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1 ced in all three dimensions, rather than the two-dimensional(17,18) layers of flexible woven strands
2 ectroscopy, the cis/trans isomerization in a two-dimensional (2-D) array of surface-mounted azobenzen
3 from previous approaches that have relied on two-dimensional (2-D) images to study object processing,
4 e shape enhancement (PROFILE) method and the two-dimensional (2D) (1)H-(13)C methyl correlation-based
5 rchitectures, from protein cages to extended two-dimensional (2D) and three-dimensional (3D) crystall
6 nt stem cells (hiPSCs) into NPCs to generate two-dimensional (2D) and three-dimensional (3D) culture
7 ight-induced control of cellular activity in two-dimensional (2D) and three-dimensional (3D) platform
8 containing single cells are immobilized in a two-dimensional (2D) array, with osmotically induced cha
10 ng a 15-year-long investigation on graphene, two-dimensional (2D) carbon-rich conjugated frameworks (
12 spectrometry method was utilized to measure two-dimensional (2D) chromatographic fingerprints of thr
13 f producing highly crystalline acylhydrazone two-dimensional (2D) COFs with diversified structures (s
15 itement because of their advantages over the two-dimensional (2D) counterparts in fields of plasmonic
16 tiffness can promote cancer progression, and two-dimensional (2D) culture studies indicate that incre
17 CT) and extravillous trophoblast (EVT) was a two-dimensional (2D) culture system of human trophoblast
18 ticity, we develop a formalism that maps the two-dimensional (2D) elastic problem into that of nonlin
19 at wavevector q = 0, plasmons in traditional two-dimensional (2D) electron gas disperse as [Formula:
21 emission matrix (EEM) spectrometer generates two-dimensional (2D) fluorescence matrices at a data acq
22 to show that the average geometry of natural two-dimensional (2D) fragments, from mud cracks to Earth
24 were thermally desorbed into a comprehensive two-dimensional (2D) gas chromatography (GC x GC) system
25 copy to monitor three distinct mechanisms of two-dimensional (2D) growth of zeolite A where we show t
27 is exemplified by the extensive reporting of two-dimensional (2D) ice on metals(5-11), insulating sur
28 stallization of cholesterol from an unstable two-dimensional (2D) in-membrane state proceeds via well
31 ibes the first implementation of an array of two-dimensional (2D) layered conductive metal-organic fr
32 adhesion energy is a fundamental property of two-dimensional (2D) layered materials and van der Waals
33 ure reaction and determined that the compact two-dimensional (2D) LiInP(2)Se(6) detectors resolved th
34 olybdenum disulfide (MoS(2) ) nanosheet is a two-dimensional (2D) material with high electron mobilit
42 ies in sample preparation, and an absence of two-dimensional (2D) NMR experiments, but (31)P NMR has
43 oad lines in one-dimensional NMR, (1)H-(13)C two-dimensional (2D) NMR is required for metabolite moni
45 this geometric constraint can be relaxed in two-dimensional (2D) perovskites, providing us an opport
47 wherein we use a sheet of light to bleach a two-dimensional (2D) plane and subsequently image the re
48 inates from filamentous cells that grow in a two-dimensional (2D) plane through a series of asymmetri
49 ormation between crystalline vinylene-linked two-dimensional (2D) polymers and crystalline cyclobutan
51 ed, and diffusion-weighted imaging; sagittal two-dimensional (2D) short inversion time inversion-reco
52 lica since the early 1990s, the synthesis of two-dimensional (2D) silica nanostructures remains chall
55 udes digital breast tomosynthesis (DBT) with two-dimensional (2D) synthetic mammography (SM) or stand
57 ndous advances through research conducted on two-dimensional (2D) TMD crystals, it is vital to seek n
59 Here, we show statistical reprogramming of two-dimensional (2D), noncompact self-assembled structur
60 eneric and fast achiral-chiral heart-cutting two-dimensional (2D)-LC method has been developed to det
61 n sub-diffraction (SPEED) microscopy and its two-dimensional (2D)-to-3D transformation algorithm to p
62 ical defects capture the salient features of two-dimensional active liquid crystals composed of energ
68 amic cell shapes, and ubiquitous motility on two-dimensional and in three-dimensional solid matrix.
