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5-methyl-2,3-diphenyl-tetrazolium; chloride | 6275-01-0

中文名称
——
中文别名
——
英文名称
5-methyl-2,3-diphenyl-tetrazolium; chloride
英文别名
5-Methyl-2,3-diphenyl-tetrazolium; Chlorid;2,3-Diphenyl-5-methyltetrazolium Chloride;5-methyl-2,3-diphenyltetrazol-2-ium;chloride
5-methyl-2,3-diphenyl-tetrazolium; chloride化学式
CAS
6275-01-0
化学式
C14H13N4*Cl
mdl
——
分子量
272.737
InChiKey
DNLGEYNSADNPQS-UHFFFAOYSA-M
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:
    271 °C (decomp)

计算性质

  • 辛醇/水分配系数(LogP):
    -1.14
  • 重原子数:
    19
  • 可旋转键数:
    2
  • 环数:
    3.0
  • sp3杂化的碳原子比例:
    0.07
  • 拓扑面积:
    34.6
  • 氢给体数:
    0
  • 氢受体数:
    3

安全信息

  • 海关编码:
    2933990090

SDS

SDS:52f1d1cf7e17e950e0e52c898787cc9e
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2,3-Diphenyl-5-methyltetrazolium Chloride
SAFETY DATA SHEET

Section 1. IDENTIFICATION OF THE SUBSTANCE OR MIXTURE AND OF THE SUPPLIER
Product name: 2,3-Diphenyl-5-methyltetrazolium Chloride

Section 2. HAZARDS IDENTIFICATION
Classification of the GHS
PHYSICAL HAZARDS Not classified
HEALTH HAZARDS Not classified
Not classified
ENVIRONMENTAL HAZARDS
GHS label elements
None
Pictograms or hazard symbols
Signal word No signal word
None
Hazard statement
Precautionary statements None

Section 3. COMPOSITION/INFORMATION ON INGREDIENTS
Substance/mixture: Substance
Component(s): 2,3-Diphenyl-5-methyltetrazolium Chloride
Percent: ....
CAS Number: 6275-01-0
Chemical Formula: C14H13ClN4

Section 4. FIRST AID MEASURES
Inhalation: Remove victim to fresh air and keep at rest in a position comfortable for breathing.
Get medical advice/attention if you feel unwell.
Skin contact: Remove/Take off immediately all contaminated clothing. Rinse skin with
water/shower. If skin irritation or rash occurs: Get medical advice/attention.
Eye contact: Rinse cautiously with water for several minutes. Remove contact lenses, if present
and easy to do. Continue rinsing. If eye irritation persists: Get medical
advice/attention.
Ingestion: Get medical advice/attention if you feel unwell. Rinse mouth.
Protection of first-aiders: A rescuer should wear personal protective equipment, such as rubber gloves and air-
tight goggles.

Section 5. FIRE-FIGHTING MEASURES
Suitable extinguishing Dry chemical, foam, water spray, carbon dioxide.
media:
Specific hazards: Take care as it may decompose upon combustion or in high temperatures to
generate poisonous fume.
Specific methods: Fire-extinguishing work is done from the windward and the suitable fire-extinguishing
method according to the surrounding situation is used. Uninvolved persons should
evacuate to a safe place. In case of fire in the surroundings: Remove movable
containers if safe to do so.
2,3-Diphenyl-5-methyltetrazolium Chloride

Section 5. FIRE-FIGHTING MEASURES
Special protective When extinguishing fire, be sure to wear personal protective equipment.
equipment for firefighters:

Section 6. ACCIDENTAL RELEASE MEASURES
Personal precautions, Use personal protective equipment. Keep people away from and upwind of spill/leak.
protective equipment and Entry to non-involved personnel should be controlled around the leakage area by
emergency procedures: roping off, etc.
Environmental precautions: Prevent product from entering drains.
Methods and materials for Sweep dust to collect it into an airtight container, taking care not to disperse it.
containment and cleaning Adhered or collected material should be promptly disposed of, in accordance with
up: appropriate laws and regulations.

