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6-(1-naphthyl)hexanoic acid | 22504-86-5

中文名称
——
中文别名
——
英文名称
6-(1-naphthyl)hexanoic acid
英文别名
6-(1-naphtyl)hexanoic acid;6-[1]naphthyl-hexanoic acid;6-[1]Naphthyl-hexansaeure;1-Naphthalenehexanoic acid;6-naphthalen-1-ylhexanoic acid
6-(1-naphthyl)hexanoic acid化学式
CAS
22504-86-5
化学式
C16H18O2
mdl
MFCD21397091
分子量
242.318
InChiKey
IIFIQTCFHBQJOZ-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):
    4.8
  • 重原子数:
    18
  • 可旋转键数:
    6
  • 环数:
    2.0
  • sp3杂化的碳原子比例:
    0.312
  • 拓扑面积:
    37.3
  • 氢给体数:
    1
  • 氢受体数:
    2

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:
    参考文献:
    名称:
    Structure–activity relationships of novel piperazines as antagonists for the melanocortin-4 receptor
    摘要:
    During the investigation of antagonists for the MC4 receptor, we found that 10ab having a naphthyl group showed almost the same binding affinity for the MC4 receptor as that of the lead compound I with a benzoyl group. We also developed a new type of compounds.. namely, bis-piperazines, and found that the bis-piperazines 10 exhibited a high affinity for the MC4 receptor. In particular, (-)-10bg exhibited the highest affinity for the MC4 receptor with an IC50 value of 8.13 nM. In this paper, we present the design, synthesis, and structure-activity relationships of the novel bis-piperazines as MC4 receptor antagonists. (c) 2007 Elsevier Ltd. All rights reserved.
    DOI:
    10.1016/j.bmc.2006.12.039
  • 作为产物:
    描述:
    6-(1-萘基)-6-氧代己酸盐酸 、 amalgamated zinc 作用下, 生成 6-(1-naphthyl)hexanoic acid
    参考文献:
    名称:
    植物生长物质:ω-芳基-和ω-芳氧基-烷基羧酸
    摘要:
    结合植物生长活性的研究,合成了许多 R[CH2]CO2H 型羧酸。它们包括 ω-取代的烷基羧酸的五个同源系列的前六或七个成员,即邻甲氧基苯氧基-、对氯苯氧基-、2:4-二氯苯氧基-、2:4:5-三氯苯氧基-和 1-萘基-烷基羧酸;和五个1-萘基-烷基羧酸,其中烷基链被支化或以其他方式改性。苯氧酸是通过经典方法制备的,但对于许多 1-萘酸,采用了涉及使用有机镉化合物的方法。
    DOI:
    10.1002/jsfa.2740070504
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文献信息