69 ells based on their spontaneous migration in two-dimensional and three-dimensional microenvironments,
70 ork demonstrates a facile approach to employ two-dimensional aromatic compounds as modular building b
74 reast cancer cell lines growing in adherent, two-dimensional cell culture express HSATII RNA at diffe
77 exopeptidase digestions of the proteome with two-dimensional chromatographic separation and tandem-MS
83 lytical method has been developed based on a two-dimensional column switching system, which consisted
86 Berry curvature and the quantum metric in a two-dimensional continuous medium-a high-finesse planar
87 ion of myocardial scar volume, outperforms a two-dimensional convolutional neural network, and demons
89 present the successful synthesis of a novel two-dimensional corrole-based covalent organic framework
90 e demonstrated on a novel highly crystalline two-dimensional covalent organic framework (COF), COF-61
91 Layer-stacking structures are very common in two-dimensional covalent organic frameworks (2D COFs).
96 te that the interatomic coupling between two two-dimensional crystals can be determined from angle-re
100 ffect in transparent suspensions of magnetic two-dimensional crystals, which arises from a combinatio
101 movement of finger groups and in an offline two-dimensional cursor-control task, the SBP performed e
105 on the n = 2 homologue of the ferroelectric two-dimensional DJ-OIHP (AMP)(MA)Pb(2)I(7) (DJP(n=2), AM
107 is then confirmed experimentally by one- and two-dimensional dynamic nuclear polarization enhanced (2
110 pants underwent routine blood investigation, two-dimensional echocardiography, and serum BDNF estimat
111 eries of highly crystalline binary alloys of two-dimensional electrically conducting metal-organic fr
114 racting electrons in an exceptionally clean, two-dimensional electron system confined to a modulation
116 e visualization of cyclotron dynamics inside two-dimensional electron-gas materials and enables the e
117 Since the discovery of quantum beats in the two-dimensional electronic spectra of photosynthetic pig
120 e both challenges by applying ultrabroadband two-dimensional electronic spectroscopy to the principal
122 y ELISA to those independently determined by two-dimensional electrophoresis and showed that the two
123 ; and Rubia Gallega, RG) were estimated from two-dimensional electrophoresis profiles of meat samples
126 ectron-hole plasma and show the formation of two-dimensional excitons in single-layer MoS(2) on the t
127 many-body problems that are described by the two-dimensional extended Hubbard model(3,13,14) or spin
128 implified one-dimensional cell geometry, and two-dimensional finite element simulations of deforming
131 bility of interlayer and intralayer space of two-dimensional fluorinated MOFs for capturing acetylene
135 troduction in the early 1990s, comprehensive two-dimensional gas chromatography (GCxGC) has evolved f
137 rsion SPME sampling coupled to comprehensive two-dimensional gas chromatography - time-of-flight mass
138 re analyzed using derivatization followed by two-dimensional gas chromatography and time of flight ma
139 C algorithm" was developed for comprehensive two-dimensional gas chromatography coupled with time-of-
140 t-marathon were analysed using an untargeted two-dimensional gas chromatography time-of-flight mass s
141 Metabolomic analyses were performed using two-dimensional gas chromatography with time-of-flight m
142 argeted (UT) fingerprinting on comprehensive two-dimensional gas-chromatographic patterns is develope
147 urement technologies that rely on changes in two-dimensional ground cover can miss changes in forest
149 stantially inhibit in-plane ion diffusion in two-dimensional halide perovskites by incorporating rigi
150 control over ultracold fermions confined to two-dimensional harmonic potentials and prepare closed-s
151 quantum phenomena in electronically coupled two-dimensional heterostructures are central to next-gen
153 nal proliferation and differentiation, using two-dimensional human neural cell cultures and three-dim
155 Here, we report on the doping of a family of two-dimensional hybrid perovskites, in which inorganic l
156 equivalent to a well-known physics model for two-dimensional ice) and their relations to certain clas
157 erate a concise feature map in the form of a two-dimensional image by minimizing the pairwise distanc
159 a so-called core-mantle arrangement seen in two-dimensional images, led researchers to seek function
160 port a general, scalable method to exfoliate two-dimensional imine-linked COF powders by temporarily
161 ter harvesting and report here a new porous, two-dimensional imine-linked COF with a voided square gr
162 allergens, identifying 16 allergens based on two-dimensional immunoblotting with A. terreus susceptib
164 ate curve resolution analyses of the one and two-dimensional infrared spectroscopy data show that the
165 value decompositions of one-dimensional and two-dimensional infrared spectroscopy spectra indicate t
166 ocess can be monitored with conventional and two-dimensional infrared spectroscopy, vibrational circu
170 tions, into three-dimensional droplets or in two-dimensional lattices on membrane surfaces, have emer
171 1, 2 and 3 dimensional systems as well as in two-dimensional lattices with long-ranged interactions.
