![]() N-丙酰胺基-乙氧基乙醇 溶液结构式
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常用名 | N-丙酰胺基-乙氧基乙醇 溶液 | 英文名 | N-Acryloylamido-ethoxyethanol |
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CAS号 | 89911-50-2 | 分子量 | 159.18300 | |
密度 | 1.075 g/mL at 20ºC | 沸点 | N/A | |
分子式 | C7H13NO3 | 熔点 | N/A | |
MSDS | 美版 | 闪点 | N/A |
Towards new formulations for polyacrylamide matrices: N-acryloylaminoethoxyethanol, a novel monomer combining high hydrophilicity with extreme hydrolytic stability.
Electrophoresis 15(2) , 177-186, (1994) Matrices for electrokinetic separations, based on a unique class of mono- and disubstituted (on the amido nitrogen) acrylamides such as e.g., N-acryloylaminoethoxyethanol (AAEE) and acrylamido-N,N-diethoxyethanol, offer the following advantages: (i) strong re... |
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Novel acrylamido monomers with higher hydrophilicity and improved hydrolytic stability: II. Properties of N-acryloylaminopropanol.
Electrophoresis 17(4) , 732-7, (1996) The physico-chemical properties and the electrophoretic behavior of the novel set of monomers reported by (Simò-Alfonso et al., Electrophoresis 1996, 17, 723-731) have been evaluated. Of utmost importance was the combination of high hydrophilicity and extreme... |
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Novel acrylamido monomers with higher hydrophilicity and improved hydrolytic stability: I. Synthetic route and product characterization.
Electrophoresis 17(4) , 723-31, (1996) The novel acrylamido monomer reported by our group (N-acryloylaminoethoxyethanol, AAEE; Chiari et al., Electrophoresis 1994, 15, 177-186), found to combine high hydrophilicity with extraordinary resistance to alkaline hydrolysis, has come under closer scrutin... |
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New types of separation matrices for electrophoresis.
Electrophoresis 16(10) , 1815-29, (1995)
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Molecular modeling of acrylamide derivatives: the case of N-acryloylaminoethoxyethanol versus acrylamide and trisacryl.
Electrophoresis 15(8-9) , 1104-11, (1994) Molecular mechanics (for evaluation of total energies of individual structures of monomers and oligomers) and molecular dynamics (for evaluating dynamic dependencies of structural features) were used for obtaining information on some unique chemical behavior ... |
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