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1  weight distribution while the other (B) was polydisperse.
2 ze distribution of vesicles tends to be very polydisperse.
3 fficult to predict and the products are more polydisperse.
4 in length and composition and, hence, highly polydisperse.
5 and the alpha-crystallin assemblies are more polydisperse.
6 terns, since atmospheric aerosols are mostly polydisperse.
7  in seawater, and the aggregates were highly polydispersed.
8 ding polymer analogues, which are inherently polydispersed.
9  of sulfate results in the formation of more polydisperse (0.1-5 mum) and heavier particles than thos
10 izes and chemical compositions of individual polydisperse aerosol particles in real time.
11                                              Polydisperse aerosols with different distributions were
12 es of internal tension are consistent with a polydisperse aggrecan population, likely caused by varyi
13 es were fully transformed to Ag(2)S, and the polydisperse, aggregated particles were not fully sulfid
14  Lattice kirigami, ultralight metamaterials, polydisperse aggregates, ceramic nanolattices, and 2D at
15                  However, it appears to form polydispersed aggregates, which confounds understanding
16 nd sedimented through sucrose gradients as a polydisperse, aggregating system.
17 adhesion when compared to their structurally polydisperse analogues.
18             Two types of AgNPs-an engineered polydisperse and aggregated AgNP powder, and a laborator
19                                The loops are polydisperse and bind via a set of hydrogen bonds betwee
20                        Their cores are often polydisperse and coated by a stabilizing shell that vari
21 al Voronoi tessellations with cells that are polydisperse and distorted, away from their regular shap
22 s (sHSPs) are molecular chaperones that form polydisperse and dynamic complexes with target proteins,
23 malian small heat shock proteins (sHSP) form polydisperse and dynamic oligomers that undergo equilibr
24 highly effective for deconvolution of highly polydisperse and enhanced separation of a low level lysi
25 e generally difficult to access, samples are polydisperse and precise dimensional control is not poss
26 icult task because proteins are often highly polydisperse and present as multicomponent mixtures.
27                                              Polydisperse and racemic mixtures of helical fragments o
28 th different MB size distributions including polydisperse and size-isolated MB, one with variable bur
29 ins, prescreened to avoid proteins providing polydisperse and/or aggregated samples.
30 ize of nanomaterials in samples that contain polydisperse and/or multimodal nanoparticle populations.
31      O-Antigen polysaccharides are typically polydisperse, and carrier proteins can have multiple gly
32  peripheral branches of irregular, flexible, polydisperse, and highly branched molecules can facilita
33 Hs) are structurally complex, heterogeneous, polydisperse, and highly negatively charged mixtures of
34 end of the measurement, the domains remained polydisperse, and true thermodynamic equilibrium was not
35 equent stacking of the duplex oligomers into polydisperse anisotropic rod-shaped aggregates, which ca
36 rocess in two-phase mixtures consisting of a polydisperse array of spherical particles.
37 ydrolyzable analog of GTP, became larger and polydisperse as the potassium concentration was decrease
38 ysis indicated that IIM transcripts were not polydispersed as is found in mammalian mucin transcripti
39 o transition to either expanded symmetric or polydisperse assemblies.
40 sHsps are ATP-independent and generally form polydisperse assemblies.
41 ctra of micelles and reverse micelles reveal polydispersed assemblies containing several hundred CTAB
42  during diffusion-controlled coarsening of a polydisperse assembly of particles have proved difficult
43                               Acemannan is a polydispersed beta-(1,4)-linked acetylated mannan with a
44 e envisaged a biothreat scenario wherein the polydispersed bioaerosol is disseminated in bulk over an
45  sensitivity, providing unique insights into polydisperse biomolecular systems that are commonly enco
46 ited to placing linear DNA segments within a polydisperse block copolymer.
47 ring local radial gas volume fractions under polydispersed bubbly flow conditions.
48 found structural transformation, from highly polydispersed caged-like native assemblies into an elong
49 in a highly complex spectrum of overlapping, polydisperse charge states.
50 milarity between a FRA3B segment and a small polydispersed circular DNA.
51  as well as sequences with homology to small polydispersed circular DNAs (spcDNAs).
52 rement of the dielectric permittivities of a polydispersed cis-polyisoprene samples.
53 etastable species persists though weakens in polydisperse cluster systems.
54                           Here, we show that polydisperse colloidal bananas self-assemble into a comp
55 s the mechanical response of deeply annealed polydisperse colloidal gels.
