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1 MWCNT based imprinted polymer (MWCNT-MIP) was synthesize
2 MWCNT-MoS(2) NC conjugated to biomolecules can serve as
3 MWCNTs translocate only minimally from the lungs into th
4 MWCNTs were sensitive to molecular size, where bioavaila
5 hene oxide-multiwall carbon nanotubes (3DrGO-MWCNTs) were used to modify the glassy carbon electrode
7 ormance of FLU and NF on the N-CQD@Co(3)O(4)/MWCNTs/GCE surface was examined using CV and differentia
10 st voltammetric responses were produced by A-MWCNT/Hyalu/l-Cys and A-MWCNT/Hyalu/l-Ser modified elect
11 ) (Cd(II)) and 0.015 ug L(-1) (Pb(II)) for A-MWCNT/Hyalu/l-Cys/GCE and 0.057 ug L(-1) (Cd(II)) and 0.
12 uA/nM (Cd(II)) and 3.5 uA/nM (Pb(II)) for A-MWCNT/Hyalu/l-Cys/GCE and 0.6 uA/nM (Cd(II)) and 2.6 uA/
15 acid treated multiwalled carbon nanotube (A-MWCNT) functionalized with hyaluronic acid (Hyalu) and t
19 in-1 level was significantly increased after MWCNT exposure, and mice lacking the endogenous receptor
21 p 1 and 3 mg/ml MWCNT-alginate; although all MWCNT-alginates lead to enhanced cell cluster formation
25 odification of the electrode surface with an MWCNT-rGO hybrid nanocomposite resulted in a 10-fold inc
28 s multi-walled carbon nanotubes (MWCNTs) and MWCNT-decorated gold nanoparticles, along with different
29 ally interacted enzyme-armored MWCNT-OPH and MWCNT-AChE along with a set of cushioning bilayers consi
30 rs consisting of MWCNT-polyethyleneimine and MWCNT-DNA on glassy carbon electrode for discriminative
31 time of 11 to 22 s) through the PAC-REM and MWCNT-REM with the application of a -1.1 V/SHE cathodic
32 says conducted in the presence of MWCNTs and MWCNTs-Au indicated a Jmax of 781 +/- 59 microA cm(-2) a
35 electrostatically interacted enzyme-armored MWCNT-OPH and MWCNT-AChE along with a set of cushioning
37 his novel immunosensor based on the PPy/AuNP/MWCNT/Chi hybrid bionanocomposite modified pencil graphi
38 e conducted using (14)C-labeled MWCNT ((14)C-MWCNT) doses at or below 1 mg/L, which proved subtoxic s
40 rating conditions, the ELP-OPH/BSA/TiO2NFs/c-MWCNTs based biosensor for OPs shows a wide linear range
42 finity with phosphoric group in OPs, while c-MWCNTs was used to enhance the electron transfer in the
43 s were performed on the LFB and the captured MWCNTs on test zone and control zone of LFB produced the
44 cle based strip biosensors, the carboxylated MWCNTs were selected as the labeling substrate because o
46 not biomagnify in the microbial food chain, MWCNTs bioaccumulated in the protozoan populations regar
47 arying content of carbon nanostructures (CNs=MWCNTs and RGO), are prepared using simple in-situ wet c
48 tructural modification of multi-walled CNTs (MWCNTs) to fully utilize their fascinating mechanical an
49 elatively thick and short multi-walled CNTs (MWCNTs) were introduced in the metal matrix with in-situ
52 stiffer and 233% stronger than conventional MWCNTs in radial compression and have excellent mechanic
58 e Brier Creek water column, while downstream MWCNT surface and deep sediment concentrations exhibited
60 The electrode array was fabricated employing MWCNTs (as an ion-to-electron transducer) and stretchabl
61 0 ppm of the MWCNTs were released as exposed MWCNTs (which could contact lung cells upon inhalation)
63 ite coated on glassy carbon electrode (GCE/f-MWCNT-Chit@Th) for quick and sensitive detection of UPEC
67 es modified on glassy carbon electrode (Ni@f-MWCNT/GCE) were synthesized through microwave assisted m
68 carboxyl-multiwalled carbon nanotube (PLA/ f-MWCNT) composites to be developed into MNAs and their ef
69 gest that nanostructured materials such as f-MWCNTs are an attractive platform as a general ion-to-el
70 nctionalized multiwalled carbon nanotubes (f-MWCNTs) and 1-butyl-4-methylpyridinium hexafluorophospha
71 rode based on lipophilic carbon nanotubes (f-MWCNTs) as an ion-to-electron transducer (slope of -58.9
72 g lipophilic multiwalled carbon nanotubes (f-MWCNTs) as the inner ion to electron transducing layer.
