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1  to be integrated within a single atomically thin layer.
2 tical absorption by an analyte confined in a thin layer.
3  best material for ATR-FT-IR spectroscopy of thin layers.
4 h is segmented into a user-defined number of thin layers.
5 .g. for the production of lanthanide nitride thin layers.
6 he ConfoScan 4 limits its ability to resolve thin layers.
7 t flying insects create "white" in extremely thin layers.
8 sess the significance of back diffusion from thin layers.
9 of complex structures consisting of multiple thin layers.
10                                            A thin layer (0.5-1.0 mum thick) of randomly arranged, una
11 el pore surface was sputter deposited with a thin layer (230 nm) of hematite.
12 s type of junction is only possible in super-thin-layered 2D materials, and exhibits similar characte
13 RNA by a single hydration shell, occupying a thin layer 3-5 A from the RNA.
14               The captured hCG can disrupt a thin layer (~6 mum) of LC covered on the surface.
15 urements and modeling predictions imply that thin-layer activated carbon placement on sediment is eff
16  incorporated into a commercially available, thin-layer, amperometric flow cell operated at a potenti
17 by bulk polymerization and also as a 1-2 mum thin layer anchored on a microporous poly(ether sulfone)
18 ular bioreactor (HRTB) is a combination of a thin layer and a biodisc reactor with an interior divide
19 ference procedures based on high performance thin layer and gas chromatography.
20                                 Voltammetric thin layer ( approximately 200 nm) ionophore-based polym
21 n concentrated in preparing plasma polymeric thin layers at atmospheric pressure grown on Quartz Crys
22 nd theory is otherwise excellent in terms of thin layer behavior and Nernstian shift of the peaks wit
23  influence on the peak potentials as long as thin layer behavior is observed, further confirming the
24 bifunctional catalyst composed of atomically thin layer-by-layer mesoporous Co3 O4 /nitrogen-doped re
25                            The efficiency of thin-layer capping in reducing sediment-to-water fluxes
26    A large-scale field experiment on in situ thin-layer capping was carried out in the polychlorinate
27 carried out in a nanometer-sized cylindrical thin layer cell (TLC) formed by etching the surface of a
28 voltammetry (CV) and amperometry at a custom thin-layer cell (TLC) detector.
29      The liquid membrane serves as the first thin-layer cell for ion-transfer stripping voltammetry t
30 hus, the device combines the best aspects of thin-layer cells and standard potentiometry.
31 s to: (a) develop a simple, high performance thin layer chromatographic (HPTLC) method combined with
32 ssing strategy for image analysis of saffron thin layer chromatographic (TLC) patterns was introduced
33                                              Thin layer chromatographic methods for quantitative dete
34                                   Concurrent thin-layer chromatographic analysis of nucleoside tripho
35   Lipids were identified by high performance thin layer chromatography (HP-TLC) and tandem mass spect
36                           A high performance thin layer chromatography (HPTLC) method was developed f
37 ingolipids were analyzed by high-performance thin layer chromatography (HPTLC), gas chromatography (G
38 macrocarpon) extracts using high performance thin layer chromatography (HPTLC)-densitometry is presen
39                  In all cases, reverse-phase thin layer chromatography (RP-TLC) coupled with phosphor
40                                      Initial thin layer chromatography (TLC) analysis indicated that
41 s between endogenous levels of polyamines by thin layer chromatography (TLC) and gas chromatography (
42                                              Thin layer chromatography (TLC) and phytochemical analys
43 material and were efficiently substituted by thin layer chromatography (TLC) grade silica.
44                      Analysis of saponins by thin layer chromatography (TLC) is reported.
45 ional assay for measuring DGAT activity is a thin layer chromatography (TLC) method, which is not ame
46 olerae, the causative agent of cholera, to a thin layer chromatography (TLC) plate containing mouse i
47  as well as in the solid state, sprayed onto thin layer chromatography (TLC) plates (alox, silica gel
48                                  Interfacing thin layer chromatography (TLC) with ambient mass spectr
49                                              Thin layer chromatography (TLC), Fourier transform infra
50 gh-performance liquid chromatography (HPLC), thin layer chromatography (TLC), mass spectrometry (MS),
51  soft drinks using C18 SPE and identified by thin layer chromatography (TLC), this method was used to
52  enables relative quantification by indirect thin layer chromatography (TLC)-MALDI-time-of-flight (TO
53                              Two-dimensional thin layer chromatography analyses of lipid extracts fro
54 ntly increased LPCAT activity as assessed by thin layer chromatography analysis with substrate prefer
55 antitation methods such as end labeling with thin layer chromatography and radiolabeling by glycosyla