56 3X polymerization is less effective and more polydisperse compared to ASC or ASCb.
57 sed milk substitutes were significantly more polydisperse compared to those of bovine milk.
58 study because protein-lipid interactions are polydisperse, competitive, and transient.
59 ecifically, alphaB-S59D formed smaller, more polydisperse complexes that effectively suppressed aggre
60 rom oligomerization of structural units into polydisperse complexes typically with three to eight str
61                        Many sHSPs exist as a polydisperse composition of oligomers, which undergoes c
62 atalytic CO(2) hydrogenation against larger, polydisperse CoO nanoparticles on SiO(2) and a conventio
63 iol ligands, Cu(NO(3))(2) hydrolyzes to form polydisperse copper(II) oxide particles with diameters f
64 tyl acrylate) copolymers self-assembled into polydisperse core-shell-type micelles as a result of the
65               We compared the results from a polydisperse cytoplasmic model (PD model) produced by CG
66                                          Our polydisperse ddIA assay serves as an example of sensitiv
67 ently released to yield pure hybrids free of polydisperse digested DNA fragments and serum biomolecul
68                                         This polydisperse digital droplet immunoassay (ddIA) uses pro
69                        We show that slightly polydisperse disordered 2D foams can be used as a self-a
70  10-30 nm as well as a smaller heterogeneous polydisperse dissolved organic matter (DOM) fraction.
71  is found that embedding an elastomer with a polydisperse distribution of nanoscale LM inclusions can
72 us toxoid) incorporated) can be modeled as a polydisperse distribution of perforated bilayer vesicles
73 modelling show that MIP-1 reversibly forms a polydisperse distribution of rod-shaped polymers in solu
74  polypeptides in which the sheets had highly polydisperse distribution of sizes in the (x/y)- and (z)
75 confirmed these findings and also detected a polydisperse distribution of stoichiometries.
76 microm) perfluorocarbon liquid droplets from polydisperse droplet emulsions, which is crucial in prep
77 sperse droplet drying experiments and during polydisperse droplet equilibration experiments at 75% re
78             Droplet sorting errors caused by polydisperse droplet sizes that are often inevitable in
79 sordered process, in which a large number of polydisperse droplets are projected from a fluctuating T
80  simplified digital immunoassay performed in polydisperse droplets that are prepared without any spec
81 Surprisingly, molecular heterogeneity in the polydisperse drops promotes reversible shape transitions
82                                              Polydisperse edge-fused nickel(II) porphyrin nanoribbons
83  the membrane protein complex AqpZ; a highly polydisperse empty MSP1D1 nanodisc and the tetradecameri
84 tion of oxidation products in both mono- and polydisperse emulsions, with and without presence of cat
85 the molecular chaperone alphaB-crystallin, a polydisperse ensemble of between 10 and 40 identical sub
86 typically difficult to control, resulting in polydisperse fiber lengths and an incomplete understandi
87  matrix comprising parallel arrays of small, polydisperse fibrils (27-51 nm) that often alternate in
88 asing evidence suggests that highly dynamic, polydisperse folding intermediates, which occur during f
89 mocomplexes of mutant subunits become highly polydisperse following incubation at 37 degrees C, refle
90 nd STX are expressed as high molecular mass, polydisperse forms that are associated with the cell and
91         We hypothesize that the formation of polydisperse, fuzzy N-RNA clusters with multiple distrib
92 erarchically organized particles (HOPs) from polydisperse gold thiolate nanoplatelets with cysteine s
93  the experimental observations for naturally polydisperse granular materials, and another with a "nor
94                 The joints were infused with polydisperse HA of weight-average mass 2100 kDa (4 mg x
95               The method was validated for a polydisperse HA sample with a weight-average molecular m
96                 A sample load of 2.5 mug for polydisperse HA samples was employed.
97               The methods were validated for polydisperse HA samples with viscosity-average molecular
98 ged with saline, and injected with saline or polydisperse HA, and samples were obtained for analysis
99 rved experimental signatures from a model of polydisperse hard spheres with additional weak attractio
100 ent-driven molecular dynamics simulations of polydisperse hard-sphere systems and use mode-coupling t
101 el using random close packing simulations of polydispersed hard disks in rectangular boxes and find o
102 A-I fourth exon sequence may account for the polydisperse HDL pattern as observed by others in transg
103 lts demonstrate that HSP27 and alphaB formed polydisperse hetero-oligomers in vitro, which had an ave
104 (SDS) and 2-mercaptoethanol, and migrated as polydisperse, high-molecular-weight bands on SDS-polyacr
105           GAGs are heterogeneous, polymeric, polydisperse, highly water soluble, synthetically challe
106 ntent of up to ~60% and assemble into large, polydisperse homo- and hetero-oligomers, making them cha
107                         MBL and ficolins are polydisperse homo-oligomeric molecules, found in complex
108 lectances approaching 0.2%, resulting from a polydisperse honeycomb structure.
