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1 d metal sheets followed by chemical etching, free-standing 2D metal (e.g., Ag, Au, Fe, Cu, and Ni) na
2                  To date, the preparation of free-standing 2D nanomaterials has been largely limited
3 coupled photonic crystal slab (essentially a free-standing 2D photonic crystal) with a strong 2D band
4 position (CVD) served as the scaffold of the free-standing 3D electrode.
5 cting surfaces-transform these patterns into free-standing, 3D, noncylindrically symmetrical microstr
6 alized methodology to prepare other types of free-standing ABO(4) nanorods and their corresponding na
7  three flavin-dependent tailoring enzymes, a free-standing acyl carrier protein and two hypothetical
8                          The presence of two free-standing acyltransferase proteins classifies the oo
9 ine misactivation problem was solved through free-standing AlaXps, which appeared contemporaneously w
10 ters throughout the United States, including free-standing alcoholism treatment programs, university
11  stress-strain response of several nanoscale free-standing aluminum and gold films subjected to sever
12 gical system, the availability of an active, free-standing analogue of the H-cluster may enable us to
13        An effective integrated design with a free standing and carbon-free architecture of spinel MnC
14  of cellular microtubules, to create stable, free standing and conductive sulfur-doped carbon nanodot
15                  Acyl carrier proteins, both free-standing and as embedded 80-100 residue domains, co
16                                          The free-standing and flexible Pt-NP/TiO2-PAN nanofibrous we
17                                              Free-standing and flexible sandwich-like MXene/carbon na
18                                              Free-standing and flexible WS2 /WO2.9 /C hybrid membrane
19 cs on multiple contact surfaces with several free-standing and lightweight electrification designs.
20 od was established to quantify the amount of free-standing and protruding multiwalled carbon nanotube
21 ble particle fraction, and quantification of free-standing and protruding MWCNTs by measuring the con
22 ke peptoids into highly stable, crystalline, free-standing and self-repairing membrane-mimetic 2D nan
23                                              Free standing, atomically thin transition metal dichalco
24  through a single microcavity patterned on a free-standing Au film, strongly coupled to one of the mo
25 use this exquisite control to produce nearly free-standing Au72Ge28 drops suspended by an atomic-scal
26 etic-energy harvesting in a centimeter-sized free-standing (BEDT-TTF)C60 charge-transfer single cryst
27  have the same properties as those formed in free-standing bilayer lipid membranes.
28  bilayers, its behavior is more similar to a free-standing bilayer.
29 ly utilized model membrane system, providing free-standing bilayers unaffected by support-induced art
30 s, also known as the Portobello mushroom, as free-standing, binder-free, and current collector-free L
31                                   Large area free-standing boron doped diamond grown using microwave
32 m to the vibriobactin NRPS VibH, a naturally free-standing C domain.
33                                              Free-standing cantilevers, which directly translate spec
34                        On a molecular scale, free-standing capsules with an internal volume sufficien
35                                   We created free-standing carbon molecular sieve membranes that tran
36  characterization of graphene oxide paper, a free-standing carbon-based membrane material made by flo
37                                              Free-standing carbon-coated Si nanofiber binderless elec
38 ng liquid crystal removed to create a porous free-standing cast, which retains the chiral three-dimen
39  precipitate and decompose on the surface of free-standing catalyst nanorods.
40                                              Free-standing CD/linalool-IC-NFs facilitate maximum load
41 g a large national database incorporating 37 free-standing children's hospitals in the United States.
42             Retrospective cohort study of 43 free-standing children's hospitals within the Pediatric
43     Generally, decomposition temperatures of free-standing clusters are found to increase with decrea
44 ed assembly of colloidal silica spheres into free-standing colloidal film by using the liquid/liquid
45  the Fermi levels and charging potentials of free-standing colloidal n-type ZnO nanocrystals possessi
46 nd controlling free carrier densities within free-standing colloidal semiconductor nanocrystals.
47 erature magnetic response to charge state in free-standing colloidal ZnO nanocrystals doped with Mn(2
48  is a novel amide synthase that represents a free-standing condensation (C) domain.
49 ical shifts related to liana evolution vs 13 free-standing congeners.
