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1 the flow rate, fluid elasticity, and channel aspect ratio.
2 on, like a small molecule, due to their high aspect ratio.
3 psibility index or the internal jugular vein aspect ratio.
4 effective particle radius in addition to the aspect ratio.
5 fer nanodiscs, however those of intermediate aspect ratio.
6 AC(60) was understood by the molecular shape aspect ratio.
7 hich are dependent on their shape, size, and aspect ratio.
8 ntally detected, due to their extremely high aspect ratio.
9 nd upstream motility are independent of cell aspect ratio.
10 gy (nanorods, bipyramids, and decahedra) and aspect ratio.
11 yer with vertical nanoscale channels of high aspect ratio.
12 terns and relates the packing density to the aspect ratio.
13 ed from a metalloligand with an intermediate aspect ratio.
14 ars exceeding 2,000 mum in height and 100 in aspect-ratio.
15 ion of graphene nanoribbons (GNRs) with high aspect ratios.
16 nc chalcogenide nanocrystals with controlled aspect ratios.
17 in co-dispersions of rigid rods of different aspect ratios.
18 rowth of the metal nanorods and define their aspect ratios.
19 ivalent molecular packing geometry but lower aspect ratios.
20 e solutions of approximately 85 wt% at large aspect ratios.
21 g at increasing column-to-particle diameter (aspect) ratios.
22 ering more than three orders of magnitude in aspect ratio (~0.1-100).
23  and tapering tails, whereas thick channels (aspect ratio ~ 1) produce the opposite effect.
24                 Design and synthesis of high aspect ratio 2D nanosheets with surface having ultradens
25 on energies offer a new means to access high-aspect-ratio 2D polymers whose structure may be designed
26 riven self-assembly for the crafting of high aspect ratio, 2D sheets that are densely surface-decorat
27 lastic CTC selection module composed of high aspect ratio (30 mum x 150 mum) channels containing anti
28 e to the medium refractive index and nanorod aspect ratio allowing nanorods of any length to be used
29 ed phenomenon: The channel's cross-sectional aspect ratio alone can control the shape of the concentr
30 how to self assemble rectangles with a fixed aspect ratio (alpha:beta), with high probability, using
31                                         High aspect ratio, amine-modified mesoporous nanorods showed
32 u3O(10-x) are both made as tapes with a high aspect ratio and a large superconducting anisotropy.
33 e, is recommended to be designed with a high aspect ratio and aligned with the center of the actuatin
34 heir development with respect to the channel aspect ratio and Dean number.
35 ofiles of BC depend on the equivalent canyon aspect ratio and flow recirculation.
36 cells cultured in rectangles with increasing aspect ratio and in shapes with pentagonal symmetry but
37 ocedures, keeping as low as possible the bed aspect ratio and maximizing the transverse dispersion co
38 monstrated a linear relationship between the aspect ratio and the LSPR peak wavelength.
39 f the nanorods are measured, and provide the aspect ratio and the size of the nanorods.
40            Cdh2 is required for maximal cell aspect ratio and thus full epithelialization of the post
41            It is found that as the BaTiO3 NF aspect ratio and volume fraction increased the permittiv
42 phorous acid is responsible for the observed aspect ratio and yield changes.
43                                          The aspect ratio and yield of PbSe nanorods synthesized by t
44 , transition metal oxide bars with differing aspect ratios and compositions were prepared with an unp
45 als will change with different nanocapillary aspect ratios and different degrees of constriction or i
46 h micron sized pillar structures of variable aspect ratios and dimensions to induce changes in cellul
47 of noble metal nanorods with well-controlled aspect ratios and high yield, which may find wide use in
48 n surfaces with nanoscale craters of various aspect ratios and pitches, we show that the surfaces alt
49 ed polymer particles in pores with different aspect ratios and pore topography.
50  wide range of visual luminance, but with an aspect-ratio and an extent much larger than expected.
51 lattice cooling, which arises from the large aspect-ratio and low thermal conductivity of ITO-NRAs.
52 i.e., one-dimensional connectivity and large aspect ratios) and flexibility.
53 ngths greater than 3 mm-surpassing 1000 to 1 aspect ratio, and are released completely into air witho
54 ell attachment, proliferation, surface area, aspect ratio, and migration were investigated.
55 ensions of the fibrils, including thickness, aspect ratio, and pitch, were determined by scanning pro
56 changes in expression of EGF receptors, cell aspect ratio, and protrusive activity.
