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Ethyl Methyl Carbonate - 98%, high purity , CAS No.623-53-0

  • ≥98%
Item Number
E110111
Grouped product items
SKUSizeAvailabilityPrice Qty
E110111-5ml
5ml
10
$23.90
E110111-25ml
25ml
8
$90.90
E110111-100ml
100ml
8
$324.90
E110111-500ml
500ml
3
$1,462.90

Basic Description

SynonymsEMC | Ethyl methyl carbonate, 99.9%, acid <10 ppm, H2O <10ppm | Methyl Ethyl Carbonate | Ester solvent | Ethoxyacetic acid, methyl ester | J-521268 | Carbonic Acid Ethyl Methyl Ester | CS-0155421 | EMC; Ethyl methyl carbonate; Ethylene methyl carbonate; M
Specifications & Purity≥98%
Shipped InNormal

AI Insight

Names and Identifiers

Pubchem Sid488190114
Pubchem Sid Urlhttps://pubchem.ncbi.nlm.nih.gov/substance/488190114
IUPAC Name ethyl methyl carbonate
INCHI InChI=1S/C4H8O3/c1-3-7-4(5)6-2/h3H2,1-2H3
InChi Key JBTWLSYIZRCDFO-UHFFFAOYSA-N
Canonical SMILES CCOC(=O)OC
Isomeric SMILES CCOC(=O)OC
WGK Germany 3
PubChem CID 522046
UN Number 3272
Packing Group III
Molecular Weight 104.1
Beilstein 3(4)4
Reaxy-Rn 1742929

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

12 results found

Lot NumberCertificate TypeDateItem
A2418089Certificate of AnalysisNov 22, 2022 E110111
D2310349Certificate of AnalysisNov 22, 2022 E110111
D2310350Certificate of AnalysisNov 22, 2022 E110111
I2418106Certificate of AnalysisNov 22, 2022 E110111
L2217180Certificate of AnalysisNov 22, 2022 E110111
L2217192Certificate of AnalysisNov 22, 2022 E110111
L2217196Certificate of AnalysisNov 22, 2022 E110111
I1819136Certificate of AnalysisJul 09, 2022 E110111
F1815006Certificate of AnalysisApr 26, 2022 E110111
B2327154Certificate of AnalysisSep 14, 2021 E110111
D2310348Certificate of AnalysisSep 14, 2021 E110111
J2227149Certificate of AnalysisSep 14, 2021 E110111

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Chemical and Physical Properties

Refractive Index1.3697
Flash Point(°F)73.4 °F
Flash Point(°C)23 °C
Boil Point(°C)90.2°C
Melt Point(°C)2-4°C
Molecular Weight104.100 g/mol
XLogP30.900
Hydrogen Bond Donor Count0
Hydrogen Bond Acceptor Count3
Rotatable Bond Count3
Exact Mass104.047 Da
Monoisotopic Mass104.047 Da
Topological Polar Surface Area35.500 Ų
Heavy Atom Count7
Formal Charge0
Complexity60.000
Isotope Atom Count0
Defined Atom Stereocenter Count0
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
The total count of all stereochemical bonds0
Covalently-Bonded Unit Count1

Safety and Hazards(GHS)

Pictogram(s) GHS07,   GHS02
Signal Danger
Hazard Statements

H315:Causes skin irritation

H319:Causes serious eye irritation

H335:May cause respiratory irritation

H225:Highly Flammable liquid and vapor

H226:Flammable liquid and vapor

Precautionary Statements

P261:Avoid breathing dust/fume/gas/mist/vapors/spray.

P305+P351+P338:IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses if present and easy to do - continue rinsing.

P280:Wear protective gloves/protective clothing/eye protection/face protection.

P370+P378:In case of fire: Use ... to extinguish.

P210:Keep away from heat, hot surface, sparks, open flames and other ignition sources. - No smoking.

P302+P352:IF ON SKIN: wash with plenty of water.

P321:Specific treatment (see ... on this label).

P405:Store locked up.

P501:Dispose of contents/container to ...

P233:Keep container tightly closed.

P240:Ground/bond container and receiving equipment.

P264:Wash hands [and …] thoroughly after handling.

P403+P235:Store in a well-ventilated place. Keep cool.

P303+P361+P353:IF ON SKIN (or hair): Take off Immediately all contaminated clothing. Rinse SKIN with water [or shower].

P271:Use only outdoors or in a well-ventilated area.

P241:Use explosion-proof [electrical/ventilating/lighting/.../] equipment.

P304+P340:IF INHALED: Remove person to fresh air and keep comfortable for breathing.

P403+P233:Store in a well-ventilated place. Keep container tightly closed.