50          After TEOS evaporation, we obtain a free-standing connected photonic crystal film of hemisph
51                                            A free-standing continuous precursor film of carbonated ca
52 gms for training, including consideration of free-standing critical care residencies and multidiscipl
53 as high as 0.1 cm(2)/V s was measured on the free-standing crystal.
54 nt of the intrinsic piezoelectricity in such free-standing crystals is free from substrate effects su
55 ordered binary nanoparticle superlattices as free-standing crystals, with up to a few hundred microme
56 crowire closely resemble that of an isolated free-standing cylinder (current proportional, variant el
57                  The characterization of the free-standing diamond waveguides reveals excellent trans
58 atic phase to stabilize a condensed array of free-standing disclination lines without the aid of topo
59 CP) as subunit fragments to evaluate Cy as a free-standing domain.
60  domain both in AlaRS and in many homologous free-standing editing proteins.
61 rochemical examination demonstrates that the free-standing electrode without carbon support gives the
62                The fullerenes are the first "free-standing" elemental hollow cages identified by spec
63                    This interdependence of a free-standing endonuclease gene and a group I intron, wh
64 isms, as is the case in intronless homing of free-standing endonuclease genes [3, 4], or by disruptio
65  This shared feature between an intronic and free-standing endonuclease is unprecedented.
66 ociated with worse survival than dialysis in free-standing facilities not reprocessing dialyzers or i
67    In this paper, we successfully synthesize free-standing Fe16N2 foils with a coercivity of up to 19
68                                              Free standing films of such high temperature composite e
69                                          The free-standing films are structurally robust, highly hydr
70  a scalable self-assembly approach to making free-standing films from amyloid protein fibrils.
71                                        Thin, free-standing films of Nafion gel and Nafion that were s
72 metal catalysts and superior to that of most free-standing films reported to date, they are directly
73                                           In free-standing films this wrinkling behavior induces nega
74 ing layers on the top and bottom surfaces of free-standing films with a thickness of ~35 nm.
75 ) sheets can readily stack to form flexible, free-standing films with lamellar microstructure.
76 Csomes, peptosomes), or as planar membranes (free-standing films, solid-supported membranes, membrane
77 t various composition weight ratios to yield free-standing films.
78  internal reflections from Ti3C2Tx flakes in free-standing films.
79                                              Free-standing flexible films, constructed from two-dimen
80                     Here, by incorporating a free-standing, flexible aluminium membrane into a lumped
81  Herein, we demonstrate the preparation of a free-standing, flexible nitrogen and phosphorus co-doped
82           The 3D macroporous MXene films are free-standing, flexible, and highly conductive due to go
83                               Experiments on free-standing fluid drops are extremely challenging.
84 on removal of the CO(2), these gels produced free-standing foams with cells with an average diameter
85 own to influence the ability of SWHs to form free-standing, foldable films in blends with either micr
86  thin films are grown without any support in free-standing form and can be transferred onto any desir
87 to precisely assemble NPs into well-defined, free-standing frames using polymer single crystals (PSCs
88 hase reaction dynamics of a single, as-grown free-standing gallium arsenide nanowire encapped with a
89  is paid to the worm phase, which forms soft free-standing gels at 20 degrees C due to multiple inter
90 e developing macronucleus; some even contain free-standing genes.
91  the other is from widely distributed AlaXps-free-standing, genome-encoded editing proteins that clea
92 em of serine mistranslation is so acute that free-standing, genome-encoded fragments of the editing d
93 t studies of a 1D hole gas system based on a free-standing germanium/silicon (Ge/Si) core/shell nanow
94 rown and ex-situ hydrogen intercalated quasi-free standing graphene on 4H-SiC(0001) grown by chemical
95 omic-scale observations of the morphology of free-standing graphene and explore the role of microstru
96 a test system-a gold nanocluster adsorbed on free-standing graphene clamped between two temperatures
97                                              Free-standing graphene is inherently crumpled in the out
98 dition, we demonstrate the lateral growth of free-standing graphene over micron-sized pre-fabricated
99 flexible electrochemical biosensors based on free-standing graphene paper carrying binary nanocomposi
100 plications ever since the first isolation of free-standing graphene sheets in year 2004.
