InChI key
FLKPEMZONWLCSK-UHFFFAOYSA-N
InChI
1S/C12H14O4/c1-3-15-11(13)9-7-5-6-8-10(9)12(14)16-4-2/h5-8H,3-4H2,1-2H3
SMILES string
CCOC(=O)c1ccccc1C(=O)OCC
biological source
synthetic
vapor density
7.66 (vs air)
vapor pressure
1 mmHg ( 100 °C)
assay
≥99.5%
autoignition temp.
854 °F
expl. lim.
0.75 %, 187 °F
refractive index
n20/D 1.502 (lit.)
bp
298-299 °C (lit.)
mp
−3 °C (lit.)
density
1.12 g/mL at 25 °C (lit.)
application(s)
flavors and fragrances
organoleptic
faint
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存储类别
10 - Combustible liquids
wgk
WGK 2
flash_point_f
338.0 °F - closed cup
flash_point_c
170 °C - closed cup
ppe
Eyeshields, Gloves
法规信息
新产品
此项目有
Raphael J Witorsch et al.
Critical reviews in toxicology, 40 Suppl 3, 1-30 (2010-10-12)
This article reviews laboratory and epidemiological research into the endocrine disruptive effects of components of personal care products, namely, phthalate esters, parabens, ultraviolet (UV) filters, polycyclic musks, and antimicrobials. High doses of phthalates in utero can produce “phthalate syndrome,” demasculinizing
Kashappa-Goud H Desai et al.
Journal of controlled release : official journal of the Controlled Release Society, 165(1), 62-74 (2012-10-30)
Herein, we describe the detailed development of a simple and effective method to microencapsulate vaccine antigens in poly(lactic-co-glycolic acid) (PLGA) by simple mixing of preformed active self-microencapsulating (SM) PLGA microspheres in a low concentration aqueous antigen solution at modest temperature
A M Api
Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association, 39(2), 97-108 (2001-03-27)
Diethyl phthalate (DEP; CAS No. 84-66-2) has many industrial uses, as a solvent and vehicle for fragrance and cosmetic ingredients and subsequent skin contact. This review focuses on its safety in use as a solvent and vehicle for fragrance and
Lee-Ju Cheng et al.
Aquatic toxicology (Amsterdam, Netherlands), 109, 166-175 (2011-10-28)
The toxicity and effects of diethyl phthalate (DEP), a potent allelochemical, on the growth of greater duckweed were studied. Biochemical analyses and physiological methods were combined to investigate oxidative stress, adverse effects and their mechanisms in greater duckweeds grown in
Maik Hadorn et al.
Proceedings of the National Academy of Sciences of the United States of America, 109(50), 20320-20325 (2012-11-24)
Higher-order structures that originate from the specific and reversible DNA-directed self-assembly of microscopic building blocks hold great promise for future technologies. Here, we functionalized biotinylated soft colloid oil-in-water emulsion droplets with biotinylated single-stranded DNA oligonucleotides using streptavidin as an intermediary
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