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28836-03-5 分子结构
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8-(phenylamino)naphthalene-1-sulfonic acid amine

ChemBase编号:103021
分子式:C16H16N2O3S
平均质量:316.37484
单一同位素质量:316.08816338
SMILES和InChIs

SMILES:
N.OS(=O)(=O)c1c2c(Nc3ccccc3)cccc2ccc1
Canonical SMILES:
OS(=O)(=O)c1cccc2c1c(ccc2)Nc1ccccc1.N
InChI:
InChI=1S/C16H13NO3S.H3N/c18-21(19,20)15-11-5-7-12-6-4-10-14(16(12)15)17-13-8-2-1-3-9-13;/h1-11,17H,(H,18,19,20);1H3
InChIKey:
IPBNQYLKHUNLQE-UHFFFAOYSA-N

引用这个纪录

CBID:103021 http://www.chembase.cn/molecule-103021.html

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名称和登记号

名称和登记号

名称 登记号
IUPAC标准名
8-(phenylamino)naphthalene-1-sulfonic acid amine
IUPAC传统名
phenyl-peri acid amine
ANS amine
别名
8-苯胺基萘-1-磺酸
N-苯基周位酸
8-苯氨基-1-萘磺酸 铵盐
1,8-ANS NH4
8-Anilino-1-naphthalenesulfonic acid ammonium salt
1,8-ANS NH4
Ammonium 8-anilino-1-naphthalenesulfonate
ANSA
N-Phenyl peri acid
8-ANILINO-1-NAPHTHALENE SULFONIC ACID AMMONIUM SALT
CAS号
28836-03-5
EC号
249-265-6
MDL号
MFCD00012560
Beilstein号
3581235
PubChem SID
162089801
24846428
PubChem CID
12877595

数据来源

数据来源

所有数据来源 商品来源 非商品来源
数据来源 数据ID
PubChem 12877595 external link

理论计算性质

理论计算性质

JChem
Acid pKa -2.0288842  质子受体
质子供体 LogD (pH = 5.5) 1.2071737 
LogD (pH = 7.4) 1.2071565  Log P 2.1060174 
摩尔折射率 81.6169 cm3 极化性 33.139984 Å3
极化表面积 66.4 Å2 可自由旋转的化学键
里宾斯基五规则 true 

分子性质

分子性质

理化性质 安全信息 产品相关信息 生物活性(PubChem)
溶解度
acetone: soluble expand 查看数据来源
Do you have solubility information on this product that you would like to share? expand 查看数据来源
H2O: soluble expand 查看数据来源
methanol: soluble expand 查看数据来源
NaOH: soluble1 N expand 查看数据来源
熔点
242- 244°C expand 查看数据来源
荧光
λex 388 nm; λem 470 nm in 0.1 M Tris, 0.2 M KCl, pH 9.0, BSA expand 查看数据来源
保存条件
Room Temperature (15-30°C) expand 查看数据来源
欧盟危险性物质标志
刺激性(Irritant) 刺激性(Irritant) (Xi) expand 查看数据来源
MSDS下载
下载链接 expand 查看数据来源
下载链接 expand 查看数据来源
下载链接 expand 查看数据来源
德国WGK号
3 expand 查看数据来源
危险公开号
36/37/38 expand 查看数据来源
R:36/37/38 expand 查看数据来源
安全公开号
26-36 expand 查看数据来源
S:20-25-26-37/39 expand 查看数据来源
GHS危险品标识
GHS07 expand 查看数据来源
GHS警示词
Warning expand 查看数据来源
GHS危险声明
H315-H319-H335 expand 查看数据来源
GHS警示性声明
P261-P305 + P351 + P338 expand 查看数据来源
个人保护装置
dust mask type N95 (US), Eyeshields, Gloves expand 查看数据来源
纯度
~95% expand 查看数据来源
≥90% (NT) expand 查看数据来源
≥97.0% (HPLC) expand 查看数据来源
级别
for fluorescence expand 查看数据来源
technical expand 查看数据来源
质检报告
下载链接 expand 查看数据来源
线性分子式
C16H13NO3S · NH3 expand 查看数据来源

详细说明

详细说明

MP Biomedicals MP Biomedicals Sigma Aldrich Sigma Aldrich
MP Biomedicals -  02150380 external link
Ammonium Salt
Purity: ~95%
Sigma Aldrich -  10417 external link
Application
ANS forms an inclusion complex with cyclodextrin. Such model systems are useful to mimic biological recognition and can be studied by measuring the change in fluorescence of free-ANS to complexed-ANS. When ANS enters the hydrophobic core of cyclodestrin, it’s fluorescence increases 1,2. Utilized in the reagent phase of a sodium-selective fiber-optic sensor. The reagent phase also contains a copper(II) polyelectrolyte, which binds to ANSA in the absence of sodium and quenches the fluorescence. In the presence of sodium, ANSA forms a cationic complex creating ion-pairs, causing it to fluoresce 3. ANS is often incorporated into di-block polymers and can be released by changes in the local environment (i.e., temperature, pH, etc.) 4,5,6. ANS is commonly used as a fluorescence probe to investigate molecular assemblies of surfactants and amphiphilic polymers because a blue shift of the emission maximum indicates the fluorophore is located in less polar media 7,8. Fluorescent probe for protein studies using methodologies such as steady-state and dynamic fluorescence measurements 9,10.
This product is an amphiphilic fluorescent probe for protein studies . Excitation of the unbound dye at 380 nm results in a low fluorescent emission with a maximum at 545 nm. The fluorescence intensity of ANS increases when the dye binds to the hydrophobic regions of a protein . The protein-ANS complex has an emission spectrum which is shifted to a broad maximum at 470 nm. At pH 8, protein causes a 40-fold increase in the relative quantum yield compared to free ANS in solution . ANS has been used to monitor protein conformational changes by binding to the hydrophobic regions of a protein , to gain new insight into protein binding interactions, often by acting as reporter or competitor ligands9,10, to investigate the visual excitation process and structural aspects of photoreceptor cell membranes , and to probe (and disrupt) the structure of both high- and low-density lipoproteins. It has also been used as a substrate in a chemiluminescent enzyme immunoassay system and as a dye for yeast viability determination. The conformational states for apo- and holo- yeast alcohol dehydrogenase were reported under conditions of low pH using ANS fluorescence . ANS is also commonly used as a fluorescence probe to investigate molecular assemblies of surfactants and amphiphilic polymers because a blue shift of its emission maximum indicates the probe is located in less polar environment 7
Sigma Aldrich -  10416 external link
Application
ANS forms an inclusion complex with cyclodextrin. Such model systems are useful to mimic biological recognition and can be studied by measuring the change in fluorescence of free-ANS to complexed-ANS. When ANS enters the hydrophobic core of cyclodestrin, it’s fluorescence increases 1,2. Utilized in the reagent phase of a sodium-selective fiber-optic sensor. The reagent phase also contains a copper(II) polyelectrolyte, which binds to ANSA in the absence of sodium and quenches the fluorescence. In the presence of sodium, ANSA forms a cationic complex creating ion-pairs, causing it to fluoresce 3. ANS is often incorporated into di-block polymers and can be released by changes in the local environment (i.e., temperature, pH, etc.) 4,5,6. ANS is commonly used as a fluorescence probe to investigate molecular assemblies of surfactants and amphiphilic polymers because a blue shift of the emission maximum indicates the fluorophore is located in less polar media 7,8. Fluorescent probe for protein studies using methodologies such as steady-state and dynamic fluorescence measurements 9,10.

参考文献

参考文献

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专利

专利

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