56                  This biological analogue of thin layer chromatography consists of arrays of asymmetr
57   These layers were used for two-dimensional thin layer chromatography of peptides.
58                                              Thin layer chromatography of the nucleotide sugars in th
59 I-HIS and PCG with PVA hydrogel films and on thin layer chromatography plates demonstrated the practi
60 h the treatment of wettable high-performance thin layer chromatography plates, post-plate development
61 sing an Objet Eden 260VS 3D printer, polymer thin layer chromatography platforms were directly fabric
62 iatal DAT phosphopeptides by two-dimensional thin layer chromatography revealed basal and PKC-stimula
63  analysed by RPLC-GC, avoiding the laborious thin layer chromatography step used in the Official Euro
64 benzylguanine derivative in conjunction with thin layer chromatography to eliminate the use of radioa
65 s of Cx50 phosphorylation by two-dimensional thin layer chromatography tryptic phosphopeptide profile
66 ecovered by organic extraction, displayed by thin layer chromatography, and quantified by liquid scin
67 esolution cation-exchange chromatography and thin layer chromatography, we demonstrate that neither l
68 h triacylglycerol (TAG) levels determined by thin layer chromatography.
69 mass spectrometry, infrared spectrometry and thin layer chromatography.
70 fatty acids and triacylglycerols (TAG) using thin layer chromatography.
71 ter-wettable reversed phase high-performance thin-layer chromatography (HPTLC RP18 W) plates, with de
72     The procedure comprises high-performance thin-layer chromatography (HPTLC) coupled with six bacte
73 samples were analyzed using high-performance thin-layer chromatography (HPTLC) in direct combination
74                             High-performance thin-layer chromatography (HPTLC) is an advantageous ana
75  hydrocarbons, from TLC and high-performance thin-layer chromatography (HPTLC) plates in MS and MS(2)
76 ger-containing products via high-performance thin-layer chromatography (HPTLC-UV/Vis/FLD-bioassay).
77 r mobile phases were also applied on instant thin-layer chromatography (ITLC) silica gel plates.
78 rile filtration and quality control (instant thin-layer chromatography (iTLC), HPLC and pH), the radi
79 ppropriate method for the direct coupling of thin-layer chromatography (TLC) and mass spectrometry (M
80                  The protocol describes both thin-layer chromatography (TLC) and microtiter plate ass
81 surface enhanced Raman scattering (SERS) and thin-layer chromatography (TLC) is presented that employ
82 ith phospholipase C, (3) subsequent multiple thin-layer chromatography (TLC) overlay detection of ind
83 hromatography [LC] gas chromatography [GC]), thin-layer chromatography (TLC), high-performance liquid
84 re the first separation of metal clusters by thin-layer chromatography (TLC), which is simple yet sur
85 ng of (68)Ga as well as the development of a thin-layer chromatography (TLC)-based quality control sy
86                           Direct sampling by thin-layer chromatography (TLC)-ESI-MS provides a powerf
87 le, rapid, and inexpensive and is similar to thin-layer chromatography (TLC; for solution-phase chemi
88 ensional double-development high-performance thin-layer chromatography (UDDD-HPTLC) method was develo
89 rformed on polyacrylonitrile nanofiber ultra-thin-layer chromatography (UTLC) plates in 1-2 min using
90                                              Thin-layer chromatography and gas chromatography-mass sp
91       It was analyzed after 5 min by instant thin-layer chromatography and high-performance liquid ch
92                                              Thin-layer chromatography and HPAEC-PAD revealed glucose
93                                              Thin-layer chromatography and HPLC analyses showed high
94 eport for the first time the coupling of the thin-layer chromatography and IMS.
95 eling efficiency was determined with instant thin-layer chromatography and magnetic separation.
