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Epoxypropionamide

CAS 5694-00-8C3H5NO2MW 87.08

Epoxypropionamide (CAS No. 5694-00-8) is supplied by Jinan Shenghe Chemical Co., Ltd. with a typical purity of 按批次COA提供(不公开发布). Main applications include Organic Chemicals. Bulk quantities are available with COA; purity and packaging are subject to batch COA and order confirmation.

Specifications

CAS Number5694-00-8
Molecular FormulaC3H5NO2
Molecular Weight87.08
LogP-1.2
Purity按批次COA提供(不公开发布)
Packaging按订单/批次确认(不公开发布)
ApplicationsOrganic Chemicals
CategoryOrganic Chemicals

Where it is used

Organic Chemicals

Packaging & Supply

Packaging按订单/批次确认(不公开发布)
Purity按批次COA提供(不公开发布)
StorageSealed, cool and dry place
Lead TimeIn stock / per order

Documents & Support

COA provided with every batch; MSDS and technical documents available on request. Email us with product name and CAS number for a quote within one business day.

Frequently Asked Questions

What is the CAS number of Epoxypropionamide?

The CAS number of Epoxypropionamide is 5694-00-8.

What purity and packaging are available?

Typical purity is 按批次COA提供(不公开发布), supplied in 按订单/批次确认(不公开发布), with COA provided.

What are the applications of Epoxypropionamide?

Main applications include Organic Chemicals.

How do I buy Epoxypropionamide or get a quote?

Email info@591daili.com or reach us on WhatsApp with the product name, CAS number and required quantity; quotes within one business day. Supplier: Jinan Shenghe Chemical Co., Ltd..

PubChem Public Data

Description

Epoxypropionamide · CAS 5694-00-8 · C3H5NO2. UNII 6G5ELX5XYN.

Identification

CAS Registry Number5694-00-8
PubChem CID91550
Molecular formulaC3H5NO2
IUPAC nameoxirane-2-carboxamide
UNII (FDA)6G5ELX5XYN

Computed Descriptors

Molecular Weight87.08
XLogP3-1.2
Hydrogen Bond Donor Count1
Hydrogen Bond Acceptor Count2
Rotatable Bond Count1
Exact Mass87.032028402
Monoisotopic Mass87.032028402
Topological Polar Surface Area55.6
Heavy Atom Count6
Formal Charge0

Physical description & handling notes

  • When heated to decomposition it emits toxic vapors of /nitroxides/.
  • When heated to decomposition, it emits toxic vapors of NOx

GHS Hazard Classification

Reported hazard statementsH302 (100%), H315 (100%), H317 (100%), H319 (100%), H335 (100%), H350 (100%), H340, H372

H302 (100%): Harmful if swallowed [Warning Acute toxicity, oral]

H315 (100%): Causes skin irritation [Warning Skin corrosion/irritation]

Documented Uses

  • Alkyl mercury compounds have been used as seed disinfectants and for fungicides. They have also been used in organic synthesis. /Mercury alkyl compounds/
  • The formation of glycidamide and acrylamide adducts on the N-terminal valine of hemoglobin (Hb) is directly proportional in man and rat. Comparison of free acrylamide in plasma, valine adducts on Hb and urinary S-(2-carboxyethyl)cysteine indicate that the rate of elimination of acrylamide is at least five times lower in man than in rats. Therefore, since the integrated concentration-time ratio for glycidamide to acrylamide adducts in man (0.3) is about one-half of that for rats (0.58) at low doses, the tissue dose
  • The objective of this study was to compare the metabolism of acrylamide (AM) administered orally (po), dermally, intraperitoneally (ip), or by inhalation, and to measure the hemoglobin adducts produced. Rats and mice were exposed to 2.9 ppm (1,2,3-13C) and (2,3-14C)AM for 6 hr. (2,3-14C)AM (162 mg/kg) or (1,2,3-13C)AM (13 8 mg/kg) in water was administered dermally to rats for 24 hr, and (1,2,3-13C)AM was administered ip (47 mg/kg). Urine and feces were collected for 24 hr. Urine was the major elimination route in
  • The major metabolite formed via the cytochrome P450 pathway is glycidamide. Species differences in the formation of this metabolite have been observed, with acrylamide converted to glycidamide to a greater extent in the mouse than in the rat, based on urinary metabolites.
  • In vivo metabolite of acrylamide in rats.
  • When acrylamide was administered to rats, the conversion to glycidamide was 51% following the administration of 5 mg/kg and decreased to 13% after 100 mg/kg, based on the measurement of hemoglobin adducts. The conversion of acrylamide to glycidamide was higher following subchronic dosing as well. Acrylamide hemoglobin adduct formation was approximately 2- or 4.5-fold greater for oral (20 mg/kg/day for 15, 21, 34 or 47 days) or intraperitoneal (50 mg/kg/day for 11 days) dosing, respectively, than glycidamide adduct

Synonyms

Glycidamide; Oxirane-2-carboxamide; 5694-00-8; Oxiranecarboxamide; 2,3-Epoxypropanamide; Glycidic acid amide; 2-oxiranecarboxamide; 6G5ELX5XYN; DTXSID2031374; DTXCID0011374; (+--)-oxiranecarboxamide; RefChem:143822; 227-163-2; CCRIS 2677; UNII-6G5ELX5XYN; EINECS 227-163-2

Frequently Asked Questions

What are the CAS number and molecular formula of Epoxypropionamide?

CAS 5694-00-8; molecular formula C3H5NO2; molecular weight — g/mol.

What other names is Epoxypropionamide known by?

Glycidamide, Oxirane-2-carboxamide, 5694-00-8, Oxiranecarboxamide, 2,3-Epoxypropanamide, Glycidic acid amide.

Is Epoxypropionamide classified as hazardous?

Hazard statements reported: H302, H315, H317, H319, H335.

Facts on this page are taken from PubChem (US National Library of Medicine) and Wikidata. Grade-specific data — assay, moisture, particle size, packaging, shelf life — is issued per batch on the COA and is not published here.

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