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11H-全氟癸酸 | 1765-48-6

中文名称
11H-全氟癸酸
中文别名
11H-全氟十一酸
英文名称
11-hydroperfluoroundecanoic acid
英文别名
11H-eicosafluoro-undecanoic acid;11H-Eicosafluor-undecansaeure;2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,11,11-icosafluoroundecanoic acid;10H-Ikosifluor-undecansaeure
11H-全氟癸酸化学式
CAS
1765-48-6
化学式
C11H2F20O2
mdl
MFCD00042431
分子量
546.104
InChiKey
MMYNPHSPRPZSSN-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

物化性质

  • 熔点:
    102-104°C
  • 密度:
    1.7297 (estimate)
  • 闪点:
    >100°C
  • 稳定性/保质期:
    远离热源、火焰和火花,远离氧化剂。

计算性质

  • 辛醇/水分配系数(LogP):
    6.7
  • 重原子数:
    33
  • 可旋转键数:
    10
  • 环数:
    0.0
  • sp3杂化的碳原子比例:
    0.909
  • 拓扑面积:
    37.3
  • 氢给体数:
    1
  • 氢受体数:
    22

ADMET

毒理性
  • 副作用
Dermatotoxin - 皮肤烧伤。
Dermatotoxin - Skin burns.
来源:Haz-Map, Information on Hazardous Chemicals and Occupational Diseases

安全信息

  • TSCA:
    T
  • 危险等级:
    8
  • 危险品标志:
    C
  • 安全说明:
    S36/37/39
  • 危险类别码:
    R34
  • RTECS号:
    YQ2400000
  • 包装等级:
    II
  • 危险类别:
    8
  • 危险品运输编号:
    3261
  • 储存条件:
    密封贮藏,存放在阴凉、干燥、通风的地方;避免接近热源、火焰或火花,并远离氧化剂。

SDS

SDS:d81b2df67f6bf0f96fc49dcdabad8ca5
查看

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:
    参考文献:
    名称:
    基于全氟化碳的抗糖尿病药。
    摘要:
    在初步通讯中(J. Med。Chem。1989,32,11-13),设计了一系列全氟-N- [4-(1H-四唑-5基甲基)苯基]链烷醇酰胺(全氟酸酐I),设计为新型类似物据报道,在两种非胰岛素依赖型糖尿病(NIDDM)的遗传动物模型中,西格列酮的ciglitazone具有口服降糖活性:肥胖(ob / ob)和糖尿病(db / db)小鼠。在本报告中,描述了系列I的结构-活性关系(SAR)研究的结果。通过新应用通用统计程序,对在ob / ob小鼠中筛选出的降低血糖的86种类似物进行了全面的统计分析,这使得有可能在140多个独立实验之间进行有意义的比较(N = 2966)。全氟乙酸酐可降低高血糖ob / ob和db / db小鼠的血浆葡萄糖,但不能降低正常血糖正常大鼠的血浆葡萄糖。在高胰岛素ob / ob小鼠中,血浆胰岛素水平的下降与血浆葡萄糖的下降平行。结果表明,该系列药物的效力和功效取决于
    DOI:
    10.1021/jm00083a021
  • 作为产物:
    描述:
    1H,1H,11H-二十氟-1-十一醇 在 potassium dichromate 、 硫酸 作用下, 生成 11H-全氟癸酸
    参考文献:
    名称:
    全氟烷烃的构象能。5. H(CF2)nH和H(CF2)nI的偶极矩
    摘要:
    DOI:
    10.1021/j150622a020
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文献信息