P362+P364:Take off contaminated clothing and wash it before reuse.

P242:Use only non-sparking tools.

P243:Take precautionary measures against static discharge.

P264+P265:Wash hands [and …] thoroughly after handling. Do not touch eyes.

P337+P317:If eye irritation persists: Get medical help.

P332+P317:If skin irritation occurs: Get medical help.

P319:Get medical help if you feel unwell.

WGK Germany 3
Reaxy-Rn 1742929
Class 3
RIDADR UN 3272 3 / PGIII

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Citations of This Product(18)

1. Suwanda Arachchige Don Rumesh Madhusanka, Jiaxing Qi, Nan Chen, Boyu Wang, Guobao Xu, Decheng Li, Hongyu Wang.  (2024)  LiNi0.5Mn1.5O4 Joins to Alleviate Self-Discharge of Anion-Graphite Intercalation Compounds.  LANGMUIR,  40  (2): (1418–1424).  [PMID:38158394] [10.1021/acs.langmuir.3c03089]
2. Hao Wu, Wenfang Feng, Michel Armand, Zhibin Zhou, Heng Zhang.  (2023)  Lithium Bis(fluorosulfonyl)imide for Stabilized Interphases on Conjugated Dicarboxylate Electrode.  ACS Applied Materials & Interfaces,      [PMID:38078443] [10.1021/acsami.3c11212]
3. Nanjie Chen, Dongchu Chen, Jingshu Wu, Yuekun Lai, Dongyang Chen.  (2023)  Polyethylene glycol modified tetrathiafulvalene for high energy density non-aqueous catholyte of hybrid redox flow batteries.  CHEMICAL ENGINEERING JOURNAL,  462  (141996).  [PMID:] [10.1016/j.cej.2023.141996]
4. Juan Xu, Kai Li, Lanxiang Liu, Jinju Ma, Hong Zhang.  (2023)  Tannic acid – a bridge and suspending agent for lithium cobalt oxide and reduced graphene oxide: a lodestar for lithium-ion batteries.  ENVIRONMENTAL TECHNOLOGY,      [PMID:36727477] [10.1080/09593330.2023.2176790]
5. Zhuo Wang, Quanbing Pei, Mengmeng Wang, Junjun Tan, Shuji Ye.  (2023)  Observing Nonpreferential Absorption of Linear and Cyclic Carbonate on the Silicon Electrode.  LANGMUIR,  39  (5): (2015–2021).  [PMID:36695809] [10.1021/acs.langmuir.2c03098]
6. Zhaoyang Qi, Songyu Li, Yaxin Cai, Rongkai Cui, Jie Chen, Changshen Ye, Ting Qiu.  (2023)  DBU-assisted expeditious synthesis of highly stable IL@ZIFs intergrowth composite: A nanocatalyst for EMC production.  FUEL,  334  (126659).  [PMID:] [10.1016/j.fuel.2022.126659]
7. He Yang, Tingting Qin, Xinyan Zhou, Yu Feng, Zizhun Wang, Xin Ge, Nailin Yue, Dabing Li, Wei Zhang, Weitao Zheng.  (2022)  Boosting the kinetics of PF6− into graphitic layers for the optimal cathode of dual-ion batteries: The rehearsal of pre-intercalating Li+.  Journal of Energy Chemistry,  71  (392).  [PMID:] [10.1016/j.jechem.2022.04.009]