Section 7. HANDLING AND STORAGE
Handling
Handling is performed in a well ventilated place. Wear suitable protective equipment.
Technical measures:
Prevent dispersion of dust. Wash hands and face thoroughly after handling.
Use a local exhaust if dust or aerosol will be generated.
Advice on safe handling: Avoid contact with skin, eyes and clothing.
Storage
Storage conditions: Keep container tightly closed. Store in a cool and dark place.
Store away from incompatible materials such as oxidizing agents.
Packaging material: Law is followed.

Section 8. EXPOSURE CONTROLS / PERSONAL PROTECTION
Engineering controls: Install a closed system or local exhaust as possible so that workers should not be
exposed directly. Also install safety shower and eye bath.
Personal protective equipment
Respiratory protection: Dust respirator. Follow local and national regulations.
Protective gloves.
Hand protection:
Eye protection: Safety glasses. A face-shield, if the situation requires.
Skin and body protection: Protective clothing. Protective boots, if the situation requires.

Section 9. PHYSICAL AND CHEMICAL PROPERTIES
Physical state (20°C): Solid
Form: crystal - powder
Very pale yellow - Pale yellow
Color:
Odor: No data available
pH: No data available
Melting point/freezing point:No data available
Boiling Point/Range: No data available
Flash Point: No data available
Explosive limits
Lower: No data available
No data available
Upper:
Density: No data available
No data available
Solubility:

Section 10. STABILITY AND REACTIVITY
Stability: Stable under proper conditions.
Reactivity: No special reactivity has been reported.
Incompartible materials: oxidizing agents
Hazardous Decomposition Carbon monoxide, Carbon dioxide, Nitrogen oxides (NOx), Hydrogen chloride
Products:

Section 11. TOXICOLOGICAL INFORMATION
Acute Toxicity: No data available
2,3-Diphenyl-5-methyltetrazolium Chloride

Section 11. TOXICOLOGICAL INFORMATION
Skin corrosion/irritation: No data available
Serious eye No data available
damage/irritation:
Germ cell mutagenicity: No data available
Carcinogenicity:
No data available
IARC =
NTP = No data available
No data available
Reproductive toxicity:

Section 12. ECOLOGICAL INFORMATION
Ecotoxicity:
Fish: No data available
Crustacea: No data available
Algae: No data available
Persistence / degradability: No data available
Bioaccumulative No data available
potential(BCF):
Mobillity in soil
log Pow: No data available
Soil adsorption (Koc): No data available
Henry's Law No data available
constant(PaM3/mol):

Section 13. DISPOSAL CONSIDERATIONS
Recycle to process, if possible. Consult your local regional authorities. You may be able to dissolve or mix material
with a combustible solvent and burn in a chemical incinerator equipped with an afterburner and scrubber system.
Observe all federal, state and local regulations when disposing of the substance.

Section 14. TRANSPORT INFORMATION
Hazards Class: Does not correspond to the classification standard of the United Nations
UN-No: Not Listed

Section 15. REGULATORY INFORMATION
Safe management ordinance of dangerous chemical product (State Council announces on January 26,
2002): Safe use and production, the storage of a dangerous chemical, transport, loading and unloading were
prescribed.