57 ubstrates to alter cellular geometry (shape, aspect ratio, and size) and study the nuclear mechanotra
58 hereby opening a path towards flexible, high-aspect ratio, and textile MEMS.
59 e nanocubes, to nanorods (NRs) with variable aspect ratios, and finally to long, straight nanowires (
60 : real M by N matrices, of various ranks and aspect ratios, and real symmetric positive-semidefinite
61 erate; the mature tissue is composed of high aspect ratio apatite nanocrystals organized into rods an
62 distal benzyl urea groups stabilize the high-aspect ratio aqueous supramolecular assemblies.
63                                          The aspect ratio (AR) dependence of LSPR band maxima inheren
64               Slice-shaped seeds with a high aspect ratio (AR) facilitated growth of thinner continuo
65 pulsion with fins ranging in shape from high aspect ratio (AR) wing-like fins to low AR paddle-like f
66 te E. gracilis by a key shape parameter-cell aspect ratio (AR).
67 increased with stress-field velocity (V) and aspect ratio (AR, contact area diameter/cartilage thickn
68 k silicon with fine pillar structures, whose aspect ratio are approximately 8.7 and depth are <1 mum
69                             Two keratinocyte aspect ratios are considered to represent basal and spin
70 d strategies for tailoring the microchannels aspect ratios are described.
71        The nanoparticle size and morphology (aspect ratio) are dependent on both the reaction tempera
72 cantly higher than the internal jugular vein aspect ratio (area under the curve 0.76; 95% confidence
73 h a similar interpillar distance but with an aspect ratio around unity (cylinders and diamonds).This
74 icles changed to a prolate spheroid with the aspect ratio as high as 3.5 at the laser fluence of 0.6
75 le into charged nanostructures of increasing aspect ratio as the linker length is increased.
76 plications, and these observations-that high aspect ratio as well as large molecular size have an imp
77 ons of large-area, uniform nanopatterns with aspect ratios as high as 5 for plasmonic and sensing app
78 lations of GUVs with spindle-like shapes and aspect ratios as large as 10.
79 metry; the chiral twisted state persists for aspect ratios as large as approximately 20.
80                This technique to create high-aspect-ratio (as much as 4:1) gold microstructures in co
81 dual-slot antenna had a significantly higher aspect ratio at 2 minutes (0.52 vs 0.42, P = .002).
82 antenna created ablation zones with a higher aspect ratio at 50 W for 2 minutes (0.75 vs 0.53, P = .0
83  In vivo studies showed significantly higher aspect ratios at 100 W for 5 minutes (0.63 vs 0.53, resp
84  However, the nanocomposites with the lowest aspect ratio BaTiO3 NFs achieved the maximal energy stor
85          The nanocomposites with the highest aspect ratio BaTiO3 NFs exhibited the highest energy sto
86 ny rank fraction 0 < rho < 1 (at each common aspect ratio beta).
87 ), rank fraction rho=rank(X0)/min {M,N}, and aspect ratio beta=M/N.
88 e easily identifiable across a wide range of aspect-ratios, but that higher order peaks cannot be una
89 endently rotating cylinders - consider small aspect ratio by solving the ferro-hydrodynamical equatio
90                                          The aspect ratio can also be used to control the composition
91 ng water back into the reaction, the nanorod aspect ratio can be controlled from 1.1 to 10 and the yi
92 g in nanorods and reveal that increasing the aspect ratio can increase the hot-electron generation an
93                                         High-aspect ratio carbonaceous microelectrodes have been prep
94 tteries are composed of interdigitated, high-aspect ratio cathode and anode structures.
95 eater than that of large particles in a high-aspect-ratio channel for Re less than 1.
96 ices, each equipped with 16 curvilinear high aspect ratio channels that were covalently decorated wit
97 l magnetic field gradient, resulting in high-aspect ratio channels with tapered cross sections as cha
98                                     The high aspect ratio character of these nanotubes allow for a re
99  thin, two-dimensional sheet material, whose aspect ratio, chemical resistance, flexibility, and impe
100                                              Aspect ratios closer to 1 reflected a more spherical abl
101       Cellulose nanocrystals (CNCs) are high aspect ratio colloidal rods with nanoscale dimensions, a
102 tional creation of non-centrosymmetric, high aspect ratio, colloidally stable core-shell nanoparticle
103 ly charged hydrophilic nanoparticles of high aspect ratios compared with nanorods and lower aspect-ra
104 ructures using specific combined 'size' and 'aspect' ratio criteria.