109 ctor approach shows a sample that is broadly polydisperse in both molar mass and size, with strings r
110                          The VLPs are highly polydisperse in their radius distribution.
111  when the incoming droplets to be merged are polydisperse in their sizes, often observed in assays th
112 The Au/Ag-core/shell NPs were observed to be polydispersed in size, nonspherical, and contain off-cen
113            Here we show that stabilizer-free polydispersed inorganic nanoparticles (NPs) can spontane
114 rge state and stoichiometry distributions of polydisperse ions.
115 sociated with enhanced light absorption when polydisperse, laboratory-generated ns-soot particles wer
116            Specifically, nematically ordered polydisperse LCOs and isotropic organic solvent (dichlor
117  actin creates longer aggregates with a more polydisperse length distribution in which actin aligns s
118 er cell of a 6 kb genome, arranged mainly as polydisperse linear concatemers.
119 lly interlocked molecules, linear oligomers, polydisperse linear polymers, and cross-linked polymer n
120 body recognition when compared to commercial polydisperse linear systems, such as DMG-PEG2000.
121 m, such as hnRNPA1, can assemble into both a polydisperse liquid phase and an ordered solid phase of
122           Here, we structurally characterize polydisperse LNP formulations by applying emerging solut
123 s demonstrated the presence of spherical and polydisperse <100 nm Cu particles in product B.
124 anoparticle (NP) formulations are inherently polydisperse making their structural characterization an
125 neration approaches in most cases are highly polydisperse, making them less desirable for quantitativ
126 sphate because, unlike DPE2, it can generate polydisperse malto-oligosaccharides from maltose.
127  in contrast to some literature reports with polydispersed manganese oxides and electro-deposited fil
128 s in four steps: i) An instant nucleation of polydisperse MAPI nanocrystals on antisolvent drop, ii)
129 ble characterization method of virtually any polydisperse metallic NP dispersion, many of them availa
130       The unprecedented stabilities of these polydisperse microphase separated melts are discussed in
131 industry and are therefore representative of polydisperse microplastics occurring in the environment.
132 -heptane, asphaltenes are a highly aromatic, polydisperse mixture consisting of the heaviest and most
133                                           In polydisperse mixtures, smaller particles condense within
134 ften results in major structural changes and polydisperse mixtures.
135                                         Such polydisperse models are known to capture the hallmarks o
136 P, alphaB-crystallin ('alphaB'), forms large polydisperse multimeric assemblies.
137 ever, these high temperatures lead to large, polydisperse nanocrystals.
138 r-quality crystals can be obtained from more polydisperse nanoparticle solutions.
139 ts the robust size available in the starting polydisperse nanoparticles.
140 ion, are rare, owing at least in part to the polydisperse nature (distribution of chain lengths) of p
141 erogeneous sHSPs have been confounded by the polydisperse nature of alphaB oligomers.
142                              The dynamic and polydisperse nature of sHsp oligomers has made studying
143 ifficult to study due to their transient and polydisperse nature.
144 equilibrium suspensions of drops composed of polydisperse nematic liquid crystal oligomers (NLCOs).
145  mass 2100 kDa (4 mg x ml(-1), n = 17), with polydisperse neutral dextran of similar average mass (20
146 on between amyloid-beta (Abeta) monomers and polydisperse, NMR-invisible ('dark') protofibrils, a pro
147 elopment of hand-held devices for monitoring polydisperse non-spherical pollutants suspended in vario
148 n active functional groups, and the provided polydisperse NPs were intended to reduce, stabilize, and
149 he tsE octamers and yielded the formation of polydisperse NSP2 aggregates, events not observed with w
150                  The use of monodisperse and polydisperse objects shows that whereas smaller monodisp
151                 Linear polymersomes produced polydisperse oil droplets with diameters of ~50 mum rega
152  When mixed in vitro, these two sHSPs form a polydisperse oligomer array composed solely of heterodim
153                    They form highly dynamic, polydisperse oligomeric ensembles and contain long intri
154 resent archetypal sHSPs that exhibit complex polydispersed oligomeric assemblies and rapid subunit ex
155 c weight, they typically assemble into large polydisperse oligomers that vary in both size and shape
156 ly disordered nature, their tendency to form polydisperse oligomers, and their diverse range of clien
157                 While DNAJB6 forms large and polydisperse oligomers, CTD was found to form only monom
158 nd CCL5 assembly into high-molecular-weight, polydisperse oligomers.
