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1 pid, highly sensitive, specific and low-cost capacitive affinity biosensor is presented here for labe
6 hypothesized that MTs also possess intrinsic capacitive and inductive properties, leading to transist
10 ort the development of a simple and powerful capacitive aptasensor for the detection and estimation o
11 uring in vitro experiments, when using three capacitive architectures: stripped, interdigitated and c
17 ociated with charge transfer resistance) and capacitive (associated with faradaic density of states)
21 EP), we are able to develop an ACEK enhanced capacitive bioaffinity sensing method to realize simple,
25 s work, we have developed a whole-cell based capacitive biosensor (WCB) to determine the biological t
26 ure possible applications of this MIPs-based capacitive biosensor for environmental and forensic anal
27 label-free and reagent-free peptide mimotope capacitive biosensor has been developed for cancer drug
32 ted on a DMF platform with an interdigitated capacitive biosensor to detect different concentrations
33 s paper presents a label-free affinity-based capacitive biosensor using interdigitated electrodes.
35 lective and sensitive microcontact imprinted capacitive biosensor was developed for the detection of
38 implementing electromagnetic microcoils and capacitive biosensors on a CMOS (complementary metal oxi
43 nstrated to remove select contributions from capacitive characteristics changes of the electrode both
44 subnanometre pores without compromising the capacitive characteristics, improving their importance f
46 sorption and desorption of carbon dioxide by capacitive charge and discharge of electrically conducti
47 that the platinum-based electrodes possess a capacitive charge carrying mechanism suitable for stimul
49 O(2) (B) exhibits impressively high level of capacitive charge storage, e.g., ~53% at 0.5 mV s(-1) ,
50 rates a light emitting diode (LED) through a capacitive charge/discharge cycle, which is directly cor
51 ), which have the net effect of reducing the capacitive charging and decreasing the time required to
54 control the type of charge injection, i.e., capacitive charging or ion intercalation, via the choice
56 -metallic conductivity transition, quantized capacitive charging, and anisotropic conductivity charac
59 asures of aorto-femoral pulse wave velocity, capacitive compliance (C1), and oscillatory compliance (
60 fast charge-transfer kinetics and increased capacitive contribution in hydrogen-treated 3D graphene.
61 existence of induced charging currents, the capacitive contribution to the total current is differen
62 polar resistive switching, with a concurrent capacitive contribution, is governed by an ultrathin (<3
65 plementation of oscillator and bidirectional capacitive coupling allow small footprint area and low o
68 igned stretchable antennas in which parallel capacitive coupling circuits yield several independent,
69 ge operation via an enhanced gate-to-channel capacitive coupling is unable to deliver high-performanc
72 ssDNA whose potential is determined by both capacitive coupling with a primary, addressable gate ele
73 electromagnetic fields, direct current, and capacitive coupling) increased the odds of a successful
75 d the relative role of its two components, a capacitive current (Ic) and a resistive current (Iion),
76 particularly important when the ratio of the capacitive current and the total current is close to uni
80 posed method allowed us to separate the real capacitive current even in the situations where the conv
82 C potential is applied to the sample and the capacitive current generated at the tip is recorded as a
83 n to the total current is different from the capacitive current measured in the absence of electroact
84 ochemical properties such as high faradic-to-capacitive current ratios, high current density and elec
85 relaxation, thus leading to an asymmetrical capacitive current that briefly depolarized the cell.
86 e photothermally induces a cell-depolarizing capacitive current, and predicts that delivering a given
90 that NDC is minimized as it acts to increase capacitive currents and decrease the solvent window.