101 ed to explain the thermodynamic stability of free-standing graphene sheets.
102 relationship between the observed domains in free-standing GUV bilayers and those in supported bilaye
103        Spontaneous oscillations exhibited by free-standing hair bundles from the Bullfrog sacculus su
104                   Under in vitro conditions, free-standing hair bundles of the bullfrog (Rana catesbe
105                                           In free-standing hair bundles, depolarizations positive to
106                                              Free-standing, high-capacity Li2 S electrodes with capac
107                     We describe here a novel free-standing homing endonuclease from cyanobacteriophag
108   The LAGLIDADG homing endonucleases include free-standing homodimers, pseudosymmetric monomers, and
109 en solved, the answer turning out to involve free-standing homologs of intron-encoded homing endonucl
110 philic block copolymers, resulting in unique free-standing hybrid hydrogels of good mechanical streng
111 sically cross-linked and mechanically robust free-standing hydrogels comprising unique thermotropic l
112         The optical absorption properties of free-standing InAs nanomembranes of thicknesses ranging
113 sion electron microscopy (TEM) revealed that free-standing individual CNTs and agglomerates were emit
114 a benchmark for surface analysis to provide 'free-standing' information about supported nanomaterials
115 wire structures, which potentially can yield free-standing injection nanolasers.
116                 To prepare a transistor, the free-standing ion gel is simply laid over a semiconducto
117  study, low energy helium ion irradiation on free-standing iron thin films were performed at 573 K.
118 ngle experiment, we introduce a microfluidic free-standing kinetic polyacrylamide gel electrophoresis
119 by colloidal particles raised a challenge of free-standing knots.
120          Here we demonstrate the creation of free-standing knotted and linked disclination loops in t
121 ts showed that these physically cross-linked free-standing LC ferrogels exhibit good mechanical stren
122 ct solvated PEO and PAA blocks, leading to a free-standing LC magnetic hydrogel (LC ferrogel).
123 t-effective, and reproducible method to form free-standing lipid bilayer membranes in microdevices ma
124        The device features a microfabricated free-standing liquid core waveguide (LCW) capillary dete
125                  This microsprayer employs a free-standing liquid junction formed via continuous deli
126 nte Carlo simulations were carried out for a free-standing liquid slab of squalane surrounded by a he
127   Here we report a practicable production of free-standing liquid water at room temperature with weak
128 on has been observed in two-dimensional (2D) free-standing liquid-crystal films by in situ electron-d
129  other substrates, or floated out to produce free-standing macroscopic fabrics.
130 cites and measures the resonant frequency of free-standing magnetoelastic (ME) biosensors that may no
131 Using such a nickelate as the electrolyte in free-standing membrane geometry, we demonstrate a low-te
132 These Pt nanowires can be easily cast into a free-standing membrane, which exhibits excellent electro
133 ive exchange of uncharged compounds across a free-standing membrane.
134 ansfer BNSLs also allows the construction of free-standing membranes and other complex architectures
135 - or multi-ordered nanostructures as well as free-standing membranes are extracted from specific exam
136 ight nature of SWNT composites, the prepared free-standing membranes can serve as components for a va
137  scattering and can be used to fold detached free-standing membranes into tubes by exposure to electr
138 hed and multilayered pore architectures, and free-standing membranes.
139 oms, Au(n)(-) (n = 16-18); to our knowledge, free-standing metal hollow cages have not been previousl
140 esent periodic nanohole arrays fabricated in free-standing metal-coated nitride films as a platform f
141 rk shows that achieving superconductivity in free-standing, metal decorated monolayer graphene is con
142               The electrode is composed of a free-standing metallic nanotrough network and is produce
143 Here, we describe the process of fabricating free-standing micro-patterned PEC films containing array
144                         We report the use of free-standing microcantilever beams, which have been use
145    We describe a novel platform featuring 3D free-standing microelectrodes presenting passive upstrea
146 compressive behavior of disordered colloidal free-standing micropillars composed of a bidisperse mixt
147  delaminated from their substrates to create free-standing MMMs that are mechanically stable and plia
148      VbsS, a nonribosomal peptide synthetase free-standing module, then activates N(5)-((R)-3-hydroxy
149 roperties and intrinsic breaking strength of free-standing monolayer graphene membranes by nanoindent
150                                The resulting free-standing monolayer membranes extend over hundreds o
151 he static and dynamic fracture properties of free-standing monolithic nanoporous gold as a function e
152  thin films (planar and nonplanar supports), free-standing monoliths, nanomesh materials, inverse opa
153  We herein describe the scalable assembly of free-standing MoS2 -graphene composite films consisting
154 upon inhalation) and approximately 40 ppm as free-standing MWCNTs in the worst-case scenario.
