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1 derived from protein hydrolysis that are not monodisperse.
2 whereas the other preparation is essentially monodisperse.
5 cA and rhodamine-MIPNANA were synthesized as monodispersed 400nm sized particles and were found to bi
7 perimental measurements were performed using monodisperse 5, 50 and 400 nm gold particles supported o
8 riments using a mutant RAIDD-DD that forms a monodisperse 5:5 complex with PIDD-DD show that the spec
11 cise size- and shape-controlled synthesis of monodisperse Al nanocrystals remains an open challenge,
13 this study we investigate the deposition of monodisperse, amine functionalized silica nanoparticles
16 ernary nanocrystal aggregates are moderately monodisperse and exhibit well-defined band gap energies
19 under magic angle spinning, we show that for monodisperse and nonspherical particle morphologies the
22 and purified in surfactant micelles and was monodisperse and stable in vitro, with sufficient struct
23 High-Env VLPs, or hVLPs, were shown to be monodisperse and to display more than a 10-fold increase
27 nsuming synthesis and preparation as stable, monodisperse, and biocompatible liposomes and polymersom
28 ar weight of the reaction products is nearly monodisperse, and can be manipulated by the feed ratio o
29 helix, which self-assembles into ultrasmall, monodisperse, anionic virus-like shells that encapsulate
30 ere we show a method to generate diverse and monodisperse anisotropic gold nanoparticle shapes with v
31 e properties of the dimer, leading to highly monodispersed aqueous metamaterials with tailored symmet
32 chain reaction is applied to produce stable, monodisperse assemblies with custom scaffold length and
33 transmission electron microscopy shows that monodisperse, atomically smooth Ag polyhedra can self-as
38 nitiated by short cylindrical seed micelles, monodisperse block comicelles of controllable length wit
39 re hexagonal-branch mechanism to form highly monodisperse branched nanoparticles, we vary the length
41 into water as stable suspensions (remaining monodispersed) by way of an interfacial oleic acid bilay
42 trahydrofuran (THF), 1 self-assembles into a monodisperse, C4-symmetric GQ-1 with small spatial intra
44 upramolecular self-assembly, which generates monodisperse cage structures with masses greater than 2
45 gomeric silsesquioxane (POSS), the smallest, monodisperse cage-shaped silica cubic nanoparticle, is e
46 udy describes a bottom-up assembly route for monodisperse carbon dots (CDs) into different sizes of C
47 2[Cd(SePh)4]: the first is a superlattice of monodisperse [Cd54Se32(SePh)48(dmf)4](4-) nanoclusters;
49 to dynamically image cellular uptake of the monodisperse CDs in MCF-7 cells and Huh-7 liver cancer c
55 ed to five sizes (10, 20, 30, 60, 100 nm) of monodispersed citrate- and polyvinylpyrrolidone-coated s
59 ecade of research, enables the production of monodisperse colloidal ZIF-8 particles with tunable dime
61 of the high-index planes, we then fabricated monodispersed concave nanocages via a material-independe
64 ogue) bioaffinity assays and provided highly monodisperse conjugates for assays that rely on counting
68 We report a size-controllable synthesis of monodisperse core/shell Ni/FePt nanoparticles (NPs) via
69 Our studies provide a robust approach to monodisperse core/shell NPs with nonprecious metal core,
70 on the inside of the DNA cage, consist of a monodisperse crosslinked polymer core with a predetermin
75 have developed a facile synthesis of highly monodisperse, cubic-shaped formamidinium lead bromide na
76 Here, we report the programmed assembly of monodisperse cylindrical block comicelle building blocks
80 ALDI-TOF approximated Mn well for the highly monodisperse (D < 1.1), low molecular weight (degree of
82 ed chemical toolbox generated highly complex monodisperse dendrimers through simplified protocols.