93 nates from the coupling between faradaic and capacitive currents in the presence of uncompensated res
95 n signals are absent, and instead only small capacitive currents or currents attributed to redox chem
97 lop a method that separates the faradaic and capacitive currents, combining simulation and experiment
98 nalysis (i.e., widest solvent window, lowest capacitive currents, stable and reproducible current res
99 DC signature in the solvent window and lower capacitive currents, this is not a practical procedure f
101 odes are being investigated for use in mixed capacitive deionization (CDI) and battery electrode deio
104 port the use of ultramicroporous carbon as a capacitive deionization (CDI) electrode for selectively
112 silicon templates can enable salt removal in capacitive deionization (CDI) ranging from 0.36% by mass
118 , a high salt removal rate in flow-electrode capacitive deionization (FCDI) can be achieved theoretic
120 s of water desalination using flow-electrode capacitive deionization (FCDI) is described in this stud
122 inuous flow ED and constant-current membrane capacitive deionization (MCDI) to systematically evaluat
123 r splitting regimes) and the two in membrane capacitive deionization (ohmic and water splitting regim
126 Biofouling commonly occurs on carbonaceous capacitive deionization electrodes in the process of tre
128 he performance of graphene-based material in capacitive deionization is lower than the expectation of
129 coated electrodes were evaluated in a hybrid capacitive deionization system to understand the relatio
130 ween porous electrodes, either bare (CDI, or capacitive deionization), coated with ionic exchange mem
131 proving their importance for energy storage, capacitive deionization, and electrochemical heat harves
132 ocess (reverse osmosis, electrodialysis, and capacitive deionization, respectively) in salinity gradi
134 me monitoring, illustrates the selective and capacitive detection of Staphylococcus epidermidis in sy
138 at molecular redox films are electrochemical capacitive devices possessing specific field effect in w
139 hermore, these transistors with double-layer capacitive dielectric can mimic the synaptic behavior of
140 to-electric storage element can operate with capacitive displacement charge and potentially reach 1-1
141 sensitivity and specificity of a label-free capacitive DNA detection system using immobilized pyrrol
143 The accumulation of Cu(+) ions via an ionic capacitive effect at the Schottky junction under the dir
146 es of living organisms, which comes from the capacitive effects generated by the cell membrane struct
148 ne (Fe-AAPyr); (ii) the use of an additional capacitive electrode (additional electrode, AdE) which i
149 ode and the low impedances of the additional capacitive electrode and the MFC anode permitted to achi
154 g the charge recovery of each electrode, the capacitive electrode was able to recover 52.9% more char
155 n of charging and 20 min of discharging, the capacitive electrode was able to store a total of 22,831
157 ic pumping scheme can be implemented through capacitive electrodes surrounding the device that allows
158 rformed with trypsin-imprinted (trypsin-MIP) capacitive electrodes using standard trypsin solutions i
159 -the-art for future transparent, conductive, capacitive electrodes, and translate into technologicall
161 AM) dendrimer and carbon nanotubes (CNTs) on capacitive electrolyte-insulator-semiconductor (EIS) fie
162 extractable charge stored under operation: a capacitive electronic charge ( approximately 0.2 muC/cm(
163 pect to the force capacity per electrostatic capacitive energy and are robust to defects or damage th
164 lable pathway to enable the high-temperature capacitive energy applications of a wide range of engine
166 networks (PPNs) are attractive materials for capacitive energy storage because they offer high surfac
167 nanocomposites have outstanding high-voltage capacitive energy storage capabilities at record tempera
168 high-temperature dielectric materials toward capacitive energy storage has been driven by the rise of
170 and high power capabilities associated with capacitive energy storage make this approach an attracti
171 sed EDLC electrode materials in the field of capacitive energy storage, from the viewpoint of materia
177 ntensive electromagnetic field into a spiral capacitive gap (around 200 mum), which provides sufficie
180 ere, we show a novel reactor design based on capacitive granules: the fluidized capacitive bioanode.
181 In this paper, we demonstrate a touchless capacitive imaging-based sensor in the situation where t
184 forms [differential pulse voltammetry (DPV), capacitive impedimetry (CI), and PM] were integrated wit
185 r the piezoelectric microgravimetry (PM) and capacitive impedometry (CI) determination of ATP, respec
186 cteristics (e.g. bandwidth, determination of capacitive/inductive contribution to sensor's impedance
188 (impedimetric) and redox tethered receptive (capacitive) interfaces engineered by self-assembly monol
189 with the use of models that account for the capacitive leakage present in the reference channels of
190 ty, which could be explained by the lopsided capacitive load imposed on the proximal end of the AIS b
191 ion is finely tuned with the somatodendritic capacitive load, serving as a homeostatic regulation of
192 a time constant of ~20 ms, which represents capacitive loading of neighboring cells through gap junc
193 nce yarn supercapacitor by depositing pseudo-capacitive materials on the outer surface of the carbon
195 er presents a microwave sensor designed as a capacitive matrix for label-free Escherichia coli detect
196 he mean value of capacitances' change in the capacitive matrix sensor is an indicator of the bacteria
198 lse waveform with analytical calculations of capacitive membrane charging/discharging, also known as
199 in turn, could also serve as models to study capacitive memory and signal processing in neuronal memb
200 le, voltage-controlled memcapacitor in which capacitive memory arises from reversible and hysteretic
201 e first time, the use of the electrochemical capacitive method for the detection of NS1 DENV biomarke
202 ensing of aflatoxin B1(AFB1) by field effect capacitive method using electrophoretically deposited re
203 at tuneable mode coupling can be achieved in capacitive microelectromechanical devices with dynamic e
205 is (PRO), reverse electrodialysis (RED), and capacitive mixing (CapMix) and provide perspectives on t
207 is (PRO), reverse electrodialysis (RED), and capacitive mixing (CapMix), are being developed to recov
208 gradient energy that can be obtained through capacitive mixing based on double layer expansion depend
209 ar, osmotic power and blue energy as well as capacitive mixing); applications in detergency and clean
210 dance-based biosensor, it was found that the capacitive nature of blood obscures the clotting respons
212 silicon support for the membrane contributes capacitive noise and limits integration with microfluidi
215 SGE technologies that captures energy using capacitive or battery electrodes, but CapMix devices hav
217 nical sensing technologies (i.e., resistive, capacitive, or piezoelectric) have yet offered a satisfa
218 n neat serum ( approximately 0.5ngmL(-1) for capacitive over approximately 30ngmL(-1) for impedimetri
221 er-associated currents: the recovery rate of capacitive peak, but not of steady state, currents was s
222 n RGM show superior gravimetric and per-area capacitive performance (specific capacitance: 502.78 F g
223 strated to preserve excellent dielectric and capacitive performance after intensive bending cycles.