105 by focusing on scaffolds with predicted high aspect ratio crystals.
106                                   As the bed aspect ratio (D/dp) increases, the column performance te
107        The resonant modes obey the predicted aspect ratio dependence and exhibit high-quality factors
108 ch this transition occurs is governed by the aspect ratio-dependent interplay between carrier confine
109               Ablation diameter, length, and aspect ratio (diameter / length) were measured at gross
110 d porosity difference can be ascribed to the aspect ratio (diameter-to-thickness ratio) of disk-like
111 their unique periodicity, rigidity, and high aspect ratio, DNRs are efficiently internalized into cel
112 show that tuning the nanostructure shape and aspect ratio dramatically influences the surface wetting
113 ver nanoparticles that are patterned on high-aspect-ratio elastic fibers.
114 s new scheme, which uniquely integrates high aspect-ratio elastomeric micropillars and microspheres s
115                                         High aspect-ratio elastomeric micropillars play important rol
116 sion applications realize benefits of a high aspect ratio, electrically addressable and energetically
117  pores with undulating pore diameter and low-aspect ratio exhibited large dispersion of the transloca
118 rroelectric films, as well as short and high aspect ratio ferroelectric nanostructures.
119 anufacturing method for the creation of high aspect-ratio ferroelectric (PbZr0.52Ti0.48O3) nanostruct
120 tremely sensitive to the orientation of high aspect ratio filler particles.
121 owever, the synthesis and separation of high-aspect-ratio fillers is challenging, stiffness increases
122 uce uniform concentrated suspensions of high aspect ratio, flexible microfibers, and we demonstrate t
123               Unique properties such as high aspect ratio, flexible surface chemistry, and control ov
124 heir geometric parameters like size, height, aspect ratio for Au, Ag or Au0.5-Ag0.5 alloy to be used
125                                     When the aspect ratio [Formula: see text] is small, the MANOVA sp
126 l design had a constant 5 degrees taper with aspect ratios (funnel tip width to funnel depth) of 0.1
127                  Arrays with three different aspect ratios gamma = a/b = [Formula: see text], [Formul
128                 A metalloligand with a large aspect ratio gave an entropically favored tetrahedral Pd
129 ite with the largest tunnel size and highest aspect ratio grain morphology resulting in rod-like micr
130                                        Large-aspect-ratio grains are needed in polycrystalline thin-f
131 stallinity planar perovskite films with high-aspect-ratio grains over a square-inch area is demonstra
132                    Protocols to prepare high aspect ratio graphene nanoribbons from multi-walled carb
133 approach that yields gram quantities of high-aspect-ratio graphene nanoribbons, which are only ~1 nm
134 ees C) were drawn in a single step with high aspect ratios (&gt;10(4)); such nanowires can be released f
135 ansforming the structure of an array of high-aspect-ratio (HAR) micro/nanostructures into various new
136                   Cobalt nanowires with high aspect ratio have been synthesized via a solvothermal ch
137         A simple method for fabricating high-aspect-ratio, hierarchical, and dynamically tunable surf
138 standing challenge of fabricating ultra-high aspect ratio high-resolution dense nanostructures.
139 es and more accurate estimates of trajectory aspect ratios (i.e., their dimensionality), molecular di
140                           By staggering high aspect ratio illumination beams laterally and axially wi
141  adhesions changes with cell spread area and aspect ratio in pairs of MDCK cells.
142 p electrodes and optoelectronic devices with aspect ratios in excess of 100,000.
143                            Their morphology, aspect ratio, inferred ascent rate, and temperature show
144 edicted from theory, so long as the particle aspect ratio is properly taken into account.
145 justing the structural porosity, macroscopic aspect ratio (L/D), and freeze-casting conditions.
146 meters, the PEO crystallizes as single, high-aspect-ratio lamellae that resemble single crystals.
147 t of salinity into the shallow aquifer: high aspect-ratio leakage pathways and viscous coupling betwe
148                     By adjusting the nanorod aspect ratio (length to width ratio), desired absorption
149 ction of input charge density and drift tube aspect ratio (length/diameter).
