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Polyethylene oxide peo mw 400 000 g mol

Manufactured by Merck Group
Sourced in United States

Polyethylene oxide (PEO; Mw, 400,000 g/mol) is a high molecular weight synthetic polymer. It is a water-soluble, nonionic polymer with a wide range of applications in various industries. The core function of this product is to provide viscosity enhancement and stabilization properties in aqueous solutions.

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3 protocols using polyethylene oxide peo mw 400 000 g mol

1

Synthesis of Iron Oxide Nanoparticles

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All materials used were of reagent grade and from commercial sources. Iron (III) sulphate hydrate, iron (II) sulphate heptahydrate (ACS, 99+%), and citric acid (99+%) were purchased from Alfa Aesar (Haverhill, MA, USA). Acetone (AppliChem GmbH, Darmstadt, Germany), ethanol absolute (Carlo Erba Reagents GmbH, Emmendingen, Germany), NH4OH (aq) 25% (Honeywell Fluka, Charlotte, NC, USA), and HCl 1 M (Honeywell Riedl-de-Haën, Charlotte, NC, USA) were used as received. Polyethylene oxide (PEO; Mw, 400,000 g/mol) was from Sigma-Aldrich, Co. (St. Louis, MO, USA), and poloxamer 188 (P188; Lutrol F68) was from BASF (Ludwigshafen, Germany). The water used was purified by reverse osmosis.
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2

Magnetic Nanoparticle Synthesis and Characterization

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All materials used were of reagent grade and from commercial sources. The MNPs (iNANOvative™) were kindly provided by Nanos Scientificae Ltd. (Nanos SCI, Ljubljana, Slovenia). The MNPs used were composed of self-assembled multiple 10 nm superparamagnetic iron oxide nanocrystals and these nanocrystals clusters were then coated with a 10 nm thick silica shell. All procedures of MNP synthesis were described in our published studies (Kralj and Makovec, 2015; (link)Nemec et al., 2020; (link)Nemec and Kralj, 2021; (link)Tadic et al., 2014) (link). These MNPs were used in the form of ethanol-or water-based suspensions. Polyethylene oxide (PEO; Mw 400,000 g/mol) was from Sigma-Aldrich, Co. (St. Louis, USA), poloxamer 188 (P188; Lutrol F68) from BASF (Ludwigshafen, Germany), sodium chloride from Merck KGaA (Darmstadt, Germany), and ethanol (96 %, v/v) from Pharmachem Sušnik Jožef (Ljubljana, Slovenia). The water used was purified by reverse osmosis.
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3

Formulation and Characterization of Solid Dispersions

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All materials used were of reagent grade and from commercial sources. Ibuprofen was from Fagron Hellas (Trikala, Greece), carvedilol was a gift from Krka d.d. (Novo mesto, Slovenia), paracetamol was a gift from Lek d.d. (Ljubljana, Slovenia), and metformin hydrochloride was a gift from Zentiva k.s. (Prague, Czech Republic). Polyethylene oxide (PEO; Mw, 400,000 g/mol) was from Sigma-Aldrich, Co. (St. Louis, MO, USA) and poloxamer 188 (P188; Lutrol ® F68) from BASF (Ludwigshafen, Germany). Hydrochloric acid (37%, w/w; HCl), orthophosphoric acid (85%, w/w; H 3 PO 4 ), sodium hydroxide (NaOH), potassium dihydrogen phosphate (KH 2 PO 4 ), formic acid (98-100%, w/w, HCOOH), and polysorbate 80 (Tween ® 80) were from Merck KGaA (Darmstadt, Germany). Acetonitrile was from J.T. Baker (Gliwice, Poland), and ethanol (96%, v/v) was from Pharmachem Sušnik Jožef (Ljubljana, Slovenia). The water used was purified by reverse osmosis and Milli-Q water was obtained by the Millipore Milli-Q lab water system.
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