  • Plant-growth substances: ω-aryl- and ω-aryloxy-alkylcarboxylic acids
    作者:K. Gaimster
    DOI:10.1002/jsfa.2740070504
    日期:1956.5
    carboxylic acids of the type R[CH2] CO2H have been synthesized in connexion with studies of plant-growth activity. They include the first six or seven members of five homologous series of ω-substituted alkylcarboxylic acids, namely o-methoxyphenoxy-, p-chlorophenoxy-, 2:4-dichlorophenoxy-, 2:4:5-trichlorophenoxy- and 1-naphthyl-alkylcarboxylic acids; and five 1-naphthyl-alkylcarboxylic acids in which
    结合植物生长活性的研究,合成了许多 R[CH2]CO2H 型羧酸。它们包括 ω-取代的烷基羧酸的五个同源系列的前六或七个成员,即邻甲氧基苯氧基-、对氯苯氧基-、2:4-二氯苯氧基-、2:4:5-三氯苯氧基-和 1-萘基-烷基羧酸;和五个1-萘基-烷基羧酸,其中烷基链被支化或以其他方式改性。苯氧酸是通过经典方法制备的,但对于许多 1-萘酸,采用了涉及使用有机镉化合物的方法。
  • Adsorption-desorption method for the separation of water soluble organic compounds from aqueous solution
    申请人:MITSUI TOATSU CHEMICALS, Inc.
    公开号:EP0161882A2
    公开(公告)日:1985-11-21
    An adsorbent is obtained by water-insolubilizing a homopolymer of one of N,N-di-substituted (meth)acrylamides represented by the structural formula given herein, a copolymer of two or more of the N,N-di-substituted (meth)-acrylamides or a copolymer of one or more of the N,N-di--substituted (meth)acrylamides and one or more copolymerizable monomers other than the N,N-di-substituted (meth)--acrylamides, said (meth)acrylamides being represented by the formulae: or wherein Rl stands for a hydrogen atom or methyl group, A stands for ―(CH2)n―, n being 4 - 6, or ―(CH2)2 0 ―(CH2)―, and Rz denotes a methyl or ethyl group. The adsorbent has the property that it is hydrophobicized to have higher adsorbability when heated and its adsorbability drops when cooled.
    一种吸附剂是通过将本文给出的结构式所代表的一种 N,N-二取代(甲基)丙烯酰胺的均聚物、两种或两种以上 N、N,N-二取代(甲基)丙烯酰胺的均聚物、两种或多种 N,N-二取代(甲基)丙烯酰胺的共聚物,或一种或多种 N,N-二取代(甲基)丙烯酰胺与一种或多种 N,N-二取代(甲基)丙烯酰胺以外的可共聚单体的共聚物,所述(甲基)丙烯酰胺由以下结构式表示: 或 其中 Rl 表示氢原子或甲基,A 表示-(CH2)n-,n 为 4-6 或-(CH2)2 0-(CH2)-,Rz 表示甲基或乙基。这种吸附剂具有疏水性,加热时吸附性较高,冷却时吸附性下降。
  • METAL CATALYST FOR RING-OPENING POLYMERIZATION OF HETEROCYCLIC COMPOUND
    申请人:SANYO CHEMICAL INDUSTRIES, LTD.
    公开号:EP1340780A1
    公开(公告)日:2003-09-03
    The object of the present invention is to provide a metal catalyst which allows the production of a ring-opened polymer available from a heterocyclic compound, having primary terminal heteroatomic groups (terminal hydroxyl groups, in particular) in a ratio exceeding 75%. The above object can be attained by using a metal catalyst comprising a ligand and a metal atom for ring-opening polymerization of heterocyclic compounds    in which, of all maximum angles (D) meeting the following definition, the smallest maximum angle (Dm) is not larger than 60 degrees; The maximum angle (D) is the largest angle between an imaginary line (X) and an imaginary line (Y) of all the angles which can be assumed in a metal catalyst comprising a ligand and a metal atom,    said imaginary line (X) means a line perpendicular to an imaginary plane (P) including the respective centers of 3 coordinating atoms among those directly coordinating the metal atom (M) and not substitutable by a reaction substrate (S) and passing through the center of the metal atom,    said imaginary line (Y) means a line linking the center of a non-coordinating atom in the ligand and the center of the metal atom,    and said maximum angle (D) exists in a number equal to the number of non-coordinating atoms, that is, the number of imaginary lines (Y).
    本发明的目的是提供一种金属催化剂,该催化剂可以从杂环化合物中生产开环聚合 物,该杂环化合物具有初级末端杂原子基团(特别是末端羟基),其比例超过 75%。 使用由配体和金属原子组成的金属催化剂进行杂环化合物的开环聚合,可达到上述目的 其中,在所有符合以下定义的最大角度 (D) 中,最小的最大角度 (Dm) 不大于 60 度; 最大角度 (D) 是指在由配体和金属原子组成的金属催化剂中,假想线 (X) 和假想线 (Y) 之间的最大角度、 所述假想线 (X) 是指垂直于假想平面 (P) 的一条线,假想平面 (P) 包括直接配位金属原子 (M) 的 3 个配位原子各自的中心,且不能被反应底物 (S) 取代,并通过金属原子的中心、 所述虚线 (Y) 是指连接配体中的非配位原子中心和金属原子中心的一条线、 所述最大角度 (D) 的存在数量等于非配位原子的数量,即虚线 (Y) 的数量。
  • Metal catalyst for ring-opening polymerization of heterocyclic compound
    申请人:——
    公开号:US20040030093A1
    公开(公告)日:2004-02-12
    The object of the present invention is to provide a metal catalyst which allows the production of a ring-opened polymer available from a heterocyclic compound, having primary terminal heteroatomic groups (terminal hydroxyl groups, in particular) in a ratio exceeding 75%. The above object can be attained by using a metal catalyst comprising a ligand and a metal atom for ring-opening polymerization of heterocyclic compounds in which, of all maximum angles (D) meeting the following definition, the smallest maximum angle (Dm) is not larger than 60 degrees; The maximum angle (D) is the largest angle between an imaginary line (X) and an imaginary line (Y) of all the angles which can be assumed in a metal catalyst comprising a ligand and a metal atom, said imaginary line (X) means a line perpendicular to an imaginary plane (P) including the respective centers of 3 coordinating atoms among those directly coordinating the metal atom (M) and not substitutable by a reaction substrate (S) and passing through the center of the metal atom, said imaginary line (Y) means a line linking the center of a non-coordinating atom in the ligand and the center of the metal atom, and said maximum angle (D) exists in a number equal to the number of non-coordinating atoms, that is, the number of imaginary lines (Y).
    本发明的目的是提供一种金属催化剂,该催化剂可以从杂环化合物中生产开环聚合 物,该杂环化合物具有初级末端杂原子基团(特别是末端羟基),其比例超过 75%。 使用由配体和金属原子组成的金属催化剂进行杂环化合物的开环聚合,可达到上述目的 其中,在所有符合以下定义的最大角度 (D) 中,最小的最大角度 (Dm) 不大于 60 度; 最大角度 (D) 是指在由配体和金属原子组成的金属催化剂中,假想线 (X) 和假想线 (Y) 之间的最大角度、 所述假想线 (X) 是指垂直于假想平面 (P) 的一条线,假想平面 (P) 包括直接配位金属原子 (M) 的 3 个配位原子各自的中心,且不能被反应底物 (S) 取代,并通过金属原子的中心、 所述虚线 (Y) 是指连接配体中的非配位原子中心和金属原子中心的一条线、 所述最大角度 (D) 的存在数量等于非配位原子的数量,即虚线 (Y) 的数量。
  • Solid-phase synthesis and SAR of 4-carboxy-2-azetidinone mechanism-based tryptase inhibitors
    作者:James C Sutton、Scott A Bolton、Malcolm E Davis、Karen S Hartl、Bruce Jacobson、Arvind Mathur、Martin L Ogletree、William A Slusarchyk、Robert Zahler、Steven M Seiler、Gregory S Bisacchi
    DOI:10.1016/j.bmcl.2004.02.012
    日期:2004.5
    A series of nonguanidine N1-activated C4-carboxy azetidinone tryptase inhibitors was prepared by solid-phase methodology to quickly assess the SAR associated with distal functionality on the N1-activating group. From these studies, potent inhibitors with improved specificity were discovered.
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