150                               Thin channels (aspect ratio &lt;< 1) deliver solutes arriving with sharp f
151 s are thin (<3 mum), error tolerant, has low aspect ratio (&lt;1:1) and offer polarization-insensitive f
152  minimum features (>10 microm), much smaller aspect ratios (&lt;0.2) and thereby, can be fabricated in a
153 er mean fibril height (diameter d), DP/d, an aspect ratio measurer, were independent of the processin
154                Here we demonstrate that high-aspect-ratio, mesoporous silica rods (MSRs) injected wit
155 ly sought-after goal is the creation of high aspect-ratio metal fingers which provide an optically na
156 le rotational intergrowth to synthesize high-aspect-ratio MFI nanosheets with a thickness of 5 nanome
157                                         High-aspect ratio micro- and nano-structures have been used f
158 D is based on coating powder drugs into high-aspect-ratio, micro-coating channels (MCCs) followed by
159                             Here, using high-aspect ratio micropatterns as a model fibrillar platform
160                                         High aspect-ratio micropillars are in strong demand for micro
161 hanisms are particularly well suited to high aspect ratio mosquito wings.
162 d nanoparticle inks in both uniform and high-aspect ratio motifs with minimum widths of approximately
163 pect ratios compared with nanorods and lower aspect-ratio nanodiscs.
164 we report significant progress in ultra-high aspect ratio nanofabrication of high-resolution, dense s
165 nanostructured diamond chip with dense, high-aspect-ratio nanogratings, enhancing the surface area by
166                         The toxicity of high-aspect-ratio nanomaterials (HARNs) is often associated w
167 rices containing percolated networks of high-aspect-ratio nanometre-scale tubes or nanowires to addre
168 form for the creation of biocompatible, high-aspect ratio nanoparticles for biomedical research.
169 con (bSi) wafers with a high density of high-aspect ratio nanopillars have recently been suggested to
170  shows that the large-scale ordering of high aspect ratio nanoplatelets is easier to achieve than pre
171 at subwavelength post diameters and selected aspect ratios nanopost arrays (NAPA) exhibit ion yield r
172 he use of highly functional graphite in high-aspect-ratio nanoscale components.
173                                   These high-aspect-ratio nanosheets allow the fabrication of thin an
174 yst was deposited on both thin film and high-aspect ratio nanostructured hematite photoanodes.
175                                         High-aspect ratio nanostructures such as nanowires and nanotu
176 nic metamaterials can be tailored using high aspect ratio nanostructures that are accessible via a va
177              Native TMV forms a hollow, high aspect-ratio nanotube measuring 300x18nm with a 4nm-wide
178  nanotube (SWNT) soot and enrichment in high aspect ratio nanotubes are essential to their use in a w
179 PMS templates are employed to fabricate high-aspect-ratio nanowire grids from amorphous silicon, whic
180 omena; however, the advent of extremely high aspect-ratio 'needle' probe tips, as reported by Beard e
181 rganic subunits into covalently linked, high-aspect-ratio networks with long-range order.
182 ation in aqueous solution with an equivalent aspect ratio of (12 +/- 2).
183 rough an isolated 2-nm-wide, 2-cm-long slit (aspect ratio of 10(7)), representing a maximum intensity
184 t the growth of OTP grains with high average aspect ratio of 2.3-7.9 on a wide range of non-wetting h
185       Gold nanorods were synthesized with an aspect ratio of 3.3 to match the 785 nm excitation wavel
186                               Increasing the aspect ratio of amine-modified mesoporous SiO(2) from 1
187 tangular microchannel with a width-to-height aspect ratio of around 2.
188                            By modulating the aspect ratio of AuNRs, localized surface plasmon resonan
189 ncentrations and is strongly affected by the aspect ratio of channel width to height, both of which h
190                                          The aspect ratio of elongated spores and the tendency of som
191  to 10 K, it approaches 300 N m(-1) when the aspect ratio of graphene membranes is increased.
192          The relatively constant (CV = 7.3%) aspect ratio of newborn cells (Lb/W) in populations grow
193  radial faces, we have been able to tune the aspect ratio of populations of dipeptide assemblies.
194                          Because of the high aspect ratio of PSi nanopores, the performance of closed
195  the control of the thickness as well as the aspect ratio of silver nanoplates.
196                             However, the low aspect ratio of standard AFM probes typically limits the
197                             Despite the high aspect ratio of the analyzed sample displaying here more
198               We experimentally estimate the aspect ratio of the apex of gold coated AFM probe using
199  the system allows the size distribution and aspect ratio of the asymmetric block copolymer colloidal
200 nm; and (ii) influences the size, shape, and aspect ratio of the component nanoparticles.
