コーパス検索結果 (1語後でソート)
通し番号をクリックするとPubMedの該当ページを表示します
1 fluidic stripline NMR setup showing one- and two-dimensional (1)H, (13)C and heteronuclear NMR experi
2 Additionally, the DNP sensitivity-enhanced two-dimensional (13)C/(13)C chemical shift correlations
4 physico-chemical parameters and one (1D) and two dimensional (2D) (1)H Nuclear Magnetic Resonance (NM
5 changes in trimer lattices, we can generate two dimensional (2D) phases, which are characterized by
6 on of shaped, uniform and colloidally stable two-dimensional (2D) assemblies by bottom-up methods rep
10 n pre-clinical phase are mainly based on the two-dimensional (2D) cell culture and are limited by the
11 we find that the inefficient packing of the two-dimensional (2D) chains of PIM-TMN-Trip generates a
13 dimensional (3D) root surface area (RSA) and two-dimensional (2D) crown-to-root ratio (CRR) of extrac
15 stanene are part of a monoelemental class of two-dimensional (2D) crystals termed 2D-Xenes (X = Si, G
18 the deterministic representations consisting two-dimensional (2D) discretized patterns in the real sp
19 The 1D elastic crystals are next modified to two-dimensional (2D) elastic crystals, of the type 4-bro
20 enge in mass spectrometry which is solved by two-dimensional (2D) Fourier transform ion cyclotron res
28 sional (3D) framework instead of the typical two-dimensional (2D) layers seen in other Li-rich oxides
32 with digital breast tomosynthesis (DBT) and two-dimensional (2D) mammography varies with number of y
33 Fully printed wearable electronics based on two-dimensional (2D) material heterojunction structures
34 ck phosphorus, has recently emerged as a new two-dimensional (2D) material that holds promise for ele
35 We introduce a simple criterion to identify two-dimensional (2D) materials based on the comparison b
43 Studies of urban ecosystems have relied on two-dimensional (2D) measures of greenspace structure to
45 covery, graphene has held great promise as a two-dimensional (2D) metal with massless carriers and, t
46 ctional e-textiles by integrating conductive two-dimensional (2D) metal-organic frameworks (MOFs) int
48 unique structures and multifunctionalities, two-dimensional (2D) nanomaterials have aroused increasi
52 ols with amines, and use it to prepare novel two-dimensional (2D) pi-conjugated COFs, as crystalline
54 easy method that utilizes intrinsically flat two-dimensional (2D) plasmonic nanoparticles as sensors
56 led approaches for synthesizing high-quality two-dimensional (2D) semiconductors is essential for the
59 ESI) sequence, which is capable of obtaining two-dimensional (2D) spectra from three spatial dimensio
60 that allowed programmable transformation of two-dimensional (2D) stretchable surfaces into target 3D
61 arkable properties of graphene stem from its two-dimensional (2D) structure, with a linear dispersion
62 w possible way to investigate the MTZFs in a two-dimensional (2D) system as compared to MFs in the on
63 stal growth control is crucial for tailoring two-dimensional (2D) zeolites (crystallites with thickne
64 as numerous other fascinating properties of two-dimensional (2D)-nanomaterials, 2D-based nanohybrids
65 ions display wide range of distribution on a two-dimensional(2D) plot upon structural root-mean-squar
68 eaturing formation/re-dissolution of nuclei, two-dimensional aggregation and nuclei growth.Electroche
69 ing key aspects of cell polarization in both two-dimensional and one-dimensional matrix environments.
70 inite cages or shells, essentially unbounded two-dimensional and three-dimensional arrays (i.e., crys
73 ficial magnetic honeycomb lattice provides a two-dimensional archetypal system to explore novel pheno
76 tigated frustrated arrays of dipoles forming two-dimensional artificial spin ices with different latt
78 ms or molecules that can be further used for two-dimensional atomic super-resolution optical testing
82 r-by-layer assembly, whereby atomically thin two-dimensional building blocks are vertically stacked,
84 attoseconds, and demonstrate that important two-dimensional characteristics are also present in bulk
87 Ab-OPN (0.826) was significantly higher than two-dimensional combination of PGI/II-HpAb (0.786, P < 0
90 one-dimensional ((1) H, (13) C, (31) P) and two-dimensional (COSY, NOESY, DOSY) NMR spectroscopy, ES
91 mentary particles and a baby skyrmion is its two-dimensional counterpart which can be realized as a d
94 ch to achieve inkjet-printable, water-based, two-dimensional crystal formulations, which also provide
98 abrication due to the re-mixing of different two-dimensional crystals leading to uncontrolled interfa
105 realization of a stable and atomically thick two-dimensional diamond material, named here as diamonde
106 gated through a proteomic approach involving two dimensional difference gel electrophoresis (2D-DIGE)
109 on of these ordered nanostructures being the two-dimensional diffusion of self-interstitial atoms.
