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Hexyl-p-nitro-benzolsulfonat | 960-39-4

中文名称
——
中文别名
——
英文名称
Hexyl-p-nitro-benzolsulfonat
英文别名
Hexyl 4-nitrobenzenesulfonate
Hexyl-p-nitro-benzolsulfonat化学式
CAS
960-39-4
化学式
C12H17NO5S
mdl
——
分子量
287.337
InChiKey
IQITXJFUIBFHIA-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):
    3.4
  • 重原子数:
    19
  • 可旋转键数:
    7
  • 环数:
    1.0
  • sp3杂化的碳原子比例:
    0.5
  • 拓扑面积:
    97.6
  • 氢给体数:
    0
  • 氢受体数:
    5

反应信息

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文献信息

  • Photooxidation of Alkyl 4-Nitrophenyl Sulfides and Sulfoxides. Observation of Oxidative C-S Bond Cleavage and Rearrangement Reactions
    作者:Daniel J. Pasto、Francois Cottard、Laurent Jumelle
    DOI:10.1021/ja00099a015
    日期:1994.10
    Alkyl 4-nitrophenyl sulfides and sulfoxides undergo a self-photoinduced, singlet oxygen oxidation to produce a variety of products, including sulfonates and carbonyl compounds formed by the oxidative cleavage of the C-S bond of the sulfides and sulfoxides. Structural rearrangements are observed in the resulting carbonyl compounds formed in the oxidative cleavage of the C-S bond in the tert-amyl and 2-phenylethyl sulfides. An overall mechanism is proposed which involves the formation of peroxysulfoxides and peroxysulfones which undergo heterolytic C-S bond cleavage to form ion pairs which recombine to form persulfenates or persulfinates which then undergo photo- and/or thermally-induced homolytic O-O bond cleavage to form alkoxy and sulfinyl or sulfonyl radicals. The alkoxy radicals undergo beta-scission, disproportionation, or recombination with the sulfonyl radical to form the observed products. These C-S oxidative cleavage reactions have only been rarely observed in the earlier studies on the singlet oxygen oxidation studies of dialkyl sulfides, and are attributed, in part, to the presence of the 4-nitro group on the aromatic ring which greatly affects the susceptibility of the sulfur atom of the sulfides and sulfoxides toward nucleophilic attack, and on the reactivity of the peroxysulfoxides and peroxysulfones toward heterolytic cleavage of the O-S bond.
  • 1,2-, 1,4-, 1,5-, and 1,6-Halogen participation in the trifluoroacetolysis of primary alkyl nosylates
    作者:Paul E. Peterson、Joseph F. Coffey
    DOI:10.1021/ja00749a040
    日期:1971.10
  • Cationic Cyclizations Involving Olefinic Bonds. II.<sup>1</sup> Solvolysis of 5-Hexenyl and <i>trans</i>-5,9-Decadienyl <i>p</i>-Nitrobenzenesulfonates
    作者:William S. Johnson、Denis M. Bailey、Raymond. Owyang、Russell A. Bell、Brian. Jaques、Jack K. Crandall
    DOI:10.1021/ja01064a012
    日期:1964.5
  • Inscribing the Perimeter of the PagP Hydrocarbon Ruler by Site-Specific Chemical Alkylation
    作者:M. Adil Khan、Joel Moktar、Patrick J. Mott、Mary Vu、Aaron H. McKie、Thomas Pinter、Fraser Hof、Russell E. Bishop
    DOI:10.1021/bi1011496
    日期:2010.10.26
    The Escherichia coli outer membrane phospholipid:lipid A palmitoyltransferase PagP selects palmitate chains using its beta-barrel-interior hydrocarbon ruler and interrogates phospholipid donors by gating them laterally through an aperture known as the crenel. Lipid A palmitoylation provides antimicrobial peptide resistance and modulates inflammation signaled through the host TLR4/MD2 pathway. Gly88 substitutions can raise the PagP hydrocarbon ruler floor to correspondingly shorten the selected acyl chain. To explore the limits of hydrocarbon ruler acyl chain selectivity, we have modified the single Gly88Cys sulfhydryl group with linear alkyl units and identified C10 as the shortest acyl chain to be efficiently utilized. Gly88Cys-S-ethyl, S-n-propyl, and S-n-butyl PagP were all highly specific for C12, C11, and C10 acyl chains, respectively, and longer aliphatic or aminoalkyl substitutions could not extend acyl chain selectivity any further. The donor chain length limit of C10 coincides with the phosphatidylcholine transition from displaying bilayer to micellar properties in water, but the detergent inhibitor lauryldimethylamine At-oxide also gradually became ineffective in a micellar assay as the selected acyl chains were shortened to C10. The Gly88Cys-S-ethyl and norleucine substitutions exhibited superior C12 acyl chain specificity compared to that of Gly88Met PagP, thus revealing detection by the hydrocarbon ruler of the Met side chain tolerance for terminal methyl group gauche conformers. Although norleucine substitution was benign, selenomethionine substitution at Met72 was highly destabilizing to PagP. Within the hydrophobic and van der Waals-contacted environment of the PagP hydrocarbon ruler, side chain flexibility, combined with localized thioether-aromatic dispersion attraction, likely influences the specificity of acyl chain selection.
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