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1 f magnitude, thus enabling the production of ultrahigh 6D-brightness beams.
2 SACs) are of great interest because of their ultrahigh activity and selectivity.
3                     The Pt(1)@PDMS-PEG shows ultrahigh activity in olefin hydrosilylation with excell
4 ab-evolved TAR-binding protein, and (iii) an ultrahigh-affinity cyclic peptide.
5                The hC4Nb8 represents a novel ultrahigh-affinity inhibitor of the classical and lectin
6 IR emitting NPS-SC4AD-NiB system exhibits an ultrahigh antenna effect (33.1) at a high donor/acceptor
7 as high-rate pseudocapacitive materials with ultrahigh areal and volumetric capacitances.
8 -free alkali-ion battery is achieved with an ultrahigh areal capacity of 2.1 mAh cm(-2) .
9                             Additionally, an ultrahigh average ZT of ~0.93 between 300 and 973 K is a
10      The improved performance is ascribed to ultrahigh biomass concentration induced by "best match s
11 canonical Monte Carlo simulations agree that ultrahigh C(2) H(2) /CO(2) selectivity is mainly from UB
12 e-assisted magnetic recording, which enables ultrahigh-capacity hard disk drives(9).
13 ed carbon nanotubes into porous networks for ultrahigh-capacity lithium anodes to achieve high-perfor
14 oherent manner, counter-intuitively enabling ultrahigh-capacity, high-efficiency, and flexible genera
15 ificantly reduced polymer residues, yielding ultrahigh carrier mobility of 500 000 cm(2) V(-1) s(-1)
16 erties such as large carrier Fermi velocity, ultrahigh carrier mobility, and high material stability.
17   In their inorganic form, aerogels can have ultrahigh catalytic site density, high surface area, and
18                       Polymer membranes with ultrahigh CO(2) permeabilities and high selectivities ar
19                        This polymer exhibits ultrahigh CO(2) permeability (>21 000 Barrer) and except
20      By contrasting our estimated model with ultrahigh coverage ExAC exome-sequencing data, we identi
21 1) at 2 A g(-1) ), good rate capability, and ultrahigh cycling stability (93.6% retention over 20 000
22 mes are critical to advanced electronics for ultrahigh densities and/or harsh conditions.
23                                    Hence, an ultrahigh-density genomic linkage map of a commercial De
24 r axis have potential for the development of ultrahigh-density memories as every single column might
25 ogenesis and tumor progression, we performed ultrahigh depth exome sequencing of 124 DNA damage repai
26 d or a clinically-unaffected parent, and use ultrahigh-depth sequencing to validate candidate mosaic
27 lectrolytic-electronic interface, leading to ultrahigh device sensitivity, high noise immunity, high
28  screening plays a critical role in handling ultrahigh dimensional data analyses when the number of f
29                              To address this ultrahigh dimensionality issue, this paper adopts a two-
30                                We observe an ultrahigh discharge and charge energy densities of 42.10
31  fabricated with the MoB additive deliver an ultrahigh discharge capacity of 947 mA h g(-1) , corresp
32 tation of the sample strength to accommodate ultrahigh dynamic range without loss of information.
33                              As a result, an ultrahigh EC strength of ~0.22 K m MV(-1) is obtained at
34 -metal-based structures, which indicates the ultrahigh efficiency of charge-spin conversion (>1) in t
35 d cellular microstructure, BHGMs can achieve ultrahigh elasticity and stability at compressive strain
36       Materials with an ultralow density and ultrahigh electromagnetic-interference (EMI)-shielding p
37                   We report dielectrics with ultrahigh energy densities designed with polymorphic nan
38 se it is the insulating discharge product of ultrahigh energy density lithium-sulfur (Li-S) batteries
39 2) Mn(0.2) O(2) (NCM(622) ) cathodes deliver ultrahigh energy density of 1500 Wh L(-1) and 483 Wh kg(
40 generation energy-storage devices due to its ultrahigh energy density.
