![]() Edetol structure
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Common Name | Edetol | ||
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CAS Number | 102-60-3 | Molecular Weight | 292.415 | |
Density | 1.1±0.1 g/cm3 | Boiling Point | 369.1±0.0 °C at 760 mmHg | |
Molecular Formula | C14H32N2O4 | Melting Point | 32°C | |
MSDS | Chinese USA | Flash Point | 145.7±17.4 °C | |
Symbol |
![]() GHS07 |
Signal Word | Warning |
Autoclavable highly cross-linked polyurethane networks in ophthalmology.
Biomaterials 14(14) , 1089-97, (1993) Highly cross-linked aliphatic polyurethane networks have been prepared by the bulk step reaction of low molecular weight polyols and hexamethylenediisocyanate (HDI). These polyurethane networks are optically transparent, colourless and autoclavable amorphous ... |
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Sorption of Cu(II) complexes with ligands tartrate, glycine and quadrol by chitosan.
J. Hazard. Mater. 171(1-3) , 133-9, (2009) The sorption by chitosan in Cu(II) solutions containing tartrate, glycine (amino acetic acid) and quadrol (N,N,N',N'-tetrakis(2-hydroxypropyl)ethylenediamine) as ligands has been investigated. The degree of sorbate removal strongly depends on pH. In solutions... |
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The behavior of organic components in copper recovery from electroless plating bath effluents using 3D electrode systems.
J. Hazard. Mater. 112(3) , 261-7, (2004) An electrochemical method was applied for the recovery of copper both from the spent solutions and from the rinse waters of electroless copper plating baths, containing copper sulfate, formaldehyde, quadrol, and NaOH. Experiments were conducted in a rotating ... |
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In vitro stimulation of macrophages by quadrol [N,N,N',N'-tetrakis(2-hydroxypropyl)ethylenediamine].
J. Immunopharmacol. 7(3) , 303-12, (1985) Mouse peritoneal macrophages, when exposed to Quadrol [N,N,N',N'-tetrakis(2-hydroxypropyl)ethylenediamine] in vitro, show a dose dependent enhanced spreading over a four-hour period. In vitro Quadrol induced phagocytosis of polystyrene beads was found to be t... |
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Decontamination of solutions containing Cu(II) and ligands tartrate, glycine and quadrol using metallic iron.
J. Hazard. Mater. 175(1-3) , 452-9, (2010) Decontamination of solutions containing Cu(II) complexes with tartrate, glycine and quadrol (N,N,N'N'-tetrakis(2-hydroxypropyl)ethylenediamine) using metallic iron depends on pH and proceeds best in mildly acidic solutions. Cu(II) is completely removed from a... |
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Evaluation of the efficacy of a topical cosmetic slimming product combining tetrahydroxypropyl ethylenediamine, caffeine, carnitine, forskolin and retinol, In vitro, ex vivo and in vivo studies.
Int. J. Cosmet. Sci. 33(6) , 519-26, (2011) Three studies were performed to investigate the mechanism of action and evaluate the efficacy of a topical cosmetic slimming product combining tetrahydroxypropyl ethylenediamine, caffeine, carnitine, forskolin and retinol. The Ex vivo study on skin explants s... |
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Resolution of diastereomers of N,N,N',N'-tetrakis(2-hydroxypropyl)ethylenediamine (quadrol) by reversed-phase high-performance liquid chromatography.
J. Chromatogr. A. 455 , 183-92, (1988) Quadrol, N,N,N',N'-tetrakis(2-hydroxypropyl)ethylenediamine, has been recently observed to display biological activity. It is an immunostimulant and has been implicated as a potentially useful agent in accelerated wound healing. Quadrol exists as a mixture of... |
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Quantitation of N,N,N',N'-tetrakis (2-hydroxypropyl)-ethylenediamine in plasma by gas chromatography.
J. Chromatogr. A. 488(2) , 369-77, (1989) A wide-bore capillary gas chromatographic method with nitrogen-selective thermionic detection is described for the quantitative analysis of N,N,N',N'-tetrakis (2-hydroxypropyl)ethylenediamine (Quadrol) in plasma. N,N,N',N'-tetrakis (2-hydroxybutyl)ethylenedia... |
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Purification of quadrol for microsequencing in the spinning-cup sequenator.
Anal. Biochem. 138(1) , 30-3, (1984) Treatment of Quadrol buffer with isothiocyanatophenylthiocarbamylaminoethylaminopropyl glass (DITC glass) substantially reduces the impurities observed when this buffer is used with the spinning cup sequenator. Use of DITC glass-treated Quadrol buffer permits... |
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Magnetic resonance flow velocity and temperature mapping of a shape memory polymer foam device.
Biomed. Eng. Online 8 , 42, (2009) Interventional medical devices based on thermally responsive shape memory polymer (SMP) are under development to treat stroke victims. The goals of these catheter-delivered devices include re-establishing blood flow in occluded arteries and preventing aneurys... |