201 tion of the quiescent equilibrium and on the aspect ratio of the convective domain.
202 nthetic process by controlling the geometric aspect ratio of the disk or using a postsynthetic therma
203                                          The aspect ratio of the gold nanorods was tuned to match the
204                       We found that the high aspect ratio of the immunological synapse was insufficie
205 to the alignment axis, and the effect of the aspect ratio of the interphase cell shape in defining th
206 lle concentration, reaction stoichiometry or aspect ratio of the micelle building blocks.
207 erved in both composites despite the minimal aspect ratio of the nanoparticles.
208           We discovered that the dimensional aspect ratio of the origami unit tiles and intertile con
209 which can be easily controlled by tuning the aspect ratio of the pores), providing an important guide
210 the pores increases strongly with increasing aspect ratio of the pores, and saturates to highly conce
211  spheroidal inclusions, we obtained the mean aspect ratio of the re-shaped silver nanoparticles as a
212 ished by adjusting the angle using the voxel aspect ratio of the SD-OCT followed by straightening of
213 ion rate, dependent on Atwood number and the aspect ratio of the system, for stabilising the most uns
214 an be effectively controlled by changing the aspect ratio of the voids.
215  of metallasupramolecular assemblies via the aspect ratio of their ligands.
216 d hydrodynamically compact structure with an aspect ratio of ~3).
217 d of oriented 1D silver nanowires (NWs) with aspect ratios of 10(2) -10(4) is reported.
218 ent polystyrene spheres into rod shapes with aspect ratios of 2:1 and 4:1.
219 2,000-microm(2) rectangles with length:width aspect ratios of 5:1-7:1) and a mature alignment of myof
220 free-standing silver nanorods with very high aspect ratios of more than 200 using current densities o
221  but the poor solvent compatibility and high aspect ratios of nanotubes have led to concerns about sa
222 stiffening properties of the aligned fibers, aspect ratios of the cells, and the polarization of cell
223                      The elasticity and high aspect ratios of the fibres allow deformation under capi
224                          Despite the extreme aspect ratios of the ultrathin NWs, their composition an
225 osition techniques are limited to widths and aspect-ratios of 40 mum and 0.5, respectively.
226  that highly pure 3D magnetic nanowires with aspect-ratios of ~100 can be grown using focused electro
227 rs (the conductive component) with increased aspect ratio, of all-metallic composition, or with speci
228                    The airway wall thickness aspect ratio (omega) of the allergen-challenged airway w
229 etalloligands with only marginally different aspect ratios, one gave rise to a self-sorted collection
230 ace area enhancement of highly ordered, high-aspect-ratio, open-platform, two-dimensional (2D) pillar
231 e variations of the wall effect at different aspect ratios, or a particle size-segregation effect in
232 y for four other visual judgments: perceived aspect ratio, orientation discrimination, spatial-freque
233 llows for the production of multilayer, high aspect-ratio PeT microdevices with substantially larger
234 l and two-dimensional nanofillers with large aspect ratios provide enhanced flexibility versus zero-d
235 tion we tested that decreases the extent and aspect-ratio, providing a promising solution for clinica
236 ived a phenomenological relation between the aspect ratio r of the absorbed particles and the slope a
237      It is demonstrated that the use of high aspect ratio radially elongated pillars which are 15 tim
238 tion, given that these large molecules (with aspect ratios ranging from 100:1 to 500:1) were cleared
239 triangular nanostructures, to shapes of high aspect ratio (rectangular strips), as well as into the r
240 ent bacteria were incubated together in high-aspect ratio rotating wall vessel bioreactors and examin
241 directing surface is developed based on high-aspect-ratio shape-memory polymer (SMP) pillars.
242                                   These high-aspect ratio sheet-like solids come in a wide array of c
243 oach for the synthesis of DNA decorated high aspect ratio sheets, which may find potential applicatio
244 sibility index and the internal jugular vein aspect ratio showed poor correlation (R = 0.16 and 0.21,
245 effective radial charge collection from high-aspect-ratio Si nanowires was achieved by atomic layer d
246 t hybrid nanostructures consisting of a high aspect ratio SiGe nanowire (NW) with a metallic nanoshel
247 ion etching, is used to produce uniform high aspect ratio silicon pillars.
248 fractions containing GNR subpopulations with aspect ratios, sizes, and shapes which are more narrowly
249 ires can be deposited in this way in extreme aspect ratio, small-diameter optical fiber capillary tem
250                                 Using a high aspect ratio soft lithography technique, we fabricate po
251 hat are unique to near-atomically-thin, high-aspect-ratio solids.