41 lecular dynamics simulations reveal that the ultrahigh F(-) conductivity and selectivity can be ascri
42 nnels are sub-1-nanometer protein pores with ultrahigh F(-) conductivity and selectivity over other h
43          UiO-66-X channels consistently show ultrahigh F(-) conductivity up to ~10 S m(-1), and ultra
44 igh F(-) conductivity up to ~10 S m(-1), and ultrahigh F(-)/Cl(-) selectivity, from ~13 to ~240.
45 ecimens of patients with rectal cancer using ultrahigh field (16.4 T) MRI.
46                                              Ultrahigh field (27)Al{(1)H} 2D correlation NMR experime
47                  Using submillimeter fMRI at ultrahigh field (7 T) we identified fine-grained cluster
48                          Here, we review how ultrahigh field MRI markers have been correlated with hi
49                                        Using ultrahigh-field (21.14 T) NMR spectroscopy of quadrupola
50 ionally scanned 42 adults, age < 50 y, using ultrahigh-field (7 T) ultrafast (802 ms) fMRI optimized
51               Here, in two experiments using ultrahigh-field 7-Tesla (7T) functional magnetic resonan
52                            We show, by using ultrahigh-field MRI scanning, that in addition to anteri
53 ed short-range disorder in ZIF glasses using ultrahigh-field zinc-67 solid-state nuclear magnetic res
54 bly from the spectral resolution provided by ultrahigh fields, as corroborated by NMR experiments at
55         Model discrimination was similar for ultrahigh-frequency hearing loss (frequencies >9000 Hz;
56                                           An ultrahigh Hall mobility value of >20,000 cm(2) V(-1) s(-
57 ploration of macroscopic quantum dynamics in ultrahigh-impedance circuits, with potential application
58 X-ray-driven processes in complex systems at ultrahigh intensities is feasible.
59 ynamic control of structured light fields at ultrahigh intensities.
60 current density of 100 mA cm(-2) but also an ultrahigh intrinsic capacitance of 309.1 uF cm(-2) even
61                                          The ultrahigh ionic exclusion by CNMs is likely dominated by
62                                          The ultrahigh kappa in conjunction with its wide bandgap (6.
63 tal-organic framework, which demonstrates an ultrahigh lithium storage capacity of 2458 mAh g(-1) and
64                                           An ultrahigh longitudinal thermopower [Formula: see text] a
65  vacuum in FT ICR mass spectrometers with an ultrahigh magnetic field is eliminated.
66 eous high-resolution fMRI and TPM imaging at ultrahigh magnetic field.
67 hown that methyl-geoHARD will be feasible at ultrahigh magnetic fields (>1 GHz), when this technology
68 amental physics and applications in terms of ultrahigh magnetic fields.
69 ultraintense laser pulses is used to produce ultrahigh magnetic fields.
70 FT-ICR MS) provides ultrahigh resolution and ultrahigh mass accuracy measurements.
71 g the advantages of fast sample preparation, ultrahigh mass accuracy, and extensive residue cleavages
72                                 As a result, ultrahigh mass loading (0.125 g cm(-3), 2 g sulfur in a
73       The MnO(2)/CNTs-60 yarn electrode with ultrahigh mass loading delivers a high areal capacitance
74 O(2) at various deposition temperatures with ultrahigh mass loading of 11 mg/cm(2) on a MWNT sheets a
75 s can also be isotopically resolved with the ultrahigh mass resolution available in FT-ICR.
76 confirmed via LC-MS/MS on lipid extracts and ultrahigh mass resolution MALDI-MS imaging.
77 ctive electrospray ionization (EESI) and the ultrahigh mass resolution of Orbitrap for real-time, nea
78 l thin-walled (115 microm) sirolimus-eluting ultrahigh molecular weight amorphous poly-l-lactic acid-
79                     Transparent, ultradrawn, ultrahigh molecular weight polyethylene (UHMWPE)/graphen
80          Efficient ROMP of BCH-Naphs yielded ultrahigh molecular weight polymechanophores with contro
81  to nanocrystal dispersions of disentangled, ultrahigh-molecular-weight linear polyethylene.