SECTION 16 - ADDITIONAL INFORMATION
N/A

反应信息

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文献信息

  • Method of measuring substance in sample using a redox reaction
    申请人:Kyoto Daiichi Kagaku Co., Ltd.
    公开号:US20020025546A1
    公开(公告)日:2002-02-28
    A highly reliable method of measuring an analyte in a sample using a redox reaction. In this method, a tetrazolium compound is added to a sample prior to the redox reaction so as to eliminate the influence of any reducing substance in the sample, then a reducing substance or an oxidizing substance derived from the analyte is formed, the quantity of the formed substance derived from the analyte is measured by the redox reaction, and the quantity of the analyte is determined from the quantity of the formed substance derived from the analyte. As the tetrazolium compound, for example, 2-(4-iodophenyl)-3-(2,4-dinitrophenyl)-5-(2,4-disulfophenyl)-2H-tetrazolium salt can be used.
    一种高度可靠的测量样品中分析物的方法,使用氧化还原反应。在该方法中,在氧化还原反应之前向样品中添加四唑化合物以消除样品中任何还原物质的影响,然后形成从分析物中衍生的还原物质或氧化物质,通过氧化还原反应测量从分析物中衍生的物质的数量,并从中确定分析物的数量。例如,可以使用2-(4-碘苯基)-3-(2,4-二硝基苯基)-5-(2,4-二硫酚基)-2H-四唑盐作为四唑化合物。
  • Redox reactions for analyte determination using tetrazolium compounds
    申请人:Kyoto Daiichi Kagaku Co., Ltd.
    公开号:EP1002874A2
    公开(公告)日:2000-05-24
    A highly reliable method of measuring an analyte in a sample using a redox reaction. In this method, a tetrazolium compound is added to a sample prior to the redox reaction so as to eliminate the influence of any reducing substance in the sample, then a reducing substance or an oxidizing substance derived from the analyte is formed, the quantity of the formed substance derived from the analyte is measured by the redox reaction, and the quantity of the analyte is determined from the quantity of the formed substance derived from the analyte. As the tetrazolium compound, for example, 2-(4-iodophenyl)-3-(2,4-dinitrophenyl)-5-(2,4-disulfophenyl)-2H-tetrazolium salt can be used.
    一种利用氧化还原反应测量样品中分析物的高度可靠的方法。在这种方法中,在氧化还原反应之前向样品中加入四唑化合物,以消除样品中任何还原性物质的影响,然后形成由被分析物衍生的还原性物质或氧化性物质,通过氧化还原反应测量由被分析物衍生的已形成物质的数量,并根据由被分析物衍生的已形成物质的数量确定被分析物的数量。例如,可以使用 2-(4-碘苯基)-3-(2,4-二硝基苯基)-5-(2,4-二磺酸苯基)-2H-四唑鎓盐作为四唑化合物。
  • Dental composition
    申请人:3M Innovative Properties Company
    公开号:EP2052712A1
    公开(公告)日:2009-04-29
    The present invention relates to a bacteria detecting dental composition comprising a solution of at least one electron acceptor and at least one electron donor wherein the electron acceptor and the electron donor are selected that in the solution itself the electron donor can not transmit reduction equivalents to the electron acceptor and wherein the dental composition is substantially free of compounds that enable or facilitate the electron transmission between the electron acceptor and the electron donor. The present invention further relates to the use of a composition comprising a solution of at least one electron acceptor and at least one electron donor wherein the electron acceptor and the electron donor are selected that in the solution itself the electron donor can not transmit reduction equivalents to the electron acceptor and wherein the composition is substantially free of compounds that enable or facilitate the electron transmission between the electron acceptor and the electron donor for site-directed intraoral detection of bacteria.
    本发明涉及一种细菌检测牙科组合物,该组合物包含至少一种电子受体和至少一种电子供体的溶液,其中电子受体和电子供体被选择为在溶液本身中电子供体不能向电子受体传递还原当量,并且该牙科组合物基本上不含能够或促进电子受体和电子供体之间电子传递的化合物。 本发明进一步涉及一种由至少一种电子受体和至少一种电子供体的溶液组成的组合物的用途,其中电子受体和电子供体被选择为在溶液本身中电子供体不能向电子受体传递还原当量,并且该组合物基本上不含能够或促进电子受体和电子供体之间电子传递的化合物,用于口腔内定点细菌检测。
  • Wedekind; Stauwe, Chemische Berichte, 1898, vol. 31, p. 1755
    作者:Wedekind、Stauwe
    DOI:——
    日期:——
  • Kuhn; Jerchel, Chemische Berichte, 1941, vol. 74, p. 941,948
    作者:Kuhn、Jerchel
    DOI:——
    日期:——
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