159 preparations were used, a monodisperse and a polydisperse one.
160 s into a highly complex, polyfunctional, and polydisperse organic mixture that challenges most mass a
161            Current model membranes display a polydisperse particle size distribution and can suffer f
162                             A comprehensive, polydisperse particle TD analysis would enhance understa
163      The Euler-Lagrange approach is used for polydisperse particle TD prediction in both laminar and
164 omical models are adopted to investigate the polydisperse particle TD under different flow conditions
165 stigate the anatomy and turbulent effects on polydisperse particle transport and deposition (TD) in t
166 ean prehistory, hilltop enclosures made from polydisperse particle-and-block stone walling were expos
167    It was most accurate in environments with polydispersed particle sources and may not be useful in
168                      A significant amount of polydisperse particles are also shown to be deposited at
169                        Both monodisperse and polydisperse particles are considered in clusters with v
170 lets and beads of different sizes but to use polydisperse particles to further our understanding of t
171 ese two methods in a popular liquid model of polydisperse particles.
172  and erodibility of natural soils, and other polydisperse particulates that experience transient hydr
173                       Both probes bound in a polydispersed pattern, which is characteristic of mucin
174 e corrected molecular weight averages of the polydispersed PBA obtained from measurements using MALDI
175    We also reduced the molecular size of the polydispersed PEG3400 to monodispersed PEG27 and PEG12 (
176 in ESI mass spectra of high molecular weight polydisperse PEGylated molecules.
177                               We find that a polydisperse Percus-Yevick hard-sphere liquid-structure
178 om holographic speckle patterns of suspended polydisperse PMs in water with measurement errors of 22.
179 of OEG lengths, thus generating structurally polydisperse POEGMAs when polymerized through reversible
180 rip alkali cations (Na+) from several narrow polydisperse poly(ethylene glycol) standards.
181 l standard in a quasi-equimolar mixture with polydispersed poly(butylene adipate) (PBA) indicated tha
182 adly discussed under the following headings: polydisperse polyethylene glycol (PEG), membrane-enhance
183 a broad range of network materials including polydisperse polymer precursors.
184  results indicate that ASC's faster and less polydisperse polymerization is more efficient, plausibly
185 to chemical composition are used to separate polydisperse polymers and polymer mixtures into the narr
186      The application of ThFFF/MALDI-TOFMS to polydisperse polymers and polymer mixtures was demonstra
187 xperimental data for solutions of moderately polydisperse polymers and polymer mixtures.
188 xperimental data for solutions of moderately polydisperse polymers and their binary and ternary mixtu
189 he varying contour lengths of the uncharged, polydisperse polymers engender different amounts of hydr
190 lem encountered in the MALDI-TOF analysis of polydisperse polymers is mass discrimination against hig
191 ing MALDI-TOF for directly measuring MWDs of polydisperse polymers, especially those highly polydispe
192 lydisperse polymers, especially those highly polydisperse polymers.
193                 During the lag phase, highly polydisperse, polymorph, and compact oligomers (oligomer
194                             Fractionation of polydispersed polysiloxanes (1-2 g) into narrow molecula
195         Specifically, high molecular weight, polydisperse polyvalent ligands are effective inhibitors
196                                      The two polydisperse polyvinylimidazoles were previously describ
197 her measured before or after conversion to a polydisperse population with incubation.
198 rements further supported the observation of polydisperse pore complexes from the MS data.