82  catalyzes the polymerization of ethylene to ultrahigh-molecular-weight, nearly linear polyethylene (
83 ered multivalent Nb constructs that achieved ultrahigh neutralization potency (half-maximal inhibitor
84 O(15) (hex-BSCF), is reported, demonstrating ultrahigh OER activity because both the tetrahedral Co i
85                                          The ultrahigh oxygen evolution activity and strong durabilit
86                                              Ultrahigh performance 21T-FTICR-MS enabled the simultane
87 ass spectrometric (MS) techniques coupled to ultrahigh performance liquid chromatographic (UHPLC) sys
88 field scanning has been incorporated into an ultrahigh performance liquid chromatography (UHPLC) and
89  The enriched urine samples were analyzed by ultrahigh performance liquid chromatography (UHPLC) usin
90                            This work applies ultrahigh performance liquid chromatography coupled with
91 ity of this implementation with contemporary ultrahigh performance liquid chromatography is demonstra
92                                           An ultrahigh performance liquid chromatography-high resolut
93  a commercial autosampler unit coupled to an ultrahigh performance liquid chromatography-tandem mass
94 erformed a targeted metabolomics study using ultrahigh performance liquid chromatography-tandem mass
95                           Here, we performed ultrahigh performance liquid chromatography-tandem mass
96 l tissues through mass spectrometry methods (ultrahigh performance liquid chromatography-tandem mass
97 rty-nine polyphenolics were identified using ultrahigh-performance liquid chromatography (UHPLC) coup
98           The sulfopeptides were analyzed by ultrahigh-performance liquid chromatography (UHPLC) mult
99 targeted high-throughput method that employs ultrahigh-performance liquid chromatography (UHPLC) usin
100  combination of immunological techniques and ultrahigh-performance liquid chromatography (UHPLC), we
101                          (Durham, NC), using ultrahigh-performance liquid chromatography (UPLC) and h
102  performed in five simulants and analyzed by ultrahigh-performance liquid chromatography (UPLC) coupl
103 ould not be detected with a state-of-the-art ultrahigh-performance liquid chromatography column (whic
104  of over 90 unique glycosidic linkages using ultrahigh-performance liquid chromatography coupled with
105 t urine samples were analyzed for IPM3 using ultrahigh-performance liquid chromatography coupled with
106 hy and mass spectrometry methods, especially ultrahigh-performance liquid chromatography coupled with
107                           The model utilizes ultrahigh-performance liquid chromatography electrospray
108                                              Ultrahigh-performance liquid chromatography high-resolut
109 on, as determined by hydrophilic interaction-ultrahigh-performance liquid chromatography of the fluor
110                                   A targeted ultrahigh-performance liquid chromatography tandem mass
111           Nontargeted screening methods with ultrahigh-performance liquid chromatography-electrospray
112 tosan polymers into oligomeric fingerprints, ultrahigh-performance liquid chromatography-electrospray
113 (SN-38G) using stable isotope dilution (SID) ultrahigh-performance liquid chromatography-high resolut
114                     Nontargeted screening by ultrahigh-performance liquid chromatography-high-resolut
115 lenge of untargeted metabolomic profiling by ultrahigh-performance liquid chromatography-high-resolut
116 ng, and metabolite profiles were analyzed by ultrahigh-performance liquid chromatography-mass spectro
117 tect (13)C, D2-formaldehyde-modified OSCs by ultrahigh-performance liquid phase chromatography couple
118                       Subsequent analysis by ultrahigh-performance micro-liquid chromatography-triple
119 ly, we show that going from classical SFC to ultrahigh-performance SFC (UHPSFC), that is, separations
120 rate the particles based on their size, with ultrahigh-performance size-exclusion chromatography (SEC
121 in 1 h, and the analytes were measured using ultrahigh-performance supercritical fluid chromatography
122                                           An ultrahigh-performance-liquid chromatography-electrospray
123 ffer to main-stream semiconductors, by which ultrahigh performing electronic (e.g., transistors) and
124 ously generate near-perfect transparency, an ultrahigh piezoelectric coefficient d(33) (greater than
125 s rise to their defining properties, such as ultrahigh piezoelectric coefficients, high permittivity
126 e facilitates the creation of devices at the ultrahigh pixel densities (>10,000 pixels per inch) requ
127 elopment of adsorbent materials that exhibit ultrahigh porosity but maintain balance between gravimet
128            It has been hypothesized that the ultrahigh potency of the analogs is due to their ability
129                   Dielectric capacitors with ultrahigh power densities are fundamental energy storage
130 able energy density of 0.65 mWh cm(-2) at an ultrahigh power density of 164.5 mW cm(-2) , outperformi
131 onstrate that hBN-SSWC is able to support an ultrahigh power intensity (50 kW m(-2)) to desalinate hy
132 s promise new single crystal applications in ultrahigh-power transducers that are capable of producin
133                                          New ultrahigh precision, double-spike mass spectrometry stab
134 m baby foods prior to their determination by ultrahigh pressure liquid chromatography (UHPLC).