  • Recovery method for catalysts, reagents and co-products
    申请人:——
    公开号:US20040127755A1
    公开(公告)日:2004-07-01
    The present invention provides a method for conducting a chemical reaction in a non-fluorous medium using a fluorous compound in the presence of a solid adsorbant containing a fluorous domain and at least one chemical reactant, comprising contacting the fluorous compound and at least one chemical reactant under conditions that form at least one product.
    本发明提供了一种在非氟介质中利用氟化合物在含有氟域和至少一种化学反应物的固体吸附剂存在下进行化学反应的方法,包括在形成至少一种产物的条件下接触氟化合物和至少一种化学反应物。
  • Plastic optical fibers and transparent resin used therefor
    申请人:HITACHI, LTD.
    公开号:EP0226020A2
    公开(公告)日:1987-06-24
    A plastic optical fiber comprising a core and a clad, said core being formed by an amorphous and optically transparent polymer and said clad being formed by a polymer having a refractive index lower than that of the core by at least 0.3%, at least one of the core and the clad being formed by an amorphous and optically transparent polymer containing metal elements and halogen atoms, is low in light loss and excellent in heat resistance.
    一种塑料光纤,包括纤芯和包层,所述纤芯由无定形光学透明聚合物形成,所述包层由折射率比纤芯低至少 0.3% 的聚合物形成,纤芯和包层中至少有一个由含有金属元素和卤素原子的无定形光学透明聚合物形成,具有低光损耗和优异的耐热性。
  • Polyolefin resin composition and film thereof
    申请人:SUMITOMO CHEMICAL COMPANY, LIMITED
    公开号:EP0552063A1
    公开(公告)日:1993-07-21
    Provided is an incineratable polyolefin resin composition containing a fluoroalkyl group-containing compound. The resin composition comprises a polyolefin resin, an inorganic compound having silicon-oxygen bond or aluminium-oxygen bond, and a fluoroalkyl group-containing compound.
    本文提供了一种含有含氟烷基化合物的可焚烧聚烯烃树脂组合物。该树脂组合物由聚烯烃树脂、具有硅氧键或铝氧键的无机化合物和含氟烷基化合物组成。
  • Fluorous multiphase catalyst or reagent systems, and processes using them
    申请人:EXXON RESEARCH AND ENGINEERING COMPANY
    公开号:EP0633062A1
    公开(公告)日:1995-01-11
    Stoichiometric and catalytic chemical transformations may be carried out in solution using novel fluorous multiphase systems (FMS). "Fluorous" denotes a carbon-fluorine bond rich organic molecule derived by replacing hydrogen atoms bonded to carbon atoms with fluorine. The FMS consists of a fluorous phase containing a fluorous solvent, typically a fluorocarbon or a fluorohydrocarbon (with or without substituent groups), and a reagent or a catalyst containing a sufficient number of fluorous moieties to render it preferentially soluble in the fluorous solvent and located at the interface of the fluorous and nonfluorous phases. The nonfluorous (i.e. the second) solvent, may be any known organic or nonorganic solvent(s) with limited or no solubility in the fluorous solvent that is effective for dissolving the reactants and/or separating the reaction products (e.g., a nonfluorous solvent having a Hildebrand solubility parameter of at least about 18.0 MPa½). The reaction can occur simultaneously in the fluorous phase and at the interface of the phases. The FMS reagents and FMS catalysts contain sufficient number of fluorous moieties to render them preferentially soluble into the fluorous phase and at the interface without impairing the efficacy or participation of the catalyst or reagent in the reaction which is maintained in a liquid or fluid phase. The preferred fluorous moieties are linear, branched and carbocyclic fluorocarbon alkyl chains with high carbon numbers that enable the catalyst or reagent to remain fluorous-phase compatible. The fluorous moieties may also contain O, S, N, P, As and Si, that assist in rendering the catalysts and reagents fluorous phase compatible. The FMS reagents and catalysts can be prepared by (1) fluorination (i.e., replacement of C-H bonds with fluorine); (2) fluorofunctionalization, e.g., the attachment of fluorous moieties to the reagents or catalysts; or (3) by total synthesis. The fluorous multiphase systems have utility to facilitate the separation of the FMS catalyst or spent FMS reagent, which has utility in the design and synthesis of catalysts and reagents with high product selectivity, resulting in especially environmentally friendly processes.
    利用新型多相系统(FMS)可以在溶液中进行化学计量和催化化学转化。氟 "是指通过用氟取代与碳原子结合的氢原子而得到的富含碳-氟键的有机分子。FMS 由一个含氟相和一个试剂或催化剂组成,前者含有氟溶剂,通常是碳氟化合物或碳氢化合物(带或不带取代基),后者含有足够数量的氟分子,使其优先溶于氟溶剂,并位于氟相和非氟相的界面上。非流相(即第二种)溶剂可以是任何已知的有机或无机溶剂,它们在流相溶剂中的溶解度有限或没有溶解度,但对溶解反应物和/或分离反应产物有效(例如,希尔德布兰德溶解度参数至少为约 18.0 MPa½的非流相溶剂)。反应可同时在流相和两相界面上进行。FMS 试剂和 FMS 催化剂含有足够数量的含氟分子,使其优先溶解在含氟相和界面中,而不影响催化剂或试剂在液相或流体相中反应的功效或参与。优选的含氟分子为高碳原子数的线性、支链和碳环氟碳烷基链,可使催化剂或试剂保持氟相相容性。多孔分子还可能含有 O、S、N、P、As 和 Si,有助于使催化剂和试剂具有多孔相容性。氟多相试剂和催化剂可通过以下方法制备:(1) 氟化(即用氟取代 C-H 键);(2) 氟官能化,例如在试剂或催化剂上附着多孔分子;或 (3) 全合成。 氟多相系统可用于促进氟化烃催化剂或废氟化烃试剂的分离,这在设计和合成具有高产品选择性的催化剂和试剂方面非常有用,可产生特别环保的工艺。
  • METHOD FOR FORMING MULTILAYER RESIST
    申请人:DAIKIN INDUSTRIES, LTD.
    公开号:EP1686425A1
    公开(公告)日:2006-08-02
    There is formed a laminated resist which exhibits sufficient reflection reducing effect in a photolithography process using light of vacuum ultraviolet region and also has sufficient developing characteristics in a developing process. The method of forming the laminated photoresist comprises (I) a step for forming the photoresist layer (L1) on a substrate and (II) a step for forming the antireflection layer (L2) on the photoresist layer (L1) by applying the coating composition containing the fluorine-containing polymer (A) having hydrophilic group Y. The fluorine-containing polymer (A) contains a structural unit derived from a fluorine-containing ethylenic monomer having hydrophilic group Y and is characterized in that (i) the hydrophilic group Y contains an acidic OH group having a pKa value of not more than 11, (ii) a fluorine content is not less than 50 % by mass, and (iii) the number of moles of the hydrophilic group Y in 100 g of the fluorine-containing polymer (A) is not less than 0.14.
    形成了一种层状光刻胶,它在使用真空紫外区光的光刻工艺中显示出足够的减反射效果,并且在显影工艺中具有足够的显影特性。形成层状光刻胶的方法包括:(I) 在基底上形成光刻胶层 (L1) 的步骤;(II) 在光刻胶层 (L1) 上形成抗反射层 (L2) 的步骤,该步骤通过涂敷含有亲水基团 Y 的含氟聚合物 (A) 的涂层组合物来实现。含氟聚合物(A)含有由具有亲水基团 Y 的含氟乙烯单体衍生的结构单元,其特征在于:(i) 亲水基团 Y 含有 pKa 值不大于 11 的酸性 OH 基团;(ii) 氟含量不小于 50%(按质量计);(iii) 100 克含氟聚合物(A)中亲水基团 Y 的摩尔数不小于 0.14。
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