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Cis-1,2-dichloroethylene in methanol - 0.985mg/ml in methanol, high purity , CAS No.156-59-2
Basic Description
Synonyms
1,2-Dichloroethylene | 1,2-Dichloroethylene (cis) | Tox21_200003 | cis-Dichloroethylene | 4-01-00-00707 (Beilstein Handbook Reference) | cis-1,2-dce | cis-Acetylene dichloride | HSDB 5656 | 1,2-DICHLOROETHYLENE, (1Z)- | 1,2-Dichloroethene # | FYO9G15JYD |
Specifications & Purity
0.985mg/ml in methanol
Storage Temp
Store at 2-8°C
Shipped In
Wet ice
This product requires cold chain shipping. Ground and other economy services are not available.
Taxonomic Classification
Kingdom
Organic compounds
Superclass
Organohalogen compounds
Class
Vinyl halides
Subclass
Vinyl chlorides
Intermediate Tree Nodes
Not available
Direct Parent
Vinyl chlorides
Alternative Parents
Chloroalkenes Organochlorides Hydrocarbon derivatives
Molecular Framework
Aliphatic acyclic compounds
Substituents
Chloroalkene - Haloalkene - Vinyl chloride - Hydrocarbon derivative - Organochloride - Aliphatic acyclic compound
Description
This compound belongs to the class of organic compounds known as vinyl chlorides. These are vinyl halides in which a chlorine atom is bonded to an sp2-hybridised carbon atom.
External Descriptors
1,2-dichloroethene
Data sources
1. Djoumbou Feunang Y, Eisner R, Knox C, Chepelev L, Hastings J, Owen G, Fahy E, Steinbeck C, Subramanian S, Bolton E, Greiner R, and Wishart DS. ClassyFire: Automated Chemical Classification With A Comprehensive, Computable Taxonomy. Journal of Cheminformatics, 2016, 8:61.
Associated Targets(Human)
Mechanisms of Action
Mechanism of Action
Action Type
target ID
Target Name
Target Type
Target Organism
Binding Site Name
References
Names and Identifiers
IUPAC Name
(Z)-1,2-dichloroethene
INCHI
InChI=1S/C2H2Cl2/c3-1-2-4/h1-2H/b2-1-
InChIKey
KFUSEUYYWQURPO-UPHRSURJSA-N
Smiles
C(=C\Cl)\Cl
Isomeric SMILES
C(=C\Cl)\Cl
PubChem CID
643833
UN Number
1150
Packing Group
II
Molecular Weight
96.94
Certificates(CoA,COO,BSE/TSE and Analysis Chart)
Chemical and Physical Properties
Sensitivity
Light sensitive
Refractive Index
1.449
Boil Point(°C)
60 °C
Melt Point(°C)
−80 °C
Molecular Weight
96.940 g/mol
XLogP3
1.900
Hydrogen Bond Donor Count
0
Hydrogen Bond Acceptor Count
0
Rotatable Bond Count
0
Exact Mass
95.9534 Da
Monoisotopic Mass
95.9534 Da
Topological Polar Surface Area
0.000 Ų
Heavy Atom Count
4
Formal Charge
0
Complexity
19.200
Isotope Atom Count
0
Defined Atom Stereocenter Count
0
Undefined Atom Stereocenter Count
0
Defined Bond Stereocenter Count
1
Undefined Bond Stereocenter Count
0
The total count of all stereochemical bonds
1
Covalently-Bonded Unit Count
1
Citations of This Product
1.
Zheng-Tao Li, Si-Ying Yang, He-Ping Zhao.
(2023)
The effects of arsenic on dechlorination of trichloroethene by consortium DH: Microbial response and resistance.
SCIENCE OF THE TOTAL ENVIRONMENT,
896
(165219).
2.
Xiaohui Wang, Jia Xin, Mengjiao Yuan, Fang Zhao, Litao Wang.
(2023)
Coupled microscale zero valent iron-autotrophic hydrogen bacteria dechlorination system is not always superior to its standalone counterparts: A sustainable remediation perspective.
SCIENCE OF THE TOTAL ENVIRONMENT,
857
(159364).
3.
Jia Deng, Xiang Zhan, Feng Wu, Shuxian Gao, Li-Zhi Huang.
(2021)
Fast dechlorination of trichloroethylene by a bimetallic Fe(OH)2/Ni composite.
SEPARATION AND PURIFICATION TECHNOLOGY,
278
(119597).
4.
Zhang Xiao-Hui, Zhao Ya-Jun, Wang Can, Tang Shan.
(2025)
Accessing Degradable Polyethylene Materials with In-chain Ester Units via Mechanochemical Backbone Editing.
CHINESE JOURNAL OF POLYMER SCIENCE,
(1-6).
5.
Su-Hao Chen, Zheng-Tao Li, Chun-Yu Lai, He-Ping Zhao.
(2024)
Enhancing reductive dechlorination of trichloroethylene in bioelectrochemical systems with conductive materials.
ENVIRONMENTAL RESEARCH,
261
(119773).
6.
Xuqing Zou, Yizhou Feng, Min Hu, Daohui Lin, Kun Yang, Wenhao Wu.
(2024)
Highly efficient bioregeneration of high temperature-pyrolyzed biochar after trichloroethylene adsorption through biodegradation of Dehalococcoides.
CHEMICAL ENGINEERING JOURNAL,
487
(150655).
7.
Si-Ying Yang, Chun-Yu Lai, He-Ping Zhao.
(2024)
Influence of microbial inoculation site on trichloroethylene degradation in electrokinetic-enhanced bioremediation of low-permeability soils.
ENVIRONMENTAL RESEARCH,
252
(118899).
8.
Zheng-Tao Li, He-Ping Zhao.
(2025)
Sulfate-driven microbial collaboration for synergistic remediation of chloroethene-heavy metal pollution.
WATER RESEARCH,
268
(122738).
9.
Sha Ni, Changsheng Qu, Xinhong Gan, Liang Ding, Weiyi Xia, Ying Teng, Yingge Shu, Wenjie Ren.
(2024)
Synergistic biodegradation of trichloroethylene-contaminated soil using Typha angustifolia L. and an anaerobic degrading bacterial consortium.
SCIENCE OF THE TOTAL ENVIRONMENT,
955
(177137).
10.
Si-Ying Yang, Chun-Yu Lai, He-Ping Zhao.
(2025)
Trichloroethylene detoxification in low-permeability soil via electrokinetic-enhanced bioremediation technology: Long-term feasibility and spatial-temporal patterns.
JOURNAL OF HAZARDOUS MATERIALS,
484
(136743).
11.
Zheng-Tao Li, Xin Song, Songhu Yuan, He-Ping Zhao.
(2024)
Unveiling the inhibitory mechanisms of chromium exposure on microbial reductive dechlorination: Kinetics and microbial responses.
WATER RESEARCH,
253
(121328).
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