135 such as high pressure liquid chromatography, ultrahigh pressure liquid chromatography and SDS-PAGE ge
136 ad pressure regime (0.08 Pa-360 kPa), and an ultrahigh pressure resolution (18 Pa or 0.0056%) over th
137   Finally, the kinetic performance limits of ultrahigh-pressure ion chromatography applying 2.5 mum p
138 , as this is the current state-of-the-art in ultrahigh-pressure liquid chromatography (UHPLC) instrum
139 les in a Palythoa canariensis extract and an ultrahigh-pressure liquid chromatography coupled to an i
140        It was found that on a low dispersion ultrahigh-pressure liquid chromatography instrument, col
141 h-pH separation and inject the fractions for ultrahigh-pressure long capillary column low-pH RPLC sep
142                                Specifically, ultrahigh-pressure long capillary column RPLC separation
143  offline approach, we developed an online 2D ultrahigh-pressure nano-LC system for high-pH and low-pH
144                                    A compact ultrahigh-pressure nanoflow liquid chromatograph (LC) wa
145         The modulator chip allows for robust ultrahigh-pressure operation up to 65 MPa.
146 e pumping system could successfully generate ultrahigh pressures for use in capillary LC.
147                                   The use of ultrahigh pressures in combination with columns packed w
148 on, showing that oxygen packing decreases at ultrahigh pressures to accommodate the higher than sixfo
149 distribution functions of a glassy carbon at ultrahigh pressures up to 49.0 GPa by utilizing our rece
150 sitions is predicted to occur in MgSiO(3) at ultrahigh pressures, where it has implications for the m
151  as analogue materials for silicate melts at ultrahigh pressures.
152                   Based on the mechanism, an ultrahigh projected charge density of 1.85 mC m(-2) is o
153 ton channels are sub-1-nm protein pores with ultrahigh proton (H(+)) selectivity over other ions.
154     The imidazole linked-2D-polymer exhibits ultrahigh proton conductivity (3.2 x 10(-2) S cm(-1)) (a
155 (4) , the COFs (H(3) PO(4) @COFs) realize an ultrahigh proton conductivity of 1.13x10(-1) S cm(-1) ,
156 rly, the UiO-66-(NH-SAG)(2) channels exhibit ultrahigh proton selectivities, H(+)/Li(+) up to ~100, H
157                                          The ultrahigh proton selectivity in the sulfonated sub-1-nm
158 TFT circuits based on high-yield (19.9%) and ultrahigh purity (99.997%) polymer-sorted semiconducting
159 owly evolved dissipative Kerr solitons in an ultrahigh-Q microresonator.