8. Shufeng Song, Weiling Gao, Guanming Yang, Yanfang Zhai, Jianyao Yao, Liyang Lin, Weiping Tang, Ning Hu, Li Lu.  (2022)  Hybrid poly-ether/carbonate ester electrolyte engineering enables high oxidative stability for quasi-solid-state lithium metal batteries.  Materials Today Energy,  23  (100893).  [PMID:] [10.1016/j.mtener.2021.100893]
9. Weixia Lv, Caijian Zhu, Jun Chen, Caixia Ou, Qian Zhang, Shengwen Zhong.  (2021)  High performance of low-temperature electrolyte for lithium-ion batteries using mixed additives.  CHEMICAL ENGINEERING JOURNAL,  418  (129400).  [PMID:] [10.1016/j.cej.2021.129400]
10. Chao Li, Banggui Lao, Zhike Li, Huibin Yin, Zhenyu Yang, Hongyu Wang, Deliang Chen, Xiaoli Zhang, Yongjun Xu, Chenghua Sun.  (2020)  Dual-ion battery with MoS2 cathode.  Energy Storage Materials,  32  (159).  [PMID:] [10.1016/j.ensm.2020.07.033]
11. Wenjuan Han, Ming Lu, Junnan Chen, Haojie Li, Haibo Li, Bingsen Zhang, Wei Zhang, Weitao Zheng.  (2020)  Activating an MXene as a host for EMIm+ by electrochemistry-driven Fe-ion pre-intercalation.  Journal of Materials Chemistry A,  (32): (16265-16270).  [PMID:] [10.1039/D0TA05151A]
12. Lei Zhang, Hui Fan, Hongyu Wang.  (2020)  Methyl acetate–based solutions for dual–ion batteries.  ELECTROCHIMICA ACTA,  342  (135992).  [PMID:] [10.1016/j.electacta.2020.135992]
13. Yunju Wang, Jiayu Li, Yuhao Huang, Hongyu Wang.  (2019)  Anion Storage Behavior of Graphite Electrodes in LiBF4/Sulfone/Ethyl Methyl Carbonate Solutions.  LANGMUIR,  35  (46): (14804–14811).  [PMID:31660747] [10.1021/acs.langmuir.9b02758]
14. Dandan Zhu, Lei Zhang, Yuhao Huang, Jiayu Li, Hui Fan, Hongyu Wang.  (2019)  Ethylmethyl Carbonate’s Role in Hexafluorophosphate Storage in Graphite Electrodes.  ACS Applied Energy Materials,  (11): (8031–8038).  [PMID:] [10.1021/acsaem.9b01508]
15. Lei Zhang, Hongyu Wang.  (2019)  Dual-Graphite Batteries with Flame-Retardant Electrolyte Solutions.  ChemElectroChem,  (17): (4637-4644).  [PMID:] [10.1002/celc.201901186]
16. Yang Dong, Ning Zhang, Cuixia Li, Yanfei Zhang, Ming Jia, Yuanyuan Wang, Yaran Zhao, Lifang Jiao, Fangyi Cheng, Jianzhong Xu.  (2019)  Fire-Retardant Phosphate-Based Electrolytes for High-Performance Lithium Metal Batteries.  ACS Applied Energy Materials,  (4): (2708–2716).  [PMID:] [10.1021/acsaem.9b00027]
17. He Yang, Xiaoyuan Shi, Ting Deng, Tingting Qin, Lu Sui, Ming Feng, Hong Chen, Wei Zhang, Weitao Zheng.  (2018)  Carbon-Based Dual-Ion Battery with Enhanced Capacity and Cycling Stability.  ChemElectroChem,  (23): (3612-3618).  [PMID:] [10.1002/celc.201801108]
18. Shuai Wang, Xiang Xiao, Chaopeng Fu, Jiguo Tu, Yuanyuan Tan, Shuqiang Jiao.  (2018)  Room temperature solid state dual-ion batteries based on gel electrolytes.  Journal of Materials Chemistry A,  (10): (4313-4323).  [PMID:] [10.1039/C8TA00221E]