75 CE electrode and the results revealed that f-MWCNTs increased the electrocatalytic properties of Ni n
77 outstanding catalytic performance, Pd@Fe3O4-MWCNT nanocomposite was employed as the nano-stabilizer
81 The amounts of NM released were lower for MWCNTs (36 and 108 mg/m(2)) than for SiO2 NPs (167 and 7
85 larger magnetic remanence (MR) portion from MWCNTs with progressively smaller amplitude of oscillati
87 We hypothesized that adding functionalized MWCNT to alginate, would yield composite gels with disti
88 ity of 5.2% obtained with five different GCE/MWCNTs-Av/RuNPs/biot-GOx bioplatforms prepared the same
89 isible light assisted glucose oxidation (GCE|MWCNT|g-C(3)N(4)|Ru-complex|FADGDH) with a quinone media
92 veals a possibility of magnetic tunneling in MWCNTs (change of magnetic state of blocked magnetic mom
94 an be achieved simultaneously by introducing MWCNTs in the Cu matrix, with control of the interfacial
95 periments were conducted using (14)C-labeled MWCNT ((14)C-MWCNT) doses at or below 1 mg/L, which prov
96 of the tensile properties of millimeter-long MWCNTs that can be used as reinforcement in a composite
98 yogel-micro-solid phase extraction (magnetic-MWCNTs-PVA cryogel-mu-SPE) sorbent was synthesized by in
100 less of the feeding regime, which could make MWCNTs bioavailable for organisms at higher trophic leve
101 was greater when cultured atop 1 and 3 mg/ml MWCNT-alginate; although all MWCNT-alginates lead to enh
103 he immunosensing performance of BiNPs/Nafion-MWCNTs/GCE was evaluated based on sandwich immunoassay p
104 ified glassy carbon electrodes (BiNPs/Nafion-MWCNTs/GCE) as a sensing platform and (ii) titanium phos
105 tubes molybdenum disulfide 3D nanocomposite (MWCNT-MoS(2) NC) was successfully synthesized via eco-fr
106 ctrochemical properties of the nanomaterial (MWCNTs-PPy-PAMAM-Fc) were studied using both square wave
107 was fabricated by multiwall carbon nanotube (MWCNT) arrays as conductive and super hydrophobic materi
108 DS) facilitates multiwalled carbon nanotube (MWCNT) debundling and enhances nanotube stability in the
109 dissipation of a multi-wall carbon nanotube (MWCNT) device fabricated from two crossed nanotubes on a
111 standing porous multiwalled carbon nanotube (MWCNT) films using cultured, harmless bacteria as poroge
112 perties and two multiwalled carbon nanotube (MWCNT) NCs obtained by different addition methods were p
113 formulated by multi-walled carbon nanotube (MWCNT) on glassy carbon electrode (GCE) were applied as
114 functionalized multi-walled carbon nanotube (MWCNT) supported highly monodisperse nickel nanoparticle
118 cles decorated multi-walled carbon nanotube (MWCNTs) nanocomposite is fabricated via a two-step proce
119 oliate GQDs from multi-wall carbon nanotube (MWCNTs), which can be referred to as a pulsed laser exfo
120 (PtNP) decorated multiwall carbon nanotube (MWCNTs)/polypyrrole (PPy) composite on glassy carbon ele
121 embrane using multi-walled carbon nanotubes (MWCNT) and aromatic polyamide (PA), was successfully pre
122 ed first with multi-walled carbon nanotubes (MWCNT) and then with a molecularly imprinted polymer fil
123 crys Zeo) and Multi-walled carbon nanotubes (MWCNT) based diagnostic genosensor was employed for dete
124 l properties of multi-wall carbon nanotubes (MWCNT) composites functionalized with metal or metal all
126 haracteristics, multi-wall carbon nanotubes (MWCNT) have the potential to be used in structural compo
127 apsulation of multi-walled carbon nanotubes (MWCNT) serving as a reinforcing phase while being disper
128 unctionalized multi-walled carbon nanotubes (MWCNT) sheets coated with poly(3,4-ethylenedioxythiophen
129 of carboxylated multiwall carbon nanotubes (MWCNT) was deposited on gold screen-printed electrode (A