155        These are the first experiments where free-standing nano-objects were bombarded with kiloelect
156                    Large permeability of the free-standing nanomembrane to Ru(NH3)63+, O2, or 1,1'-fe
157                                          The free-standing nanopaper electrode delivers an outstandin
158                                              Free-standing nanoparticle superlattices (suspended high
159 he first DNA-based route towards monolayered free-standing nanoparticle superlattices.
160 e significantly higher than that of a single free-standing nanoribbon.
161 ontrolled growth of solution-processable and free-standing nanosheets via peptide assembly in two dim
162 c phonon polarization branches in individual free-standing nanostructures is lacking.
163 us measurements from the same cell made with free-standing nanowire and patch-clamp probes show that
164 ly method for constructing thermally stable, free-standing nanowire membranes that exhibit controlled
165 is challenge using macroporous, flexible and free-standing nanowire nanoelectronic scaffolds (nanoES)
166 rom cells by independent manipulation of two free-standing nanowire probes.
167  the large dielectric contrast between these free-standing nanowires and surrounding environment, as
168           It is essential to put individual, free-standing nanowires onto insulating substrates and i
169   The nondestructive preparation of as-grown free-standing nanowires without supporting films allows
170 zenes with vertical orientation and that are free-standing on gold surfaces.
171 inteins, archaeal and group I introns and as free standing open reading frames (ORFs); HNH endonuclea
172 A2 and Cr.psbA4, respectively) contain large free-standing open reading frames (ORFs).
173 s effort in the synthesis approaches to grow free standing or hierarchical nanomaterials such as nano
174 igh-aspect-ratio silicon nanocolumns, either free-standing or substrate-attached, with a hydrogel lay
175  only 15 nm thick, pnc-Si membranes that are free-standing over 40,000 microm2 can support a full atm
176  0.25 cm(2), and featuring the ability to be free-standing over holes of 10 mum(2).
177 d amino-functionalized graphene 'crust', the free-standing paper electrode (S mass loading: 3.6 mg cm
178                                              Free-standing paper-like or foil-like materials are an i
179 structures are sufficiently robust to create free standing papers, complex microtextured films, 3D sh
180      Analysis of fusion is restricted to the free-standing part of the GUV-membrane exhibiting low cu
181 han 80 participating US hospitals, including free-standing pediatric facilities, children's hospitals
182 2) - silicon dioxide (SiO2) one-dimensional, free-standing photonic-crystal cavities capable of enhan
183 eversibly form soft (G' approximately 10 Pa) free-standing physical gels after 10 min at 55 degrees C
184 orm entanglements lead to the formation of a free-standing physical hydrogel at 21 degrees C.
185 ent template-directed assembly approach to a free-standing planar sheet of sp(2) carbons.
186 ic of mechanical metamaterials, we fabricate free-standing plates up to 2 cm in size out of aluminium
187                                              Free-standing platform-independent Java-based ProteinVol
188                                          The free-standing platinum and platinum-nickel alloy nanowir
189                          It reveals that the free-standing platinum nanowires form in the solid state
190                  The process is able to grow free-standing point-to-point electrical connections usin
191             A microfluidic card comprised of free-standing polyacrylamide gel (fsPAG) separation lane
192                             A photopatterned free-standing polyacrylamide gel array comprised of 8 mm
193    In optimizing the riboswitch EMSAs on the free-standing polyacrylamide gel array, three design con
194 it-to-unit variation across the large-format free-standing polyacrylamide gel array.