225 he composite electrode displayed an enhanced capacitive performance of 3616 F/g at 8 A/g, and showed
227 The electrochemical stability, excellent capacitive performance, and the ease of preparation sugg
228 ining Al(2) O(3) nanoplates display a record capacitive performance, e.g., a discharged energy densit
230 ene hydrogels are demonstrated with superior capacitive performances and extraordinary mechanical fle
235 harging voltage of a supercapacitor with the capacitive potential ranges and the capacitance ratio of
236 results provide insight into the predominant capacitive processes occurring at different states of ch
237 ling of the electrical impedance results the capacitive properties of the barrier next to the well-kn
239 le tuning of the surface coverage and redox (capacitive) properties of the polymers, which, in turn,
242 sing Voltage technique in the doping-induced capacitive regime (doping-CELIV) is extended to the case
245 phase angle is broadly defined by the local capacitive response of the electrical double layer (EDL)
246 o that in the bulk solution allows the local capacitive response of the working electrode substrate i
247 proton-coupled redox couples appear over the capacitive response with 0.94 and 1.19 (V vs SHE) pH = 7
249 in selectively quantified by electrochemical capacitive sensing (an impedance-derived capacitance met
250 d alternating current electrokinetics (ACEK) capacitive sensing as a new application for rapidly dete
252 iontronic film is introduced as a thin-film capacitive sensing material for emerging wearable and he
253 an alternating current electrokinetic (ACEK) capacitive sensing method has been reported to demonstra
254 d on an aptamer probe and AC electrokinetics capacitive sensing method that successfully detected BPA
255 Experimental study of the ACEK-enhanced capacitive sensing method was conducted, and the results
259 good accuracy is developed to use with ACEK capacitive sensing to produce a true POC technology.
264 -resistance problems, a sensitive label-free capacitive sensor developed in our group was investigate
265 n Au patch electrode Ag-SnO(2)/SiO(2)/Si MIS capacitive sensor equipped with a microcontroller was de
271 technique incorporating a novel interdigital capacitive sensor with multiple sensing thin film gold m
273 at least 1000 times higher than any existing capacitive sensors and one order of magnitude higher tha
276 nics) and related stretchable devices (e.g., capacitive sensors, supercapacitors and electroactive po
277 n the signal-to-noise ratio in the generated capacitive signals, allowing the ultraconformal microhai
278 ew method for fabricating textile integrable capacitive soft strain sensors is reported, based on mul
280 m x 1.5 mum devices containing inductive and capacitive structures were designed and fabricated as po
281 ow that this effect allows us to introduce a capacitive susceptibility that assumes a maximum in the
282 f antibacterial susceptibility response by a capacitive system can be done within a short time, 2.5h
283 ative for assaying trypsin and the developed capacitive system might be used successfully to monitor
284 mount of captured enzyme calculated from the capacitive system was 7.9mU/mL which shows the correlati
285 e show a proof-of-principle of the fluidized capacitive system with a total anode volume of 2 L.
288 nd vast applications in e.g. circuit boards, capacitive touch pads, and radio frequency identificatio
291 S films were used as patterned electrodes in capacitive touch sensors and organic photovoltaics to de
294 -free and reagentless aptasensor, based on a capacitive transducer with simple face-to-face electrode
295 ngly, the combination of SC and SAM bringing capacitive transduction at the forefront of ultrasensiti
297 be optimal; increasing [B] results in higher capacitive values and increases the likelihood of nondia
298 le applications such as grid energy storage, capacitive water deionization, and wastewater treatment.
299 potentials exhibiting biphasic and inverted capacitive waveforms, indicative of varying ion-channel
300 ile current at the other electrode is purely capacitive (we refer to this as capacitive coupling).