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Merck

757349

Sigma-Aldrich

Fluoroethylene carbonate

greener alternative

99%

Synonim(y):

4-Fluoro-1,3-dioxolan-2-one, FEC

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About This Item

Wzór empiryczny (zapis Hilla):
C3H3FO3
Numer CAS:
Masa cząsteczkowa:
106.05
Numer WE:
Numer MDL:
Kod UNSPSC:
26111700
Identyfikator substancji w PubChem:
NACRES:
NA.23

Próba

99%

Postać

solid

charakterystyka ekologicznej alternatywy

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

tw

212 °C

mp

18-23 °C

gęstość

1.485 g/cm3

Zastosowanie

battery manufacturing

kategoria ekologicznej alternatywy

temp. przechowywania

2-8°C

ciąg SMILES

FC1COC(=O)O1

InChI

1S/C3H3FO3/c4-2-1-6-3(5)7-2/h2H,1H2

Klucz InChI

SBLRHMKNNHXPHG-UHFFFAOYSA-N

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Opis ogólny

We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find details here.

Zastosowanie

Fluoroethylene carbonate (FEC) can be used as a co-solvent for the formation of electrolytes, which can exhibit a reversible capacity of 2.5 Ah g−1. It can be further used in the fabrication of lithium-ion batteries. FEC enables the formation of thin, smooth and stable passive solid electrolyte interphase (SEI) layer, which is insoluble in the electrolyte, in turn increasing the cycling efficiency and discharge capacity retention of the secondary battery.

Piktogramy

Exclamation mark

Hasło ostrzegawcze

Warning

Zwroty wskazujące rodzaj zagrożenia

Zwroty wskazujące środki ostrożności

Klasyfikacja zagrożeń

Acute Tox. 4 Oral - Eye Irrit. 2 - Skin Irrit. 2 - Skin Sens. 1

Kod klasy składowania

11 - Combustible Solids

Klasa zagrożenia wodnego (WGK)

WGK 1

Temperatura zapłonu (°F)

Not applicable

Temperatura zapłonu (°C)

Not applicable


Certyfikaty analizy (CoA)

Poszukaj Certyfikaty analizy (CoA), wpisując numer partii/serii produktów. Numery serii i partii można znaleźć na etykiecie produktu po słowach „seria” lub „partia”.

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Dokumenty związane z niedawno zakupionymi produktami zostały zamieszczone w Bibliotece dokumentów.

Odwiedź Bibliotekę dokumentów

Raj Deepika Chauhan et al.
BMC plant biology, 18(1), 132-132 (2018-06-27)
Morphogenic culture systems are central to crop improvement programs that utilize transgenic and genome editing technologies. We previously reported that CMD2-type cassava (Manihot esculenta) cultivars lose resistance to cassava mosaic disease (CMD) when passed through somatic embryogenesis. As a result
Hadeer M Aboshady et al.
PloS one, 14(6), e0218719-e0218719 (2019-06-21)
Gastrointestinal nematodes (GIN) are a major constraint for small ruminant production. Due to the rise of anthelmintic resistance throughout the world, alternative control strategies are needed. The development of GIN resistance breeding programs is a promising strategy. However, a better
Shang-Chieh Hou et al.
Scientific reports, 8(1), 12695-12695 (2018-08-25)
Mechanochemical synthesis of Si/Cu3Si-based composite as negative electrode materials for lithium ion battery is investigated. Results indicate that CuO is decomposed and alloyed with Si forming amorphous Cu-Si solid solution due to high energy impacting during high energy mechanical milling
Rongzhen Zhong et al.
Animals : an open access journal from MDPI, 9(3) (2019-03-23)
For the study, forty lambs were weighed and assigned into two treatments to determine the effects of feeding garlic powder on growth performance, rumen fermentation, and the health status of lambs infected with gastrointestinal nematodes (GINs). The lambs were fed
Yvette M Brockwell et al.
International journal for parasitology. Drugs and drug resistance, 4(1), 48-54 (2014-03-07)
Triclabendazole (TCBZ) is the drug of choice for Fasciola hepatica control and reports of F. hepatica resistant to this drug from a wide range of geographic regions are very concerning. This study investigated the presence of TCBZ resistance in F.

Produkty

Experts discuss challenges and production processes of nickel-rich layered oxide cathode materials in energy storage systems.

Solid oxide fuel cells and electrolyzers show potential for chemical-to-electrical energy conversion, despite early development stages.

Li-ion batteries are currently the focus of numerous research efforts with applications designed to reduce carbon-based emissions and improve energy storage capabilities.

Lithium-ion batteries offer high energy density and cyclic performance for portable electronic devices.

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