252  features, and a range of length-to-diameter aspect ratios spanning 3 orders of magnitude.
253  we investigate these secondary flows in low aspect ratio spiral rectangular microchannels and define
254 ts into secondary flow instabilities for low-aspect ratio, spiral microchannels, with improved flow m
255 hining processes, resulting in rigid and low aspect ratio structures.
256 lar polyhedral morphologies rather than high-aspect-ratio structures.
257 oulding technology in PDMS patterned by high-aspect-ratio SU-8 moulds.
258                                         High-aspect-ratio sub-15-nm silicon trenches are fabricated d
259                          Materials with high aspect ratio, such as carbon nanotubes and asbestos fibr
260                                    This high aspect ratio surface provides significant promise for fu
261 tial deposition of pristine, unbundled, high aspect ratio SWNTs over residual impurities, as observed
262  of surfactant encapsulated, unbundled, high aspect ratio SWNTs to be used to isolate them in the sup
263 ous enrichment in unbundled, undamaged, high aspect ratio SWNTs.
264                   We demonstrate how the low-aspect-ratio tail of the new fossil would have acted as
265              The effect was sizeable for the aspect ratio task but substantially smaller for the othe
266                Here we show how the size and aspect ratio that impart GNRs with their plasmonic prope
267 sal protrusions, traction forces, and apical aspect ratios that decreased when moving from the edge t
268 internal jugular vein height to width ratio (aspect ratio), the inferior vena cava diameter, and the
269 ver, as a mechanical consequence of the high aspect ratio, the resonant structures have multiple reso
270 as their large specific surface and the high aspect ratio, these nanonet sensors have significantly e
271 similar properties because they have smaller aspect ratios, they are rigid, and they are often too la
272                                         High aspect-ratio three-dimensional (3D) a-Si:H solar cells h
273                            We show that high-aspect-ratio titanium dioxide metasurfaces can be fabric
274  edges, and have tunable width to <10 nm and aspect ratio to >70.
275 gh strain, doubling the accessible wrinkling aspect ratio to the currently reported value.
276 d, a smooth substrate and two different high aspect ratio topographies have been produced and coated
277 s with diameters of approximately 2.5 nm and aspect ratios tunable from 5:1 to 25:1.
278 rpentine chromatographic columns with higher aspect ratio turns at higher linear velocities and small
279 ared to their counterpart columns with lower aspect ratio turns.
280 ith fivefold symmetry and surprisingly large aspect ratio up to particle radii of the order of 100 nm
281 s of the turbulence for extended layers with aspect ratios up to 64.
282 to form narrow ( 20 mum) microchannels, with aspect-ratios up to 8, on the surface of solar cells.
283 s) with tunable diameters (1.6-5.6 nm), high aspect ratios (up to 50), variable Mn doping levels (0.1
284 arrayed microarchitecture with an ultra-high aspect ratio using soft materials.
285 mitochondria shape, by using form factor and aspect ratio values, and membrane potential changes, by
286 chondrial shape change using Form Factor and Aspect Ratio values, and membrane potential heterogeneit
287 red TK6 human lymphoblastoid cells in a high aspect ratio vessel (bioreactor) for 72 h either in the
288 tors are found to increase linearly with the aspect ratio (wall length/wall thickness) of the nanofra
289                                          The aspect ratio was 120.
290                         Relative decrease in aspect ratio was observed on increasing the agitation sp
291            By deforming the droplets to high aspect ratio, we visualize in real-time propagating wave
292 en the proximity to the surface and the pore aspect ratio were included the actual initiating defect
293 aper, BaTiO3 nanofibers (NFs) with different aspect ratio were synthesized by a two-step hydrothermal
294 lized clathrochelate complexes with variable aspect ratios were used as rod-like metalloligands.
295 d-shaped or tubular nanostructures with high aspect ratios which are formed by self-assembling synthe
296 model, to self assemble rectangles (of fixed aspect ratio) with high probability.
297                        A non-fractured, high aspect ratio wrinkled surface is successfully fabricated
298   Synthesis of thin zeolite films using high-aspect-ratio zeolite nanosheets is desirable because of
299 ect (bottom-up) synthesis could produce high-aspect-ratio zeolite nanosheets, with improved yield and
300 eolite membranes were prepared by using high-aspect-ratio zeolite seeds.

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