199 e content, smaller and larger particles of a polydisperse powder had slightly different surface compo
200 ight scattering measurements showed that the polydisperse preparation contains significant amounts of
201                        Instead, we observe a polydisperse product with a mixture of core sizes.
202   Of these reports, most show aggregated and polydisperse products.
203 Rad52 uses its disordered C-terminus to sort polydisperse Rad51 into discrete monomers.
204 monodisperse (polystyrene latex spheres) and polydisperse (red-fluorescent spheres) standards, respec
205 fferent attraction levels, and also identify polydisperse rigid fractal clusters using a Gaussian mix
206 emonstrate demixing in a colloidal system of polydisperse, rod-like clay particles that is driven by
207 ing fractions, and (iii) the separation of a polydisperse sample into fractions of differing mean cor
208 is demonstrated using a dilute, structurally polydisperse sample of single-walled carbon nanotubes de
209 lved isolation of different fractions from a polydisperse sample.
210 his new approach can be applied to arbitrary polydisperse samples and gives access to the whole diffu
211                Additional validation on more polydisperse samples forms the next step before going to
212                                              Polydisperse samples of Au nanoparticles protected with
213                          We show that highly polydisperse samples of single-walled nanotubes grown by
214 ving the PSD in the case of monodisperse and polydisperse samples showing an enhancement of up to 32%
215 ) techniques can be used to reliably examine polydisperse samples, and are sensitive to approximately
216                                          For polydisperse samples, our analysis shows that the proces
217  for several techniques to study nano-sized, polydisperse samples.
218  0.27 </= f(B) </= 0.82, we demonstrate that polydisperse SBS triblock copolymers self-assemble into
219 s previously reported, ASC's faster and less polydisperse self-association compared to ASCb points to
220 olution of uniform width stripe domains from polydisperse semicircular domains in monolayers of dipal
221 of different SWCNT chiralities, which causes polydisperse sensor responses as well as spectral conges
222                                Separation of polydisperse, single-charged analytes in the nanometer s
223                          The sample-inherent polydisperse size distribution of particles ranging up t
224 sues away from the inner endosperm and had a polydisperse size distribution, both intracellularly and
225 ty when the constituent nanoparticles have a polydisperse size distribution.
226 n general, a small syringe opening, large or polydisperse size of HMPs, and less deformable HMPs indu
227  of alphaB-crystallin is consistent with the polydisperse size of the assembly and the previously obs
228 on; however, it is limited in sensitivity to polydisperse solutions because it uses only one laser.
229 studies have used electrospray to generate a polydisperse source of highly charged microdroplets, lea
230 l heat shock proteins (sHSPs) exist as large polydisperse species in which there is constant dynamic
231 fate and calcium carbonate can be treated as polydisperse spherical particles.
232 ase of particulate nanoplastics comprised of polydisperse stacks of lamellae even under quiescent con
233 e detector responses for the blends and wide polydisperse standard arise from several factors related
234  urea denaturation, existed in an oligomeric polydispersed state, and showed a concentration-dependen
235 onjugation with the TT protein yielded large polydisperse structures (of Mw ~ 7.4 x 10(6) g.mol(-1)),
236 lecular models for some of the repertoire of polydisperse structures accessible to Abeta.
237  achieve the simultaneous fractionation of a polydisperse suspension into multiple streams.
238 ity matches reasonably well with that of the polydisperse synthetic sample containing the Au225 compo
239 hat describes the diffusion coefficient of a polydisperse system of interacting protein aggregates in
240 eezing points of monodisperse and moderately polydisperse systems.
241                Our work demonstrates that in polydispersed systems topological defects play the role
242 that make up atmospheric aggregates are more polydisperse than soot aggregates generated from a singl
243 41-58 and Delta155-165, were larger and more polydisperse than the wild-type (wt) alphaB crystallin c
244  number-average molecular weight (Mn < 3000) polydisperse thin films of poly(2-vinylpyridine) (P2VP)
245           The phytochelatins are a family of polydisperse, thiol-rich peptides that are synthesized b
246 mplished by end-on covalent conjugation of a polydisperse, uncharged polymer sample (PEG) to a monodi
247 rmination of the degree of polymerization of polydisperse, uncharged, water-soluble polymers (e.g., p
248                             In contrast, the polydisperse variant has an ordered dimeric building blo
249 ethod, on monodisperse polystyrene beads and polydisperse vesicles by comparing the results with DLS.
250 raphy for separations of samples of charged, polydisperse, water-soluble gold nanoparticles protected
251          However, commercial PEG samples are polydisperse, which hampers detailed studies on chain le
252                       TAxI-RNP complexes are polydisperse with a 14.3 nm radius.
253                                CS chains are polydisperse with respect to chain length, sulfate conte

 
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