160                        Over the past decade, ultrahigh-Q optical whispering-gallery-mode resonators h
161 capacitors based on the reduced GO showed an ultrahigh rate capability of up to 10 V s(-1) due to thi
162 anode with a long-term cycling stability and ultrahigh rate capability, significantly improving the c
163  holey-graphene/niobia (Nb2O5) composite for ultrahigh-rate energy storage at practical levels of mas
164 tion mass spectrometry (nano-DESI/HRMS), and ultrahigh resolution and mass accuracy 21T Fourier trans
165 nance mass spectrometry (FT-ICR MS) provides ultrahigh resolution and ultrahigh mass accuracy measure
166 therto unknown mass ambiguities in high- and ultrahigh resolution data, while also ranking lipid clas
167 upling microfluidic cultivation systems with ultrahigh resolution electrospray-ionization mass spectr
168              Here, we use kinetic assays and ultrahigh resolution Fourier transform ion cyclotron res
169 organic matter (DOM) in untreated water with ultrahigh resolution Fourier transform ion cyclotron res
170 ydraulic fracturing wastewater samples using ultrahigh resolution Fourier transform ion cyclotron res
171                                        Using ultrahigh resolution Fourier transform ion-cyclotron res
172 solution TIMS (resolving power of 90-220) to ultrahigh resolution FT-ICR MS (resolving power over 400
173                           This new automated ultrahigh resolution mapping system produces low noise a
174 ns of SO2 added at pressing were analyzed by ultrahigh resolution mass spectrometry (FT-ICR-MS) and e
175 ed by flow injection-electrospray ionization-ultrahigh resolution mass spectrometry (uHRMS) and based
176                                Here, we used ultrahigh resolution mass spectrometry data to evaluate
177                                       We use ultrahigh resolution mass spectrometry to elucidate mole
178 methylation of isolated fractions coupled to ultrahigh resolution mass spectrometry.
179                                              Ultrahigh resolution revealed changes not visible using
180                                   To achieve ultrahigh resolution separations over broader mobility r
181 dementias would also benefit from imaging at ultrahigh resolution.
182 lithic fiber-optic ball lens, which achieves ultrahigh-resolution (1.7 microm axial resolution in tis
183                       Together with previous ultrahigh-resolution crystal structures, these findings
184                                              Ultrahigh-resolution Fourier transform ion cyclotron res
185   To elucidate this mechanism, we utilize an ultrahigh-resolution frequency modulation-AFM for measur
186 m a newly developed instrument that combines ultrahigh-resolution IMS with cryogenic IR spectroscopy
187     Our approach to glycan analysis combines ultrahigh-resolution IMS-IMS using structures for lossle
188 technology thus enables wider mobility range ultrahigh-resolution ion mobility separations and expand
189 mass, but because of limited availability of ultrahigh-resolution mass spectrometers, most studies ca
190                                              Ultrahigh-resolution mass spectrometry (MS) and nuclear
191 ation potential of two DOM isolates by using ultrahigh-resolution mass spectrometry (UHRMS).
192 el approaches for standardized processing of ultrahigh-resolution mass spectrometry data of complex m
193  model compounds carefully selected based on ultrahigh-resolution mass spectrometry data revealed tha
194                                              Ultrahigh-resolution mass spectrometry is one of the mos
195                                              Ultrahigh-resolution mass spectrometry reveals that the
196                                              Ultrahigh-resolution mass spectrometry, as well as optic
197 s via elemental analysis and molecularly via ultrahigh-resolution mass spectrometry.
198 ands using X-ray absorption spectroscopy and ultrahigh-resolution mass spectrometry.
199 x-parallel factor analysis (EEM-PARAFAC) and ultrahigh-resolution mass spectrometry.
200    Four ionization techniques were used with ultrahigh-resolution mass spectrometry: negative and pos
201                                     Finally, ultrahigh-resolution multipass (long path length) SLIM T
202  volumetric imaging of Young's modulus using ultrahigh-resolution optical coherence elastography, and
203 e, we developed a CI interface coupled to an ultrahigh-resolution Orbitrap mass spectrometer (CI-Orbi
204 upt climate transitions, a robust system for ultrahigh-resolution sampling of glacier ice is needed.
205 n an inert gold surface is confirmed through ultrahigh-resolution scanning tunneling microscopy.
206                   We additionally report the ultrahigh-resolution structure of the HDAC6-trichostatin
207                       Using a combination of ultrahigh-resolution three-dimensional imaging and two-d
208 A new experiment named HD-HAPPY-FESTA yields ultrahigh-resolution total correlation subspectra, which
209 s of ion isotopologues and isotopomers using ultrahigh-resolution traveling wave-based Structures for
210 ass A beta-lactamase catalysis, we have used ultrahigh-resolution X-ray crystallography and the recen
211  ion cyclotron resonance (FT-ICR) MS affords ultrahigh resolving power and provides high-accuracy mas
212                              Here, we report ultrahigh resolving power ion isolation by SWIFT on a 21
213                                          The ultrahigh resolving power of FT-ICR MS combined with sSE
214                          Benefiting from the ultrahigh resolving power of FT-ICR, we isotopically res
215                                          The ultrahigh resolving power provided by Fourier transform
216 ted components can be resolved thanks to the ultrahigh resolving power, which also allows extracted i
217 dband photoresponse from 532 to 1850 nm with ultrahigh responsivity is achieved.