96                                        Using thin-layer chromatography and mass spectrometry, we firs
97                                              Thin-layer chromatography and mass spectroscopy assays d
98 ized by colony morphology, lipid profile via thin-layer chromatography and matrix-assisted laser deso
99 tions as the test system for the coupling of thin-layer chromatography and SERS (TLC-SERS), which has
100                                              Thin-layer chromatography experiments revealed an enrich
101                      GM1 was quantified with thin-layer chromatography for total cellular GM1 and flo
102                                    The CAMAG thin-layer chromatography mass spectrometer (TLC-MS) int
103                                              Thin-layer chromatography was performed on 89I LA produc
104 thesis that the coupling of high-performance thin-layer chromatography with the yeast estrogen screen
105 tern blot, immunofluorescent staining, radio-thin-layer chromatography, a malachite green assay, and
106 analyzed by flow cytometry, high-performance thin-layer chromatography, enzymatic degradation, and MA
107  SMase activity was assessed by quantitative thin-layer chromatography, high-performance liquid chrom
108                                        Using thin-layer chromatography, high-pressure liquid chromato
109 al methods or physico-chemical methods (e.g. thin-layer chromatography, HPLC, LC-MS/MS).
110                                              Thin-layer chromatography, mass spectrometry, and flow c
111  used to study the expression of FAAH, and a thin-layer chromatography-based approach was used to mea
112  compounds was performed by high-performance thin-layer chromatography-electrospray ionization mass s
113 ated from the interfering compounds by micro-thin-layer chromatography.
114 sess each tracer metabolism by reverse-phase thin-layer chromatography.
115  of enantioenriched secondary alcohols using thin-layer chromatography.
116 nuclear nuclear magnetic resonance and radio thin-layer chromatography.
117 hromatography, mild alkaline hydrolysis, and thin-layer chromatography.
118 xidized, as shown by ultraviolet spectra and thin-layer chromatography.
119 alyzed the lipid composition of the SC using thin-layer chromatography.
120 ct from excess ATP by organic extraction and thin-layer chromatography.
121 , and radiolabeling was monitored by instant thin-layer chromatography.
122 tative determination of the fast reaction by thin-layer chromatography.
123 new tracers was determined by reversed-phase thin-layer chromatography.
124  was identified by (1)H NMR spectroscopy and thin-layer chromatography.
125 ing by confining fluorophore excitation to a thin layer close to the cell/substrate boundary.
126  by time-resolved spectroelectrochemistry in thin-layer conditions.
127 lysis of nanoliter-scale sample volumes in a thin-layer configuration.
128 tacking prevents their exfoliation on to few thin layered CONs from crystalline porous polymers.
129                                              Thin layers containing metal nanostructures ("metasurfac
130 aracterization, and properties of atomically thin layers, containing B, C, and N, as well as vertical
131                                            A thin layer control (no mass transport limitation of the
132 ict experimental behavior under diffusion or thin-layer control.
133        Ion-selective membranes operated in a thin layer coulometric detection mode have previously be
134 ement in lowering the low detection limit of thin layer coulometric sensors based on liquid ion-selec
135 catalyzed reduction of nitrate to nitrite by thin-layer coulometry followed by spectroscopic measurem
136                                              Thin-layer cyclic voltammetry allows us to obtain separa
137 pples, we combined the diffusion equilibrium thin layer (DET) gel technique with a computational reac
138 mposed by 14 sensing elements of tin dioxide thin layers (doped with Cr and In, and undoped) deposite
139                                              Thin layer drying characteristics and physicochemical pr
140                    The Page and the Two-term thin-layer drying models were suitable to describe the c
141 We report on the design and performance of a thin-layer electrochemical cell optimized for use with o
142 tial coulometry in an indium tin oxide (ITO) thin-layer electrochemical cell.
143                                            A thin-layer electrochemical flow cell coupled to capillar
144   This work reports the online coupling of a thin-layer electrochemical flow cell with liquid sample
145 chemical sensing in an optically transparent thin layer electrode (OTTLE) cell was used for detecting
146  were explored with an optically transparent thin layer electrode.
147 e electrode chip in an optically transparent thin-layer electrode (OTTLE), the absorption based spect
148  coupling of a selective calcium pump with a thin layer element can give rise to rapid and complete s
149 tion was chosen for the interrogation of the thin layer, employing a double pulse technique with 120
150 ata identify dTL as an important variable in thin-layer experiments with electrochemical reactions an
151             A microfluidic custom-fabricated thin layer flat cell allows one to electrochemically red
152                                In this novel thin layer flow-cell screen-printed electrodes, the work
153 35-electron species within the confines of a thin-layer FTIR spectro-electrochemistry cell provides e
154 readout at zero current) placed opposite the thin layer gap.