110 ing-detected and interval cancers differ for two-dimensional digital mammography (DM) versus digital
111 rm to study the novel physical properties in two-dimensional Dirac materials and provide opportunitie
114 s in gated graphene structures at low doping.Two-dimensional Dirac semimetals are known to host fermi
115 Using the developed system, the combined two-dimensional distribution of the particle-size and th
117 field and spatially isolated, high mobility, two-dimensional electron and hole conducting channels.
120 tion of the integer quantum Hall effect in a two-dimensional electron system, the interrelation betwe
121 lectronic liquid-crystal phases can exist in two-dimensional electron systems (2DES) at half Landau-l
122 illations are shown to arise from three- and two-dimensional electronic bands, each with linear dispe
126 a combination of transient transmittance and two-dimensional electronic spectroscopy with 5 fs laser
129 acted from seeds and pulp juice, resolved by two dimensional electrophoresis and major spots subjecte
130 xtreme proteolysis indices were separated by two-dimensional electrophoresis and identified by tandem
132 th the SENCEFUL imaging approach, in which a two-dimensional fast low-angle shot sequence is used wit
133 ere, we present an experimental study of the two-dimensional Fermi-Hubbard model-a paradigm for stron
134 ng with fewer defects than the corresponding two-dimensional films, but until now it has been difficu
135 leolar proteins were identified by proteomic two-dimensional fluorescence difference gel electrophore
139 Here, we demonstrate that comprehensive two-dimensional gas chromatography (GC x GC) retention t
140 ization of organic mixtures by comprehensive two-dimensional gas chromatography (GCxGC) coupled to el
141 ution molecular analyses using comprehensive two-dimensional gas chromatography and gas chromatograph
142 f discovery-based software for comprehensive two-dimensional gas chromatography coupled with time-of-
143 ass spectrometry (GC-O-MS) and comprehensive two-dimensional gas chromatography coupled with time-of-
144 habasca oil sands region were analyzed using two-dimensional gas chromatography following a nontarget
145 ure based on solid-phase microextraction and two-dimensional gas chromatography-time-of-flight mass s
146 l and analysis of fractions by comprehensive two-dimensional gas-chromatography mass-spectrometry (GC
147 ioseparation step that applies comprehensive two-dimensional GC (GC x GC), prior to multiple microflu
149 analyzed by a proteomic approach based on a two-dimensional gel electrophoresis followed by liquid c
150 and mouse livers, coimmunoprecipitation and two-dimensional gel electrophoresis revealed that CAR ca
151 ferentially expressed protein spots from the two-dimensional gel electrophoresis were analyzed using
152 m a Smoluchowski-like calculation in a quasi-two-dimensional geometry, i.e., a membrane surrounded by
155 his study reports the results of a series of two-dimensional high-resolution direct numerical simulat
156 e subsequently analysed by means of one- and two-dimensional high-resolution gas chromatography coupl
157 eeman splitting to the cyclotron gap in a Ge two-dimensional hole system increases with decreasing de
158 interactions ensure the vertical stacking of two-dimensional honeycomb lattices made of strongly boun
159 dimensional hexagonally packed crystals with two-dimensional honeycomb-like mesopores in the walls of
162 cal myocardial structure is often limited to two dimensional images and of thin myocardial sections.
163 dity of transferring information gained from two-dimensional images to the third dimension, we examin
167 employ a new technique, reflection enhanced two-dimensional infrared (2D IR) spectroscopy, on a carb
168 onyl)imide (BmimNTf2) were investigated with two-dimensional infrared (2D IR) vibrational echo spectr
174 xwell's equations with a spatially dependent two dimensional inhomogeneous dielectric permittivity.
177 ving even minimal control over the growth of two-dimensional lateral heterostructures at such extreme
178 engineering, we deterministically achieve a two-dimensional lattice of quantum emitters in an atomic
181 m with uniform mesopores, vertically aligned two-dimensional layers and cobalt atoms doping demonstra
182 torial, we discuss the motivations for doing two-dimensional liquid chromatography (2D-LC) and descri
183 rk demonstrates the development of an online two-dimensional liquid chromatography (2D-LC) method whe
184 -column thermal modulation for comprehensive two-dimensional liquid chromatography is introduced.
186 of spatial correlations has been limited to two-dimensional mapping of neuronal or vascular derived
188 the inherent difficulty of doping a strictly two-dimensional material without introducing chemical di
190 materials on/off solid surfaces, indicating two-dimensional materials adhesion is a gas-like adsorpt
192 al. demonstrate control of biaxial strain in two-dimensional materials based on the growth substrate,
194 ith other remarkable properties of monolayer two-dimensional materials could lead to novel multi-func
196 tes originating from simple free surfaces of two-dimensional materials has remained elusive to date.