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11. Hao Wu, Wenfang Feng, Michel Armand, Zhibin Zhou, Heng Zhang.  (2023)  Lithium Bis(fluorosulfonyl)imide for Stabilized Interphases on Conjugated Dicarboxylate Electrode.  ACS Applied Materials & Interfaces,      [PMID:38078443] [10.1021/acsami.3c11212]
12. Nanjie Chen, Dongchu Chen, Jingshu Wu, Yuekun Lai, Dongyang Chen.  (2023)  Polyethylene glycol modified tetrathiafulvalene for high energy density non-aqueous catholyte of hybrid redox flow batteries.  CHEMICAL ENGINEERING JOURNAL,  462  (141996).  [PMID:] [10.1016/j.cej.2023.141996]
13. Juan Xu, Kai Li, Lanxiang Liu, Jinju Ma, Hong Zhang.  (2023)  Tannic acid – a bridge and suspending agent for lithium cobalt oxide and reduced graphene oxide: a lodestar for lithium-ion batteries.  ENVIRONMENTAL TECHNOLOGY,      [PMID:36727477] [10.1080/09593330.2023.2176790]
14. Zhuo Wang, Quanbing Pei, Mengmeng Wang, Junjun Tan, Shuji Ye.  (2023)  Observing Nonpreferential Absorption of Linear and Cyclic Carbonate on the Silicon Electrode.  LANGMUIR,  39  (5): (2015–2021).  [PMID:36695809] [10.1021/acs.langmuir.2c03098]
15. Zhaoyang Qi, Songyu Li, Yaxin Cai, Rongkai Cui, Jie Chen, Changshen Ye, Ting Qiu.  (2023)  DBU-assisted expeditious synthesis of highly stable IL@ZIFs intergrowth composite: A nanocatalyst for EMC production.  FUEL,  334  (126659).  [PMID:] [10.1016/j.fuel.2022.126659]
16. He Yang, Tingting Qin, Xinyan Zhou, Yu Feng, Zizhun Wang, Xin Ge, Nailin Yue, Dabing Li, Wei Zhang, Weitao Zheng.  (2022)  Boosting the kinetics of PF6− into graphitic layers for the optimal cathode of dual-ion batteries: The rehearsal of pre-intercalating Li+.  Journal of Energy Chemistry,  71  (392).  [PMID:] [10.1016/j.jechem.2022.04.009]
17. Shufeng Song, Weiling Gao, Guanming Yang, Yanfang Zhai, Jianyao Yao, Liyang Lin, Weiping Tang, Ning Hu, Li Lu.  (2022)  Hybrid poly-ether/carbonate ester electrolyte engineering enables high oxidative stability for quasi-solid-state lithium metal batteries.  Materials Today Energy,  23  (100893).  [PMID:] [10.1016/j.mtener.2021.100893]
18. Weixia Lv, Caijian Zhu, Jun Chen, Caixia Ou, Qian Zhang, Shengwen Zhong.  (2021)  High performance of low-temperature electrolyte for lithium-ion batteries using mixed additives.  CHEMICAL ENGINEERING JOURNAL,  418  (129400).  [PMID:] [10.1016/j.cej.2021.129400]
19. Chao Li, Banggui Lao, Zhike Li, Huibin Yin, Zhenyu Yang, Hongyu Wang, Deliang Chen, Xiaoli Zhang, Yongjun Xu, Chenghua Sun.  (2020)  Dual-ion battery with MoS2 cathode.  Energy Storage Materials,  32  (159).  [PMID:] [10.1016/j.ensm.2020.07.033]
20. Wenjuan Han, Ming Lu, Junnan Chen, Haojie Li, Haibo Li, Bingsen Zhang, Wei Zhang, Weitao Zheng.  (2020)  Activating an MXene as a host for EMIm+ by electrochemistry-driven Fe-ion pre-intercalation.  Journal of Materials Chemistry A,  (32): (16265-16270).  [PMID:] [10.1039/D0TA05151A]
21. Lei Zhang, Hui Fan, Hongyu Wang.  (2020)  Methyl acetate–based solutions for dual–ion batteries.  ELECTROCHIMICA ACTA,  342  (135992).  [PMID:] [10.1016/j.electacta.2020.135992]
22. Yunju Wang, Jiayu Li, Yuhao Huang, Hongyu Wang.  (2019)  Anion Storage Behavior of Graphite Electrodes in LiBF4/Sulfone/Ethyl Methyl Carbonate Solutions.  LANGMUIR,  35  (46): (14804–14811).  [PMID:31660747] [10.1021/acs.langmuir.9b02758]
23. Dandan Zhu, Lei Zhang, Yuhao Huang, Jiayu Li, Hui Fan, Hongyu Wang.  (2019)  Ethylmethyl Carbonate’s Role in Hexafluorophosphate Storage in Graphite Electrodes.  ACS Applied Energy Materials,  (11): (8031–8038).  [PMID:] [10.1021/acsaem.9b01508]
24. Lei Zhang, Hongyu Wang.  (2019)  Dual-Graphite Batteries with Flame-Retardant Electrolyte Solutions.  ChemElectroChem,  (17): (4637-4644).  [PMID:] [10.1002/celc.201901186]
25. Yang Dong, Ning Zhang, Cuixia Li, Yanfei Zhang, Ming Jia, Yuanyuan Wang, Yaran Zhao, Lifang Jiao, Fangyi Cheng, Jianzhong Xu.  (2019)  Fire-Retardant Phosphate-Based Electrolytes for High-Performance Lithium Metal Batteries.  ACS Applied Energy Materials,  (4): (2708–2716).  [PMID:] [10.1021/acsaem.9b00027]
26. He Yang, Xiaoyuan Shi, Ting Deng, Tingting Qin, Lu Sui, Ming Feng, Hong Chen, Wei Zhang, Weitao Zheng.  (2018)  Carbon-Based Dual-Ion Battery with Enhanced Capacity and Cycling Stability.  ChemElectroChem,  (23): (3612-3618).  [PMID:] [10.1002/celc.201801108]
27. Shuai Wang, Xiang Xiao, Chaopeng Fu, Jiguo Tu, Yuanyuan Tan, Shuqiang Jiao.  (2018)  Room temperature solid state dual-ion batteries based on gel electrolytes.  Journal of Materials Chemistry A,  (10): (4313-4323).  [PMID:] [10.1039/C8TA00221E]

Solution Calculators