155 ecision is expected by better control of the thin layer geometry by microfabrication.
156 ) and poly(ethyleneglycol-styrene) (ppST-EG) thin-layers have been grown on QCM electrodes.
157 omolecules are often organized as functional thin layers in interfacial architectures, the most promi
158 dification of ZnO with a cost-effective PEIE thin layer increases the efficiency of the inverted cell
159                     As shown in recent work, thin layer ion-selective multi-ionophore membranes can b
160 lize and predict experimental conditions for thin-layer ionophore-based films with cation-exchange ca
161 of ion-transfer stripping voltammetry with a thin-layer liquid membrane against traditional ion-selec
162      The mass transfer of perchlorate in the thin-layer liquid membrane and aqueous sample as well as
163 r drying, these gel spots formed uniform and thin layers <10 nm in height.
164                                            A thin layer (<100 nm-thickness) of photo carriers is indu
165  optimization of the electrochemical cell, a thin layer made of cellulose paper (75-mum thickness), a
166                                Moreover, the thin layer method resulted in lower temperature enhancem
167 arison to the conventional dried-droplet and thin-layer methods, respectively.
168  synthesis of pure boron fullerenes and atom-thin layers, motivates an exploration of possible one-di
169       Electron accumulation occurs in a very thin layer near the film surface, which becomes highly c
170  throughout, but treadmilling connected to a thin layer near the supporting wall.
171        SS surface was modified with a stable thin layer of 3-aminopropyltriethoxysilane (APTES), and
172                                            A thin layer of a biocompatible nanostructured polypyrrole
173 illimeter-scale electrodes are coated with a thin layer of a composite containing M13 virus particles
174 fests itself as variation of anisotropy of a thin layer of a conductive ferromagnet on a dielectric s
175             Actin and myosin assemble into a thin layer of a highly dynamic network underneath the me
176 sts, made by placing either a monolayer or a thin layer of a noble metal on relatively cheap core-met
177 ace of a high-Q silica microresonator with a thin layer of a noble metal.
178 comprises an array of microwells molded in a thin layer of a polyacrylamide gel (PAG).
179            The contractile actin cortex is a thin layer of actin, myosin, and actin-binding proteins
180 ng of Ag is stronger than that of Au, only a thin layer of Ag is required to greatly enhance the scat
181  we show that in newborn wild-type pigs, the thin layer of airway surface liquid (ASL) rapidly kills
182 eas the surface of the core is coated with a thin layer of alumina (Fe3O4@Al2O3 MNPs).
183  with gold nanostructures, postcoated with a thin layer of amorphous silicon-carbon alloy (a-Si0.8C0.
184 electrode (600 mum diameter) passivated by a thin layer of amorphous TiO2, where the current steps oc
185 was prepared from a material consisting of a thin layer of boron arsenide on a boron substrate.
186                              Specifically, a thin layer of C60-N reduced the effective work function
187  the inner wall of a quartz nanopipet with a thin layer of carbon yields a nanopore with tunable surf
188 is remarkable; it differentiates from a very thin layer of cells into a complex tissue comprising smo
189                                          The thin layer of cells that lines the interior of blood ves
190 table bubble domain (BD) texture torons in a thin layer of cholesteric liquid crystal (CLC), frustrat
191 ructure of the chip is modified to contain a thin layer of Co-Au alloy instead of successive layers o
192 poly(dimethylsiloxane) chamber and coating a thin layer of collagen IV on top of the electrode surfac
193 te the ANE contamination of SSE and insert a thin layer of Cu to separate the heavy metal (HM) from t
194 nt mechanisms enable lasing of only a 100-nm thin layer of diluted solution of organic molecules with
195                                            A thin layer of double-stranded DNA on a gold surface can
196 onic fibroblasts, and then sandwiched with a thin layer of ECM gel (Matrigel).
197                    A 3D graphene cage with a thin layer of electrodeposited nickel phosphosulfide for
198                                            A thin layer of electrolyte protruding from the tip of the
199                                            A thin layer of enamel-like material remained over the den
200              The basement membrane (BM) is a thin layer of extracellular matrix (ECM) beneath nearly
201 acellular trehalose were embedded in a solid thin layer of extracellular trehalose after spin-drying.
202 although it is not necessarily true that the thin layer of Fe oxide is a known Fe oxide.