87 moduli [Formula: see text] of concentrated, monodisperse, disordered oil-in-water emulsions as dropl
88 aled single gamma-secretase complexes with a monodisperse distribution and in a 1:1 stoichiometry of
89 on codoping methodology for the synthesis of monodisperse, doped metal-oxide nanocrystals (NCs) that
90 s capillary devices enable the production of monodisperse double emulsion drops, which can then be us
92 now establish a protocol for the creation of monodisperse double-emulsion droplets in two steps in mi
95 he desired size and frequency of ejection of monodisperse droplets by manipulating the electrode volt
96 ges, both lytic T4-LacZ and nonlytic M13, in monodisperse droplets can also be used for rapid enumera
99 on system presented here can generate highly monodisperse droplets in the size range of 40-60 mum at
100 phototunable 3D photonic superstructure from monodisperse droplets of one-dimensional cholesteric liq
101 We present a method allowing to produce monodisperse droplets with volumes in the femtoliter ran
102 ibrating orifice aerosol generator providing monodisperse droplets, which are oxidized in a subsequen
103 mented droplet-based microfluidics, in which monodispersed droplets containing fluorescent marker are
104 ADCs with a conserved site of conjugation, a monodisperse drug loading, a lysosomal release functiona
105 c layer to satisfy multiple criteria: nearly monodisperse, easily imaged and magnetic interaction tha
106 ormula: see text] made on similar disordered monodisperse emulsions over a wide range of droplet radi
108 rly demonstrate the successful attachment of monodisperse Fe3O4 nanoparticles to graphene sheets.
110 organic-inorganic nanocomposites comprising monodisperse ferroelectric nanoparticles directly and pe
112 a metastable product characterized by short monodisperse fibres that interfere with adhesion and can
114 reversible structural transition in bilayer monodisperse foams by changing the foam liquid fraction
116 papaya fruit, are chemically stable, remain monodispersed for >6 months in buffer, and show utility
117 lyl-benzyl-capped silicon nanoparticles into monodisperse fractions within the range of 1 nm to 5 nm.
120 10(-3) M), GTDI self-assembles into a nearly monodisperse G-quadruplex structure of 16 layers, with s
121 lowing through narrow capillaries to produce monodisperse generations of droplets down to hundreds of
122 e a modular and scalable method for creating monodisperse, genetically encoded chimeras that enable b
123 hosphate-buffered saline led to unilamellar, monodisperse glycodendrimersomes (GDSs) with dimensions
124 erefore, this work presents the synthesis of monodisperse glycooligomers carrying different sugar lig
125 substrate was developed by depositing nearly monodisperse gold and silver nanoparticles on the carbon
127 ent conjugation of functionalized atomically monodisperse gold clusters with 1.5-nm metal cores to vi
131 ive, this procedure allows the production of monodisperse heterogeneous catalysts for studying a vari
132 By hydrothermal heating of milk, we produced monodispersed, highly fluorescent carbon dots with a siz
133 oisotope in clinical practice, was coated to monodispersed hollow gold nanoparticles with a diameter
134 experimentally, 21 were found to form stable monodisperse homo-oligomers in solution, and 15 (four ho
135 nerally assume that the chains are perfectly monodisperse; however, typical experimental copolymer pr
136 ld enabled the production of highly ordered, monodisperse immunogens that display DS-Cav1 at controll
137 c rings of alpha-helices that are stable and monodisperse in both their water-soluble and their trans
138 drophobic (H) or polar (P) segments that are monodisperse in length are able to self-assemble side by
139 s and the individual segments were virtually monodisperse in length, which facilitated their predicta
140 The microcapsules produced are extremely monodisperse in size and can encapsulate target molecule
141 The resulting particle is highly stable, monodisperse in size, and maximizes the therapeutic pote
143 periments demonstrated that HMGA2 and RF are monodisperse in solution, and form an equimolar complex.
