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1 ing both ionophore and additive dissolved in plasticizer.
2 ilms with a bright red color, and acted as a plasticizer.
3 ification simply by blending with a low-cost plasticizer.
4 r, independent of gelatin origin and type of plasticizer.
5 lycaprolactone (PCL) and a citric acid ester plasticizer.
6 external energy, healing agents, solvent or plasticizer.
7 ydrocarbon uptake by PMMA in the presence of plasticizer.
8 patchy surface morphologies on addition of a plasticizer.
9 ted this method on polymer films modified by plasticizer.
10 plasticized polymeric membranes and membrane plasticizers.
11 these membranes or dissolved in the membrane plasticizers.
12 past exposure to FRs as well as alternative plasticizers.
13 ontaminants such as pesticides and phthalate plasticizers.
14 vapor pressures of phthalates and alternate plasticizers.
15 volume additive flame retardants (OPFRs) and plasticizers.
16 ed esters for the production of polymers and plasticizers.
18 and polycarbonate-based), and selected Fluka plasticizers (2-nitrophenyl octyl ether and 2-ethylhexyl
19 bolites formed in vitro for four alternative plasticizers (acetyltributyl citrate (ATBC), bis(2-propy
20 of sensing cocktails (poly(vinyl chloride), plasticizer, active sensing components, and tetrahydrofu
22 - as ion exchanger and either DOS or NPOE as plasticizer also demonstrated selectivity similar to TFP
24 arbon nanostructures (ICN) were dispersed in plasticizer and entrapped in a PVC matrix that included
25 high-production volume organophosphate-based plasticizer and flame retardant widely used within the U
26 films when sorbitol (30% (w/w)) was used as plasticizer and to form gels when the API concentration
27 aged films resulted from the balance between plasticizer and water loss, and the progressive replacem
28 rinted on filter paper in the absence of any plasticizer and/or additional hydrophobic polymeric phas
31 PEs) are widely used as flame retardants and plasticizers and have been detected ubiquitously in the
32 organophosphate flame retardants (OPFRs) and plasticizers and their two diester metabolites were inve
33 mer, 12.5% of tris(2-ethylhexyl)phosphate as plasticizer, and 12.5% of Aliquat 336 as cationic carrie
34 to identify concentrations of the ionophore, plasticizer, and lipophilic additive that give rise to t
35 ds, such as hypolipidemic drugs, herbicides, plasticizers, and analgesics have been identified as per
39 ential when new, uncharacterized polymers or plasticizers are implemented for ion-selective electrode
43 tive membranes with optionally two different plasticizers [bis(2-ethylhexyl)sebacate (DOS) and 2-nitr
52 gh addition of varying mass fractions of the plasticizer diethylene glycol dibenzoate to carbon black
54 state, in mixtures with low molecular weight plasticizers (e.g. glycerol, glucose and trehalose) at d
55 e rats exposed in utero to certain phthalate plasticizers exhibit multinucleated germ cell (MNG) indu
58 weight (LMW) phthalate diesters function as plasticizers, fixatives or solvents in such products, bu
59 hexyl) phthalate (DEHP), used primarily as a plasticizer for polyvinyl chloride, is found in a variet
60 a result of these studies, an all-polymeric plasticizer-free calcium-selective membrane was fabricat
61 l properties suitable for the fabrication of plasticizer-free ion-selective membrane electrodes and b
65 as shown that the hydrocarbon sensitivity of plasticizer-free PMMA is negligible, while the sensitivi
67 decyl methacrylate (MMA-DMA) to fabricate a plasticizer-free polymer with cation-exchange properties
68 nophosphate ester (OPE) flame retardants and plasticizers has been confirmed for the first time in th
69 polymerization of pyrrole in the presence of plasticizers has yielded conducting organic polymer film
71 Mixtures of poly(vinyl chloride) (PVC) with plasticizers have been used in ion-selective electrodes
76 Phthalate esters are used most commonly as plasticizers in the food and construction industry, and
77 organosulfides/organopolysulfides serve as "plasticizer" in the solid-electrolyte interphase layer t
78 Ca(2+) capacitor, pollen tube guide and wall plasticizer into a simple but widely applicable model of
80 2-ethylhexyl) phthalate (DEHP), a ubiquitous plasticizer known to contaminate packaged foods, was det
81 es, chemical warfare agents, lubricants, and plasticizers, leading to OP-induced delayed neuropathy i
84 osite and for determining the temperature or plasticizer mass fraction above which rapid resistance r
87 found that the membrane containing the polar plasticizer nitrophenyl octyl ether in the absence of io
92 NPs: 116 nm diameter), and with or without a plasticizer (perfluorotripentylamine, FC-70) are macrosc
96 the contamination of the samples with common plasticizers routinely found in plastic ware extractives
97 ymer matrix, a linear perfluorooligoether as plasticizer, sodium tetrakis[3,5-bis(perfluorohexyl)phen
98 simple mixing of evaporant, surfactant, and plasticizer solvents, polylactic-co-glycolic acid (30% b
100 g effects in children because of exposure to plasticizers, such as phthalates, findings of previous s
102 hich is a valuable feedstock for polymer and plasticizer syntheses, with high yield and TON (turnover
103 dented example demonstrating the effect of a plasticizer to create polymer nanocomposites with differ
104 e optodes using a hydrophobic polymer and/or plasticizer to dissolve hydrophobic sensing elements, th
105 onto a quartz crystal, and the influence of plasticizer type and amount on the response was evaluate
106 Formulations differed as to the type of plasticizer used and whether an ionic additive was prese
107 Di-(2-ethylhexyl) phthalate (DEHP) is a plasticizer used in consumer and medical products that c
111 looring with approximately 13% (w/w) DEHP as plasticizer were measured in the Field and Laboratory Em
112 (OPs) being applied as flame retardants and plasticizers were investigated in airborne particles ove
113 rotein-sorbing vaccine adjuvants and polymer plasticizers were used to "actively" load the protein in
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