203 rdered mesoporous (3DOm) carbon by growing a thin layer of FeO(x) using atomic layer deposition (ALD)
204 aintained on the upper membrane surface in a thin layer of fluid while media is replenished from the
205 eria can swim across moist surfaces within a thin layer of fluid, a means for surface colonization kn
206 ough the thalamic reticular nucleus (TRN), a thin layer of GABAergic cells adjacent to the thalamus,
207                Here, we show that applying a thin layer of glycerine emollient containing nanoparticl
208                          The glycocalyx is a thin layer of glycolipids, glycoproteins, and proteoglyc
209                                            A thin layer of gold is plated onto polycarbonate track-et
210                                            A thin layer of graphene is precisely deposited on the sur
211                          Using an atomically-thin layer of graphene on germanium, after two simple pr
212 y at room temperature, whereas an atomically thin layer of h-BN is a dielectric with a wide bandgap o
213 s medium in question is extended by adding a thin layer of homogeneous porous medium to its inlet.
214 f butane, followed by electrodeposition of a thin layer of hydrous iridium oxide.
215 d optical transparency, slides coated with a thin layer of indium tin oxide (ITO) are the standard su
216   However, the cotE gerE spores did retain a thin layer of insoluble coat material that was most easi
217                                    Because a thin layer of J-aggregates attenuates the same amount of
218 istors at the interface between SrTiO3 and a thin layer of lanthanum aluminate, LaAlO3.
219 in is able to influence the orientation of a thin layer of LC supported on the surface, as is evident
220 e enhanced biomagnification in plankton to a thin layer of marine snow widely observed in stratified
221 The FP sensor was fabricated by depositing a thin layer of metal and a layer of gas-sensitive polymer
222 ss of the 5-HIAA to the electrode surface, a thin layer of Nafion, a cation exchange polymer, has bee
223 d pillars of biodegradable elastomers with a thin layer of oxidized dextran significantly increased t
224 e report that Ag nanoparticles coated with a thin layer of Pd atoms can significantly enhance the pro
225 o demonstrate the continuous production of a thin layer of peptidoglycan around the developing spore
226 nt, the wing primordium is subdivided into a thin layer of peripodial epithelium (PE) and an apposing
227 ces are engineered interfaces that contain a thin layer of plasmonic or dielectric nanostructures cap
228 The sensitive layer was created by casting a thin layer of poly (vinyl chloride) (PVC)/nano-MIP compo
229 e to the use of: (i) bilayers covered with a thin layer of poly(ethylene glycol) (PEG) to control bil
230 plifying the VOC signatures by enrichment, a thin layer of poly(ethylene-co-propylene) was coated ont
231 lymer substrates to induce the gelation of a thin layer of polymer solution.
232  using the Stober process were coated with a thin layer of polystyrene.
233 sional (2D) pillar arrays when coated with a thin layer of porous silicon oxide (PSO).
234 meric poly(dimethylsiloxane) embedded with a thin layer of quasi-amorphous silica nanoparticles.
235 ytical protocol and two reference samples: a thin layer of Rhodamine B and double-sided adhesive tape
236                                            A thin layer of silica coating provides high colloidal sta
237  by showing its reactivity toward CN(-) on a thin layer of silica gel as well as on Whatman No.
238  pores and then stabilized by coating with a thin layer of silica.
239 Here, we show internal recalibration using a thin layer of silver (Ag) sputter-coated onto functional
240 nsitivity was enhanced by depositing 130.5nm thin layer of SiO2 nanostructures with particle size les
241 rt the development of a cathode containing a thin layer of small GAC particles coating carbon cloth a
242      Roots were shallowly distributed in the thin layer of soil that thaws annually, and were often f
243 ration, ranging from about 0.1-4 THz, from a thin layer of split-ring resonators with few tens of nan
244                           Patients applied a thin layer of the assigned cream twice daily to the area
245 netic Fe3O4 nanoparticles were coated with a thin layer of the SiO2 to obtain a negatively charged su
246                                            A thin layer of this in situ-created sol-gel hybrid materi
247  that the oocyte is a sphere surrounded by a thin layer of unstirred fluid, the extracellular unconve
248 resolved diffraction of amyloid fibrils in a thin layer of vitrified water at cryogenic temperatures,
249                                 Biofilms are thin layers of bacteria embedded within a slime matrix t
250 , termed EVA samplers, consist of micrometer-thin layers of ethylene vinyl acetate (EVA) coated onto
251 al measurements of magnetization dynamics of thin layers of Fe, Ni and Co driven by picosecond durati
252 ic currents generated with visible light for thin layers of functionalized polyoxotitanate nanocrysta
253                                   Atomically thin layers of group 6 transition metal dichalcogenides
254 nd the greatest analytical response, whereas thin layers of large CNT had the lowest capacitance and
255                             Fragmentation of thin layers of materials is mediated by a network of cra
256 high-throughput benchtop method that enables thin layers of metal to be shaped with nanoscale precisi
257 of surfactant-silicate between two identical thin layers of oils on a substrate.