144 ercially available gold nanoparticles, AuNCs monodisperse in water and are composed of a discrete num
146 hape transformations of liquid droplets with monodisperse ingredients have been reported in equilibri
147 ls for accurate site-specific conjugation of monodisperse inorganic nanoparticles to biological mater
148 cules such as proteins and nucleic acids are monodisperse just as low-molar-mass organic compounds ar
151 used to link the clusters together, forming monodisperse linear Mn Anderson oligomers, here with exa
153 lt, high throughput, high-yielding routes to monodisperse liposomes with multiple compartments have n
156 exterior of the alpha-helical bundle yields monodisperse macromolecules with programmable folding an
158 t membrane-based pathway for the assembly of monodisperse membrane clusters that is complementary to
159 ptical two-dimensional fusion assay based on monodisperse membrane-coated microspheres is introduced,
160 eded-growth methodology for the synthesis of monodisperse metal-doped plasmonic oxide heterodimer nan
161 The diblock copolymers self-assemble into monodisperse micelles of defined hydrodynamic diameters
162 gether with doxorubicin, self-assembled into monodispersed micelles [NP(BTZ-DOX)] with small particle
163 od-brain barrier (BBB) opening in vivo using monodisperse microbubbles with different phospholipid sh
164 the ability to generate two well-controlled monodisperse microdroplet streams and collide (and thus
165 three variations of a device for generating monodisperse microdroplets in two distinct size regimes
166 n single-cell encapsulation in droplets of a monodisperse microfluidic double water-in-oil-in-water e
167 put biological method to prepare spore-based monodisperse microparticles (SMMs) and then form the nan
169 branched micelles possessed structures with monodisperse middle segments and, in most cases, two bra
172 from polymer colloids with regular geometry, monodispersed morphology, well-controlled contents and s
174 s that has been validated with dendrimers as monodisperse multivalent analytes binding to lectin clus
176 ese ligands used for the direct synthesis of monodisperse nanocrystals, but nanocrystals coated with
177 of SnTe NCs with shapes tunable from highly monodisperse nanocubes, to nanorods (NRs) with variable
178 nanodiscs and protein aggregates results in monodisperse nanodisc preparations ideal for structural
179 k, we describe the wet-chemical synthesis of monodisperse nanohelices based on gadolinium oxide (Gd(2
180 individual cells for growth and analysis in monodisperse nanoliter aqueous droplets surrounded by an
186 resulting hierarchical assemblies are dense monodisperse nanoparticles composed of ca. 50 POMs that
187 e with similar resolution as SEM mixtures of monodisperse nanoparticles having partially overlapping
189 self-assemble into approximately 60 nm near-monodisperse nanoparticles that increased the systemic e
190 omplex double-stranded oligonucleotides into monodisperse nanoparticles with 15, 23, or 30 nm in diam
192 ectrometry because they provide a relatively monodisperse nanoscale lipid bilayer environment for del
193 er, it is still a major challenge to prepare monodisperse nanoscintillators with uniform size and hig
194 H as a SERS marker supported on Au deposited monodispersed nanospheres monolayers (Au-MNM) of polysty
197 y of capitalizing on judiciously synthesized monodisperse NaYF4 :Yb/Er upconversion nanoparticles (UC
199 led carbon nanotube (MWCNT) supported highly monodisperse nickel nanoparticles modified on glassy car
200 d lipoproteins bind to sharp edges to enable monodisperse NPL encapsulation with long-term stability
201 ydisperse objects shows that whereas smaller monodisperse objects are internalized in greater numbers
203 catalyst-transfer polymerization to prepare monodisperse oligo(3-hexylthiophene) using temperature t
204 prove delivery of PTX by PEG-b-PLA micelles, monodisperse oligo(l-lactic acid), o(LA)8 or o(LA)16, ha
207 lium ionic liquids, and the tails are short, monodisperse oligodimethylsiloxanes covalently attached
209 generated from sequence-defined bicomponent monodisperse oligomers containing lipid and glycolipid m
211 t reported example of a one-pot synthesis of monodisperse oligomers that requires no additional purif
212 a scaffold for directing the construction of monodisperse one-dimensional assemblies in which the fun
213 er demonstrated by the preparation of nearly monodisperse P2VP nanotubes of tunable length using a st
214 mal encapsulation and cellular uptake of the monodisperse particles and found them to have generally
215 sed to describe the nucleation and growth of monodisperse particles and next takes a closer look at t
216 electrospraying parameters in production of monodisperse particles with well-controlled shapes and h
218 uid Dynamics (CFD) studies to date have used monodisperse particles, which may not accurately reflect
219 ynthesis and characterization of a series of monodisperse PBTTT oligothiophenes (n = 1-5) and systema
220 e PAA-b-PEDOT diblock copolymer as template, monodisperse PEDOT-functionalized lead telluride (PbTe)
221 signing a series of sequence-defined, highly monodisperse peptoid diblock copolymers poly-N-decylglyc
222 to controlled polymer architectures, such as monodisperse PFS homopolymers and block copolymers.