173 a large family of such monolayer structured two-dimensional layered materials, including semiconduct
176 the conventional horizontal alignment of the two-dimensional layers of the MXene Ti(3)C(2) by using s
177 erovskites (2DPKs) are organic and inorganic two-dimensional layers, which self-assemble in solution
180 we present a 27-plex TMT method coupled with two-dimensional liquid chromatography (LC/LC) for extens
181 e developed a generic reagent, ultratargeted two-dimensional liquid chromatography-tandem mass spectr
182 otors end-to-end in a closed chain forming a two-dimensional loop that folds under its mechanical con
184 these issues, we propose the formation of a two-dimensional magnetic monopole gas (2DMG) with a net
188 dies (GWAS) are typically visualized using a two-dimensional Manhattan plot, displaying chromosomal l
191 eptides by infrared multiphoton dissociation two-dimensional mass spectrometry (IRMPD 2DMS) is shown
192 d sulfur accumulates if the thickness of the two-dimensional material is small, whereas solid sulfur
194 However, field-effect transistors based on two-dimensional materials are still confronted with the
197 cogenides (TMDs) are one of the most studied two-dimensional materials in the last 5-10 years due to
201 vides a conceptually new approach to achieve two-dimensional materials with hierarchical organization
203 ation has been a key to provide high-quality two-dimensional materials, but despite improvements it i
204 ous electronic systems, which, combined with two-dimensional materials, could be exploited in many In
205 well as controlling the growth of sulfur on two-dimensional materials, could provide insights for th
212 nal charge density in rotationally symmetric two-dimensional metamaterials and find one-fourth and on
215 y selective photocycloaddition reaction of a two-dimensional molecular network with defect-free basal
217 ivatives have traditionally been utilized in two-dimensional monocultures, in contrast to the multi-s
219 and function for aluminosilicate zeolite MFI two-dimensional nanosheets before and after superheated
222 for beta-strand organization using multiple two-dimensional NMR and (13)C-(13)C dipolar recoupling e
227 d and their structures elucidated by one and two-dimensional nuclear magnetic resonance spectroscopy
230 In this paper, we study the physics of a two-dimensional one-component reaction-diffusion system
232 n domain III (ED3)-targeting aptamers into a two-dimensional pattern precisely matching the spatial a
233 n be used as ligands to form highly ordered, two-dimensional, peptide-based metal-organic coordinatio
234 hilation highlights the unique attributes of two-dimensional perovskites as an exciting class of opto
236 endent exciton diffusion and annihilation in two-dimensional perovskites, unraveling the key role of
238 We report a hexagonal GaN nanorod-based two-dimensional photonic crystal (PhC) slab for phosphor
239 ecently, this concept has been translated to two-dimensional photonic scenarios in connection with ho
241 ng term frozen storage were identified using two-dimensional polyacrylamide gel electrophoresis coupl
242 single-layer, surface-supported, interwoven two-dimensional polymer(16) have also been reported.
243 The induction of macro and mesopores into two-dimensional porous covalent organic frameworks (COFs
244 nce depolarization allowed us to construct a two-dimensional proximity correlation map that defines t
246 iable relative angles, through semi-ordered, two-dimensional receptor networks with reduced Voronoi e
247 mension improves the resolution power of the two-dimensional relative mass defect plot and offers the
248 ing - Poincare maps produce state-of-the-art two-dimensional representations of cell trajectories on
249 imes were analyzed using steady and unsteady two-dimensional Reynolds-Averaged Navier Stokes, leading
250 d that in the absence of lateral inhibition, two-dimensional rhizoid cell groups (clusters) form.
251 s coupling and energy level matching between two-dimensional Ruddlesden-Popper perovskite and graphen
252 ions in artificial membranes and demonstrate two-dimensional self-assembled heterostructures of graph
256 ity-mass spectrometry (IM-MS) provides rapid two-dimensional separation of ions based on their mobili
264 , with broad spectral coverage; we introduce two-dimensional spectroscopy and present results that de
267 allowed us to predict anisotropic (that is, two-dimensional) strain levels on distorted Pt(111) surf
268 o our knowledge, method integrates a Vfold2D two-dimensional structure folding model with IsRNA coars
269 ll a hot topic, including the shaping of its two-dimensional structure into nanoribbons or nanobelts.
270 st of these studies concentrated on one- and two-dimensional structures due to the lack of approaches
272 three-dimensional cell pair on a patterned (two-dimensional) substrate, a simple laboratory setup to
273 systems for their potential applications in two-dimensional superconductivity, electronics, photonic
277 at tetratic-ordered phases emerge in a dense two-dimensional system of hard kites that are rotational
278 udy them comparing the living and non-living two-dimensional systems self-organizing at the spherical
282 experiments can be performed, including the two-dimensional tandem mass scan (2D MS/MS scan) in whic
284 onnected via robust phenazine linkage into a two-dimensional tetragonal framework that is stable unde
286 histology is traditionally carried out using two-dimensional tissue sections, which allows for rapid
287 A quantum anomalous Hall (QAH) state is a two-dimensional topological insulating state that has a
291 rstanding the atomistic origin of defects in two-dimensional transition metal dichalcogenides, their
292 nsformations of surface functional groups in two-dimensional transition-metal carbides (MXenes) open
294 Here we obtain the phase diagram of the two-dimensional triangular-lattice Hubbard model by stud
296 long-range intrinsic magnetic orders in the two-dimensional van der Waals materials provide a new pl
297 e we report a general synthetic strategy for two-dimensional vdWH arrays between metallic transition-
300 TIPS-pentacene microcrystals using ultrafast two-dimensional white-light microscopy and discover a lo