131 nanoparticles, multiwalled carbon nanotubes (MWCNT), chitosan and a novel synthesized Schiff base (SB
133 carboxylated multi-walled carbon nanotubes (MWCNT-COOH), and oxalate decarboxylase enzyme (OxDc) imm
134 g ozonation of multiwalled carbon nanotubes (MWCNTs) and assessed this system's viability as a next-g
135 bons (PAHs) on multiwalled carbon nanotubes (MWCNTs) and exfoliated graphene (GN) in conjunction with
136 rials such as multi-walled carbon nanotubes (MWCNTs) and MWCNT-decorated gold nanoparticles, along wi
137 nocomposite of multiwalled carbon nanotubes (MWCNTs) and poly(3-octylthiophene-2,5-diyl) (POT), in wh
138 ry exposure to multiwalled carbon nanotubes (MWCNTs) causes indirect systemic inflammation through un
140 ter plate with multiwalled carbon nanotubes (MWCNTs) dispersed in 3-aminoproyltriethoxysilane (APTES)
144 e levels using multiwalled carbon nanotubes (MWCNTs) impregnated with 2-(2-benzothiazolylazo)orcinol
145 and protruding multiwalled carbon nanotubes (MWCNTs) in the respirable fraction of particles abraded
149 a disposable multi-walled carbon nanotubes (MWCNTs) labeled nucleic acid lateral flow strip biosenso
150 Although multi-walled carbon nanotubes (MWCNTs) possess interesting electrical properties, their
151 ancer tumors by Multi-wall carbon nanotubes (MWCNTs) sensing agents had been decorated on the tip of
152 er goods contain multiwall carbon nanotubes (MWCNTs) that could be released during product life cycle
153 the shortened multi-walled carbon nanotubes (MWCNTs) via diimide-activated amidation between the carb
154 n behavior of multi-walled carbon nanotubes (MWCNTs) was studied in mixtures of negatively charged qu
158 he surface of multi-walled carbon nanotubes (MWCNTs) with sunset yellow (SY) as a template molecule.
159 ide (rGO) and multi-walled carbon nanotubes (MWCNTs), and biocompatible propulsion capabilities, were
160 o-sheets (GO), multiwalled carbon nanotubes (MWCNTs), and pyrogallol (PG) was fabricated and utilized
162 als including multi-walled carbon nanotubes (MWCNTs), reduced graphene oxide (RGO) and fullerene (C(6
172 position of Au-multiwalled carbon nanotubes (MWCNTs); ii) electropolymerization of the mediator, meth
174 ingle-wall (O-SWCNTs) and multi-wall CNTs (O-MWCNTs), we explored the influence that CNT loading (mas
175 te oxidation, the inclusion of O-SWCNTs or O-MWCNTs caused PNC surfaces to exhibit antimicrobial prop
176 ory, the MWCNTs concentration, the amount of MWCNT-DNA probe, and the volume of the test probe) that
179 h a set of cushioning bilayers consisting of MWCNT-polyethyleneimine and MWCNT-DNA on glassy carbon e
181 avenues to further explore the potential of MWCNT films as a novel class of nano-fibrous mats for ti
182 important feature is that the preparation of MWCNT-DNA conjugates was robust and the use of MWCNT lab
184 rsion were observed between the two types of MWCNT NCs (masterbatch vs direct addition) after manufac
185 fibrogenic risk factor of specific types of MWCNT, we developed a human lung microtissue array devic
186 The chemical facilitated unscrolling of MWCNT and subsequent bridging with terephthalaldehyde (T
187 CNT-DNA conjugates was robust and the use of MWCNT labels avoided the aggregation of conjugates and t
188 e ZnO nanowires, electrochemical activity of MWCNTs embedded ZnO nanowires was found to be much highe
189 aeruginosa adsorbed considerable amounts of MWCNTs: (0.18 +/- 0.04) mug/mg and (21.9 +/- 4.2) mug/mg
191 of diffused Cr atoms and amorphous carbon of MWCNTs would assist in improving the electrical properti
192 al interface was obtained by drop-coating of MWCNTs-Av dispersion at glassy carbon electrodes (GCE) f