195                                          The free-standing polyacrylamide gel EMSAs yielded reliable
196 ersion, mitigating evaporation from the open free-standing polyacrylamide gel structures during elect
197 ontrolled interfacial polymerization to form free-standing polyamide nanofilms less than 10 nanometer
198                                            A free-standing polymer electrolyte called an ion gel is e
199              These protein ribbons represent free-standing polymer films with a thickness of about 50
200 rticles and Ag nanowires and demonstrated on free-standing, polymer embedded, Si microwire solar cell
201 re demonstrated by the in situ EM testing of free-standing polysilicon films, metallic nanowires, and
202                                 We fabricate free standing porous multiwalled carbon nanotube (MWCNT)
203 imitation in a general manner by fabricating free-standing probes in which a kinked silicon nanowire
204                                  A number of free-standing programs have been developed in order to h
205                                              Free-standing quantum rods, 60, 120, or 150 A in diamete
206 esign with historical controls at a 264-bed, free-standing, quaternary care academic children's hospi
207 f the silica with hydrofluoric acid yields a free-standing replica of the internal and external nativ
208  measured with standard instruments like the free-standing rod for height, weighing balance for body
209 ocessed TART transcript or the product of a "free-standing" RT gene.
210                                              Free-standing serum-albumin mats can transport protons o
211 tigated typically in the form of coatings or free-standing sheets.
212 a two-step drawing process to fabricate long free-standing silica wires with diameters down to 50 nm
213                                              Free-standing silicene, a silicon analogue of graphene,
214 ous silver substrate is used to mass produce free-standing silver nanorods with very high aspect rati
215 perimental evidence of piezoelectricity in a free-standing single layer of molybdenum disulphide (MoS
216 ddition, high carrier mobility comparable to free-standing single-crystal counterparts is achieved by
217 ple hydrothermal protocol yields anisotropic free-standing single-crystalline VO(2) nanostructures wi
218 ges of mesoscopic dipole closure patterns in free-standing, single-crystal lamellae of BaTiO(3).
219              Here we confirm the presence of free-standing, single-layer graphene with directly inter
220 proposed algorithm has been developed into a free standing software application (GADA, Genome Alterat
221 associated with increased mortality included free-standing status (P = 0.009) and decreasing frequenc
222                                              Free-standing, stimuli-responsive polyelectrolyte multil
223 netics of electron transport provided by the free-standing structure and the high electro-catalytic a
224      This process generates centimeter-scale free-standing structures composed of paper supporting re
225  contact with a support surface or extend as free-standing structures through solution, tethered at t
226 hieved through orientational manipulation of free-standing super-paramagnetic thin-film microplates u
227                                        Here, free-standing supercapacitor fabrics that can store high
228 -based microsupercapacitors and flexible and free-standing supercapacitors is presented.
229 on-Crick base-pairing, we obtained discrete, free-standing superlattice sheets in which both structur
230 sing step that may enable the integration of free-standing superlattices into solid-state nanodevices
231                                The growth of free-standing surfactant-templated films of inorganic ox
232                                          The free-standing SWNT/polyelectrolyte membranes delaminated
233 ronchiolitis presenting to the ED of 2 urban free-standing tertiary children's hospitals.
234 raphene) building units into two-dimensional free-standing thick and thin films has paved the way for
235 acyl-CoA dehydrogenase and an unconventional free-standing thioesterase.
236  ranging from 0.5-mm sheet down to 10-microm free-standing titanium foils.
237 e fabrication of large area, thin asymmetric free-standing two-dimensional (2-D) photonic crystals.
238    Assembly of noble metal nanocrystals into free-standing two-dimensional (2D) nanostructures with a
239 The chemical stability of graphene and other free-standing two-dimensional crystals means that they c
240 l of telephone vs. video interpretation at a free-standing, university-affiliated pediatric emergency
241                 The nanomechanical device, a free-standing waveguide, is driven by the optical force
242                          Here we show that a free-standing web of 1/2-strength twist disclination lin
243       One- to 2-nm-thick, single-crystalline free-standing ZnO nanosheets with sizes up to tens of mi

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