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1 d enzyme immobilization in the presence of a nonionic surfactant.
2 emulsion method using two different types of nonionic surfactants.
3 long-chain length (e.g., n = 1-16) TX-series nonionic surfactants.
4 protein and purified using over 50 different nonionic surfactants.
5 egradation of the polycarbonate plastics and nonionic surfactants.
6 used to make alkylphenol ethoxylates, common nonionic surfactants.
7 ic interactions between Ru(bpy)3(2+) and the nonionic surfactants.
8 cular polymers by coassembly with homochiral nonionic surfactants.
9  enhance nanoparticle stability (Tween 80, a nonionic surfactant), and residual contaminants resultin
10                                              Nonionic surfactants are often used as general reagents
11  Ru(bpy)3(2+) in the presence of a series of nonionic surfactants are reported (Triton X-100, 114, 16
12 e of a lyotropic liquid crystalline phase of nonionic surfactants as mesoporogens and chiral template
13 ionic surfactants and oxyethylene content of nonionic surfactants at the interface of self-assembly i
14 e membrane were subsequently removed using a nonionic surfactant before the final measurement was car
15  This study investigates the partitioning of nonionic surfactants between shrinking microscale oil dr
16 We present here a sponge phase consisting of nonionic surfactant bilayers.
17                              A total of five nonionic surfactants (Brij 30, Span 20, Ecosurf EH-3, po
18   Subsequently, the ocular toxicities of six nonionic surfactants, Brij 700, -58, -56, -78, -97, and
19  generalized to other surfactants, including nonionic surfactants, by making use of fluorophore-surfa
20           Here, we show that the presence of nonionic surfactants can alter protein thermal stability
21                               The effects of nonionic surfactant chain length on the properties of tr
22                          Polysorbate 20 is a nonionic surfactant commonly used in the formulation of
23 as also shown to decrease in the presence of nonionic surfactants compared to that containing the zwi
24 ty (IM) separation to characterize a complex nonionic surfactant, consisting of a methylated glucose
25         In this mixed surfactant system, the nonionic surfactant DDM functions as a surface blocking
26 taminants including metal complexing agents, nonionic surfactant degradates, personal care products,
27                                              Nonionic surfactant excipients (NISEs) are commonly adde
28                                        These nonionic surfactants for CO2 were shown by SANS to be ca
29 CEC-ESI-MS analysis of these very long chain nonionic surfactants for the first time.
30      We demonstrate that the introduction of nonionic surfactants for the solubilization of membrane
31 firmed their potential as stimuli-responsive nonionic surfactants for various applications.
32 surpass the cloud point temperature from the nonionic surfactants frequently utilized for membrane pr
33                    Poloxamers and poloxamine nonionic surfactants have diverse applications in variou
34 reatest for the zwitterionic (i.e., APS) and nonionic surfactants (i.e., POE).
35  The influence of poly(ethylene oxide)-based nonionic surfactants (i.e., Triton X-100 and Brij 35) in
36 Measurements are made and analyzed for large nonionic surfactant Igepal CO-520reverse micelles (water
37 oteome with membrane proteins by introducing nonionic surfactants in the solubilization solution.
38 ght mass spectrometry (UPLC-QTOFMS) revealed nonionic surfactants, including alcohol polyethoxylates
39 esults show that the presence of anionic and nonionic surfactants increase the rate of nanobubble nuc
40 sity are observed as the chain length of the nonionic surfactant increases.
41                                          The nonionic surfactant insoluble fraction enriched for cyto
42  inner space of reverse micelles formed from nonionic surfactants (isotropic phase).
43                     In the presence of these nonionic surfactants, membrane electrode response toward
44 onolithic C-18 column and mixed (anionic and nonionic surfactants) micellar eluent for determination
45 ectrometry (MS/MS) to characterize a complex nonionic surfactant mixture.
46                                          The nonionic surfactant, n-alkyl poly(ethylene oxide), and w
47               Aqueous solutions of monomeric nonionic surfactants, n-alkyl polyoxyethylene ethers (C1
48 eractions between proteins and AS as well as nonionic surfactants (NIS) are of both basic and applied
49 1) lyotropic liquid crystalline phase of the nonionic surfactant octaethyleneglycol monohexadecyl eth
50                             The effects of a nonionic surfactant, octaethyleneglycol mono n-dodecyl e
51 ntally measured droplet surface tensions for nonionic surfactants octyl-beta-D-thioglucopyranoside an
52 ide variety of soluble polymeric, ionic, and nonionic surfactants of high- and low-foaming character.
53 series are alkylphenol polyethoxylates -type nonionic surfactants of varying numbers of ethylene oxid
54                             Polysorbates are nonionic surfactants often used at variable levels in va
55                                The effect of nonionic surfactants on pH electrodes prepared with amin
56                       The effects induced by nonionic surfactants on the EMF response function of hyd
57 y the monomer attachment, the aggregation of nonionic surfactant or polymer can be easily captured an
58                              Within minutes, nonionic surfactants partition into oil droplets, reachi
59 e ionic surfactants are used to modulate the nonionic surfactant partitioning and trigger reversible
60 ic surfactants that form mixed micelles with nonionic surfactants reduces partitioning.
61              Trace amounts of Triton X100, a nonionic surfactant, release the trapped cells from thes
62 ize the influence of oil chemical structure, nonionic surfactant structure, and surfactant concentrat
63 rmaldehyde in water, formaldehyde-water with nonionic surfactant Tergitol NP-9, and formaldehyde-wate
64 its were treated with anionic, cationic, and nonionic surfactants that caused different levels of ocu
65                             Polysorbates are nonionic surfactants that have been widely used in bioth
66 enge that was mitigated by the addition of a nonionic surfactant to the matrix.
67          We utilize purified Triton-X 100, a nonionic surfactant, to make soap bubbles.
68                               The use of the nonionic surfactant TPGS-1000 was found to improve both
69                           The effects of the nonionic surfactant Triton X-100 (poly(ethylene glycol)
70 e dispersed in 20 mM KCl solution containing nonionic surfactant Triton X-100 and their translocation
71 lipid membrane can be removed effectively by nonionic surfactant Triton X-100.
72 50-fold) are observed in the presence of the nonionic surfactant Triton X-100.
73 up PAHs and PCDDs from human serum using the nonionic surfactant Triton X-100.
74 onomer glycidyl methacrylate combined with a nonionic surfactant Triton X-100.
75 pyridyl) were studied in the presence of the nonionic surfactants Triton X-100, Thesit, and Nonidet P
76                       In aqueous solution of nonionic surfactants (Triton X-100 and Tween 20) arrays
77 icellar electrokinetic chromatography with a nonionic surfactant, Triton X-100.
78 ithin; 3:1) to replace some concentration of nonionic surfactants (Tween 80) with natural surfactant
79 g formulated in lipid vesicles prepared from nonionic surfactants, we describe a novel mechanism infl
80 iety of anionic, cationic, zwitterionic, and nonionic surfactants were evaluated for their ability to
81 d by the presence of Triton X-100 (TX100), a nonionic surfactant, were studied by scanning electroche
82 urfactants, including anionic, cationic, and nonionic surfactants, were investigated.
83 presentative polymer [gum arabic (GA)] and a nonionic surfactant [Witconol 2722 (WT)] under a range o
84 ngle Park, NC; poloxamer 188) Injection is a nonionic surfactant with hemorrheologic properties that