225 P2-(PEO-HA)2, composed of a dendron with two monodisperse poly(ethylene oxide) (PEO) branches termina
227 e, one-step, bottom-up approach to fabricate monodisperse polymer (polyvinylpyrrolidone)-encapsulated
229 the effectiveness of our method, an array of monodisperse polymers (PLA(x)-ran-DME(1-x))n bearing var
231 tography analyses indicated the formation of monodisperse polymers with controlled comonomer sequence
232 technology has allowed for the production of monodisperse polymers with specifically defined sequence
235 ed by conventional protein chromatography as monodisperse polypeptides of exact length and sequence.
237 We fabricate large area 2-D close-packed monodisperse polystyrene (PS) particle monolayers at air
238 djustment (FTLA) and an iterative method, on monodisperse polystyrene beads and polydisperse vesicles
239 explained using conical pores and nominally monodisperse polystyrene particles 200-800 nm in diamete
242 NaCl, talcum powder, cooking emissions, and monodispersed polystyrene latex spheres under controlled
244 This strategy for the rational design of monodisperse polyvalent molecules may not only be broadl
246 nm) material that combines precisely defined monodisperse pores of ~9 A with a high pore density of 3
249 ed from smaller precursor particles and that monodisperse precursors are required for formation of ve
253 y, a facile method for the synthesis of size-monodisperse Pt, Pt3 Sn, and PtSn intermetallic nanopart
258 In the presence of a nonadsorbing polymer, monodisperse rod-like particles assemble into colloidal
259 AXS minimized data artifacts caused by a non-monodispersed sample, allowing structural analysis of Pr
261 ionalization strategy for the preparation of monodispersed selenium nanoparticles (SeNPs) functionali
262 ncing methodology to read codes encrypted in monodisperse sequence-coded oligo(triazole amide)s.
263 ew synthetic strategy for the preparation of monodisperse, sequence-defined glycooligomers or so-call
264 work shows a proof of concept of the use of monodisperse Si and C nanocomposite spheres toward pract
265 corrections, we observe how the presence of monodispersed silica filler particles in a methacrylate
266 k proposes the use of multimodal mixtures of monodispersed silica nanoparticles (SiO2-NPs) standards
268 -flow capillary device is used to synthesize monodisperse silk fibroin micro- and submicron-spheres w
270 Here, we report the CO oxidation activity of monodisperse single Pt atoms supported on an inert subst
271 (REVs), which provide an ideal EV model with monodisperse size distribution and high EV concentration
273 scattering shows that these particles have a monodisperse size distribution with an average diameter
276 reveal that the growth and shape-focusing of monodisperse SnTe nanocubes likely involves interparticl
279 ts made in the production and the packing of monodisperse spherical particles for nanoflow high-press
280 be modulated by tuning the potential between monodisperse, spherical colloidal silica particles using
281 We present a novel approach giving access to monodisperse square SnS nanoplatelets, whose dimensions
282 lf-assembling amphiphiles capable of forming monodisperse, stable, and multifunctional unilamellar an
283 Smectic ordering in aqueous solutions of monodisperse stiff double-stranded DNA fragments is know
284 nspired templating method to generate highly monodispersed sub-100-nm unilamellar vesicles, where lip
286 classical light scattering measurements from monodisperse suspensions is examined from both the Rayle
287 Here we report a methodology to synthesize monodisperse synthetic macromolecules by self-interrupte
290 ralizable synthetic route toward phase-pure, monodisperse transition-metal-substituted ceria nanopart
297 ry technique able to generate such series of monodisperse water-in-oil droplets (with a frequency of
298 energy of two ordered structures for bilayer monodisperse wet foams with arbitrary liquid fraction.
299 eport a plasmonic nanocrystal that is highly monodisperse, with unprecedentedly small size variabilit
300 tering analysis showed that the samples were monodispersed, with an unchanged size when suspended in