258                                              Thin layers of oligomers with thickness between 7 and 9
259                                              Thin layers of phytoplankton are important hotspots of e
260 otactic trapping, can be responsible for the thin layers of phytoplankton commonly observed in the oc
261 tive silicon nanopillars are overcoated with thin layers of porous silicon oxide to develop an analyt
262 x, functional parts by repeatedly depositing thin layers of powder particles atop of each other whils
263 A) is employed to unravel molecular order in thin layers of the semiconducting polymer poly[N,N'-bis(
264 doped In2O3 nanoparticle (nanoITO) cores and thin layers of TiO2 deposited by atomic layer deposition
265 tential route to valleytronics in atomically thin layers of transition metal dichalcogenides, MX2 (M
266 ht emitters have been observed in atomically thin layers of transition metal dichalcogenides.
267                                            A thin-layer of clean sediment (0.5 cm) did not reduce the
268 carbon electrode (GCE) was fabricated with a thin-layer of CMO NPs by conducting coating binders for
269                Through the use of a combined thin-layer optical/electrochemical cell, the irreversibl
270                                            A thin layer opto-electrochemical cell is designed, facili
271                        In conjunction with a thin layer or islands of Ni oxide electrocatalysts, Si p
272 ng (using [(32)P]orthophosphate) followed by thin-layer or high-performance liquid chromatography (TL
273                                              Thin-layer perfect absorbers with periodic hole arrays a
274                                              Thin-layer polonium (Po) sources for alpha spectrometry
275 ition between diffusional mass transport and thin-layer regime is described with a parameter (alpha),
276                                            A thin-layer regime is established at the working electrod
277                                     Once the thin-layer regime is fulfilled (alpha = 1), the membrane
278 ium flux is released into a microliter scale thin layer reservoir, and the resulting ion perturbation
279 onate is demonstrated by alkalinization of a thin layer sample ( approximately 100 mum), which is ele
280                                 The use of a thin layer sample (5.8 muL) confined between a tubular p
281 ctrochemical plating of the halides from the thin layer sample onto a silver element as silver chlori
282 ion with known concentrations of EDTA in the thin layer sample was performed.
283 pplied potential, halide ions present in the thin-layer sample (X(-)) are electrodeposited on the wor
284               We demonstrate here the use of thin-layer samples controlled by cyclic voltammetry to a
285                        A transparent backing thin layer silica gel chromatographic plate impregnated
286 were used as representative redox probes for thin layer spectroelectrochemistry using the CNT film OT
287 an optically transparent electrode (OTE) for thin layer spectroelectrochemistry.
288  electrochemical impedance spectroscopy, and thin layer spectroelectrochemistry.
289 try, potential step chronoabsorptometry, and thin-layer spectroelectrochemistry is reported.
290 ents, peptidoglycan (PG) was visualized as a thin layer that divided the periplasmic space into zones
291 ate magnetization switching of ferromagnetic thin layers that is induced solely by adsorption of chir
292 t of TMDCs, methods for preparing atomically thin layers, their electronic and optical properties, an
293 sted Pd/NCNT catalyst on the WE at different thin-layer thicknesses by cyclic voltammetry.
294            This chemical perturbation in the thin layer thus acts as a titration agent that is precis
295             Our results demonstrate use of a thin layer transition metal oxide as a potential way for
296 a microcrystalline boron-doped diamond (BDD) thin layer using a femtosecond laser.
297                Advantageously, the resultant thin-layer voltammogram shows no diffusional effect, whi
298 y the peak current and peak potential of the thin-layer voltammogram, but also the symmetry of the pe
299 ate prey accumulating in fronts, eddies, and thin layers, where DMS is also produced.
300                By localizing absorption in a thin layer within a transparent, structurally colored mu

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