197 mically thin transition metal dichalcogenide two-dimensional materials is critical for their integrat
198 ice applications.The nanoscale patterning of two-dimensional materials offers the possibility of nove
199 hanical work in the attachment/detachment of two-dimensional materials on/off solid surfaces, indicat
200 ated charge carrier scattering mechanisms in two-dimensional materials such as graphene is vital for
201 ment effects lead to striking new physics in two-dimensional materials such as graphene or transition
202 ved technique is readily extendable to other two-dimensional materials where layer polarization maps
204 as interfaces opens an opportunity to create two-dimensional materials with remotely tunable properti
205 evelopment of p-wave superconductivity using two-dimensional materials with transition temperatures a
206 ure research ranging from direction control, two-dimensional materials, and the incorporation of feed
218 Its bandgap complements other widely studied two-dimensional materials: zero-gap graphene and visible
219 iO-67 can react further to reversibly form a two-dimensional metal-organic framework, hxl UiO-67.
220 stacking chemically exfoliated nanosheets of two-dimensional metallic molybdenum disulfide (MoS2) on
222 odified Langmuir-Blodgett method to organize two-dimensional molecular charge transfer crystals into
229 at in general, it is impossible to form flat two-dimensional nanocrystalline films of copper and othe
230 lably and completely stretch lambda DNA in a two-dimensional nanofluidic network comprising channels
231 assembly of the HIV capsid and protein-based two-dimensional nanomaterials and the design of anti-HIV
232 conducted so far, due to limitations of the two-dimensional nature of nanodisc membranes that offers
233 yer and multi-layer TiTe2, despite the quasi-two-dimensional nature of the material in the bulk.
235 rived dissolved organic matter with advanced two-dimensional NMR spectroscopy to open the "black box"
239 (COFs) are crystalline, permanently porous, two-dimensional or three-dimensional polymers with tunab
244 haviour at the onset of propagation, while a two-dimensional phase-field model with an added curvatur
245 analyze a deterministic protocol to generate two-dimensional photonic cluster states using a single q
246 -mode, large area, edge-emitting InGaAsP/InP two-dimensional photonic crystal (PC) Bragg laser with t
247 or, where a common hardware implemented by a two-dimensional photonic waveguide mesh realizes differe
248 ransitions with dipole moments normal to the two-dimensional plane, enabling direct detection of dark
251 ffraction, which is the first case of a scsc two-dimensional polymerization based on this cycloadditi
252 These clusters are represented in a simple two-dimensional projection that recapitulates the relati
253 tomic manipulation can be used to assemble a two-dimensional quasicrystalline structure mapped upon t
256 uracy of left ventricle (LV) analysis with a two-dimensional real-time cine true fast imaging with st
258 pare the clinical performance of synthesized two-dimensional (s2D) mammography combined with digital
259 stry of the substrate, we produce large area two-dimensional semiconducting GaS of unit cell thicknes
261 gh-mobility graphene has emerged as an ideal two-dimensional semimetal that hosts unique chiral elect
262 in the near-surface region and the extended two-dimensional sheet structure within the nanoframe tha
265 igh-resolution three-dimensional imaging and two-dimensional solid-state nuclear magnetic resonance (
269 tes that exploit photon polarization and the two-dimensional spatial-parity-symmetry of the transvers
271 cm, females: 8.2 +/- 0.6 cm, P = 0.163), and two-dimensional speckle-tracking echocardiography was us
272 -valley biexcitons appear in cross-polarized two-dimensional spectra as distinct resonances with resp
273 agent) examined with a standard T1-weighted two-dimensional spin-echo pulse sequence of the brain at
274 in a repulsively interacting Fermi gas on a two-dimensional square lattice of about 80 sites at a te
275 information processing.A logical qubit is a two-dimensional subspace of a higher dimensional system,
278 ith the three-dimensional bulk state and the two-dimensional surface state superconducting gaps obser
279 s the door to realizing Majorana modes using two-dimensional systems in conventional, low-spin-orbit-
284 rials for nanoelectronic devices, we propose two-dimensional topological insulator field-effect trans
291 igned with an aim to evaluate the ability of two-dimensional transthoracic echocardiography (2D-TTE)
296 omising for flexible electronic applications.Two-dimensional van der Waals heterostructures are of in
299 tion factor A, a potent coactivator of ACTA2 Two-dimensional Western blotting confirmed induction of
WebLSDに未収録の専門用語(用法)は "新規対訳" から投稿できます。