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詳細
N-Ethylacetamide is a suitable nylon model for mechanistic studies of dye fading.
アプリケーション
N-Ethylacetamide was used to investigate propylene carbonate and a mixture of N-methylformamide and N-ethylacetamide by broadband dielectric and mechanical shear spectroscopy. It was used in determination of reaction products of OH-oxidation of N-methylpyrrolidone under atmospheric conditions.
適用法令
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消防法
第4類:引火性液体
第三石油類
危険等級III
非水溶性液体
Jan Code
147400-25G:
147400-VAR:
147400-BULK:
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Physical chemistry chemical physics : PCCP, 13(9), 3911-3916 (2011-01-07)
The impedance spectroscopy studies performed for two strongly hydrogen-bonded liquid amides: N-methylpropionamide (NMP, CH(3)·NH·CO·C(2)H(5)) and N-ethylacetamide (NEA, C(2)H(5)·NH·CO·CH(3)) have shown that the two centers of the peptide linkage, -NH·CO-, active in the C=OH-N hydrogen bonds formation, exhibit quite different sensibilities
The Journal of chemical physics, 137(6), 064508-064508 (2012-08-18)
Propylene carbonate and a mixture of two secondary amides, N-methylformamide and N-ethylacetamide, are investigated by means of broadband dielectric and mechanical shear spectroscopy. The similarities between the rheological and the dielectric responses of these liquids and of the previously investigated
The Journal of neuroscience : the official journal of the Society for Neuroscience, 26(18), 4820-4825 (2006-05-05)
AMPA receptor (AMPAR) internalization provides a mechanism for long-term depression (LTD) in both hippocampal pyramidal neurons and cerebellar Purkinje cells (PCs). Cerebellar LTD at the parallel fiber (PF)-PC synapse is the underlying basis of motor learning and requires AMPAR activation
The Journal of chemical physics, 123(5), 054516-054516 (2005-08-20)
Dielectric relaxation dynamics of secondary amides is explored in their supercooled state near the glass transition temperature Tg by investigating N-ethylacetamide and its mixtures with N-methylformamide. All the samples are found to exhibit giant dielectric permittivities, reaching over 500 in
Biophysical chemistry, 22(4), 249-254 (1985-10-01)
It is shown that a striking parallelism exists between the anesthetic potency of general halocarbon anesthetics and their influence on the hydrogen bond association constants in N-H...O=C type hydrogen bonds, important for shaping the ion channels. It is further shown
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