Robust Self-Assembled n-type Hexaazatrinaphthylene-Based Nanorods and Nanowires by Microcontact Printing
    作者:Hin-Lap Yip、Jingyu Zou、Hong Ma、Yanqing Tian、Neil M. Tucker、Alex K.-Y. Jen
    DOI:10.1021/ja064934k
    日期:2006.10.1
    The one-dimensional (1-D) self-assembly property of an n-type hexaazatrinaphthylene (HATNA) discotic pi-conjugated molecule was studied. Structurally robust unimolecular columnar stacks of HATNA with tunable length have been fabricated through a combination of supramolecular self-assembly and post-polymerization approach. Moreover, microcontact printing can be utilized to transfer the self-assembled nanostructures to the surface to create desired functional patterns.
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