218 nt onset and improve outcomes in patients at ultrahigh risk for psychosis is dietary supplementation
219               In this study of 304 adults at ultrahigh risk for psychotic disorders, 153 (50.3%) rece
220               This study demonstrates ZLD of ultrahigh-salinity brines using temperature swing solven
221 oration methods for zero liquid discharge of ultrahigh-salinity brines.
222 nalysis of permeation data suggests that the ultrahigh selectivities result from substantially increa
223                                           An ultrahigh sensitive, simple and reliable Electrochemilum
224 Optical microcavity sensors are renowned for ultrahigh sensitivities due to strongly enhanced light-m
225  basis for a highly desirable combination of ultrahigh sensitivity and SLIM SUPER high-resolution IM
226  be further explored to applications require ultrahigh sensitivity detections such as earlier medical
227 l aptasensor can selectively detect ATP with ultrahigh sensitivity down to the concentration of 10 pM
228  of carrier density/mobility, and exhibit an ultrahigh sensitivity featuring minimum detection limit
229 exhibited sensitive detection of AFP with an ultrahigh sensitivity of 0.001 ng mL(-1) and good specif
230 ented to detect NSE biomarkers demonstrating ultrahigh sensitivity with limit of detection down to 1.
231  The GO-dLPG based biosensor demonstrates an ultrahigh sensitivity with limit of detection of 7ng/mL,
232  new sensing device was developed to achieve ultrahigh sensitivity, by coupling polymer micropillars
233 hich combine facile spectral tunability with ultrahigh sensitivity, for biomolecular sensing.
234 ethods reported previously and hence affords ultrahigh sensitivity.
235  can provide a viable approach toward future ultrahigh-sensitivity and broadband photonic detectors.
236                 The D(1) /D(2) -A Pdots show ultrahigh single-particle brightness, 83-fold brighter t
237 ed and demonstrated, and the 2DPT array with ultrahigh spatial resolution has been developed through
238 arthquakes in the laboratory, enabled by our ultrahigh speed full-field imaging technique.
239                                      We used ultrahigh-speed synchrotron x-ray imaging to quantify th
240 nic metal organic framework SCU-103, showing ultrahigh stability in alkaline aqueous media and great
241  significant attention due to the promise of ultrahigh storage density and long-term stability.
242  our simulations, the metal is compressed at ultrahigh strain rates along its [001] crystal axis unde
243 uper-strong ones exhibiting a combination of ultrahigh strength and significant toughness, through a
244 athway to develop engineering materials with ultrahigh strength and superior toughness at economical
245              Previous studies attributed the ultrahigh strength of the compressed glassy carbon to st
246 performance of nanolattices, including their ultrahigh strength, damage tolerance, and stiffness, are
247 mpressed glassy carbon may be the key to the ultrahigh strength.
248                                   Developing ultrahigh-strength steels that are ductile, fracture res
249 tralarge elastic strains (4-10%) and to have ultrahigh strengths approaching their theoretical limits
250                                    These "T2-ultrahigh subjects" were characterized clinically by old
251 aals heterostructures due to their intrinsic ultrahigh surface to volume ratio, making adhesion force
252 pally suppress the off-flavor development in ultrahigh temperature (UHT) treated milk, but little has
253                                          The ultrahigh thermodynamic stability of chelating S-donor l
254            Here we report the observation of ultrahigh third-order nonlinearity about 0.45 cm(2)/GW i
255 dividually using 2D arrays of electrodes and ultrahigh throughput droplet microfluidics focused on th
256 on of an amine dehydrogenase biocatalyst via ultrahigh throughput droplet screening.
257  of large numbers of compartments either for ultrahigh throughput screens or for the synthesis of fun
258 ic bacteria and operates in a continuous and ultrahigh-throughput (>1 mL/min) manner.
259  Here we present a novel approach to perform ultrahigh-throughput and chromatography-free bioanalysis
260 instrument, we successfully demonstrated the ultrahigh-throughput bioanalysis of metformin, a small p
261  whereas droplet microfluidic techniques are ultrahigh-throughput but require a custom assay for each
262 fore, the use of droplet-based platforms for ultrahigh-throughput combination drug screening and poly
263                        Here, we show that an ultrahigh-throughput droplet-based microfluidic screenin
264                                    High- and ultrahigh-throughput label-free sample analysis is requi
265                         Here, we describe an ultrahigh-throughput microfluidic chip, (LP)CTC-iChip, t
266 ethod that greatly expands the generality of ultrahigh-throughput microfluidic screening.
267                                     Although ultrahigh-throughput RNA-Sequencing has become the domin
268                                              Ultrahigh-throughput screening (uHTS) methods dramatical
269                                              Ultrahigh-throughput screening (uHTS) techniques can ide
270 ar product titer into fluorescence, allowing ultrahigh-throughput screening of millions of variants.
271   Here, we propose a reliable and convenient ultrahigh-throughput screening platform based on flow cy
272 tire set of 4096 possible combinations using ultrahigh-throughput screenings combining coupled transc
273  tens of nanometer large nanoparticles under ultrahigh vacuum (UHV) as well as high vacuum (HV) condi
274 e that 2D core-shell surfaces prepared under ultrahigh vacuum (UHV) conditions constitute excellent m
275 ee-base TPP layer on a Ag(100) surface under ultrahigh vacuum (UHV) conditions.
276 er absorbed on a rutile TiO2(110) surface in ultrahigh vacuum (UHV) is studied with spin-polarized de
277  the FAIMS stage complicates maintaining the ultrahigh vacuum (UHV) needed for Orbitrap operation.
278                                           In ultrahigh vacuum (UHV), TERS can be performed in pristin
279                              Here, combining ultrahigh vacuum catalytic experiments, X-ray photoemiss
280  in few A to 5 nm gap sizes, performed under ultrahigh vacuum conditions between a Au-coated probe fe
281                        Need of substrate and ultrahigh vacuum conditions for deposition of borophene
282 n synthesized on a noble metal surface under ultrahigh vacuum conditions via a gas-mediated surface r
283 y incompatibility of the liquid samples with ultrahigh vacuum environment of the electron optics and
284 sorbed on several noble metal surfaces in an ultrahigh vacuum environment.
285 ponents self-assembly on solid surface in an ultrahigh vacuum environment.
286                   The films are stable under ultrahigh vacuum for at least 60 h but show signs of dec
287  methane and carbon dioxide-water mixture in ultrahigh vacuum of the order of 10(-10) mbar for extend
288 in-film growth mechanisms of aluminum during ultrahigh vacuum physical vapor deposition, dense arrays
289                                              Ultrahigh vacuum tip-enhanced Raman spectroscopy (UHV-TE
290 us exposure of Cot molecules and Eu vapor in ultrahigh vacuum to an inert substrate, such as graphene
291  is thermally robust and is evaporated under ultrahigh vacuum to form thin films of intact diradicals
292 e science studies of crystalline surfaces in ultrahigh vacuum, and first-principles modeling using de
293 transform mass spectrometers operating under ultrahigh vacuum, but exceptional m/ z resolution and ac
294 n is triggered by ultraviolet irradiation in ultrahigh vacuum, requiring no aid of the graphene Moire
295 111) homoepitaxial growth and ion erosion in ultrahigh vacuum.
296                  Various substrate-supported ultrahigh-vacuum growth techniques for borophene, such a
297 ecisely controllable junction of a cryogenic ultrahigh-vacuum scanning tunnelling microscope(14-16),
298                 These findings indicate that ultrahigh vascular permeability of renal clearable nanoc
299 e surface polarity is quantified both by its ultrahigh water vapor uptake of 14.3 mmol g(-1) at low r
300 roved fracture resistance in a steel with an ultrahigh yield strength of nearly 2 gigapascals can be

 
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