195 etic field (EMF) exposure (up to <10 kHz) of MWCNTs resulted in slight induced magnetization decrease
196 on the excellent electrocatalytic matrix of MWCNTs and the electronic barrier of the non-imprinted P
198 chemical assays conducted in the presence of MWCNTs and MWCNTs-Au indicated a Jmax of 781 +/- 59 micr
200 ncreased surface area due to the presence of MWCNTs led to a high immobilization density of 1-ethyl-3
201 ion mechanism with the optical properties of MWCNTs on lateral flow strip, optical black bands were o
202 the present study suggest that properties of MWCNTs wrapped with commercial surfactants will be alter
204 ghness primarily controlled the retention of MWCNTs, although goethite surfaces played an important s
205 e used to parametrize WASP for simulation of MWCNTs transport in Brier Creek, a coastal plain river l
208 izontal lineO generated on the outer wall of MWCNTs are found to play crucial roles in catalyzing OER
209 uctures and highly conductive inner walls of MWCNTs enable efficient transport of the electrons gener
210 is enough to create the functional groups on MWCNT-ZnO nanowire surface that are effective for the co
212 f our knowledge, this is the first report on MWCNT-ZnO nanowire based immunosensor explored for the d
214 facilitated multilayered SRHA adsorption on MWCNTs through bridging effects, while monovalent sodium
217 on oxidized multiwalled carbon nanotubes (ox-MWCNTs) with complexing reagent 1,10-phenanthroline is p
219 D antibody onto a nanocomposite AuNPs-PANABA-MWCNTs employing the carboxylic moieties as anchor sites
221 raction and relaxation behavior of the PEDOT/MWCNT-based hybrid muscle is similar to that of the sing
223 tion of BHA and the study showed that at POC/MWCNTs electrodes BHA oxidation occurred at 0.27 V.
224 l groups and charge transfer property of POC/MWCNTs electrode, the resulting POC film with MWCNTs ele
226 ced PA6 degradation during aging, preventing MWCNT accumulation on the surface and further release or
227 The reaction of MWCNT with GMA produces MWCNT-g-GMA and the epoxide ring present in the GMA upon
228 tNP decorated MWCNTs (Pt-MWCNTs), PPy and Pt-MWCNTs/PPy composite were characterized by Field Emissio
229 Oxidase (GlUtOx) was immobilized on a GC/Pt-MWCNTs/PPy and characterized by the cyclic voltammetry (
234 the demonstration of the ability to quantify MWCNT bioaccumulation at low (sub mug/kg) concentrations
238 densely packed gold nanoparticles on the rGO-MWCNT platform was used as the basis for an ultrasensiti
239 re AuNPs, rGO-MWCNT and MWCNT/AuNPs, the rGO-MWCNT/AuNPs nanocomposite modified electrode was the mos
240 aphite-based nanocomposite electrode (Au-rGO/MWCNT/graphite) that uses a simple electro-co-deposition
241 atforms prepared the same day using the same MWCNTs-Av dispersion, and 9.1% obtained with nine biosen
246 ramagnetic multiwalled carbon nanotubes (SPM-MWCNTs) in an aqueous system containing Lake Tai sedimen
247 ved organic matter (DOM) and sediment on SPM-MWCNTs under various conditions and the interaction form
248 he results showed that DOM can stabilize SPM-MWCNTs by providing sterically and electrostatically sta
255 nd distance from the source, suggesting that MWCNT releases could have increasing ecological impacts
256 ermost Brier Creek water segment showed that MWCNTs were present predominantly in the Brier Creek wat
259 itu formation of Cr7C3 nanostructures at the MWCNT/Cu interface by reaction of diffused Cr atoms and
260 peak potential (P, V), were measured for the MWCNT/MIP-sensors after their incubation with non-dilute
263 addition) after manufacture, the use of the MWCNT masterbatch reduced PA6 degradation during aging,
264 n important basis for the development of the MWCNT-alginates as novel substrates for cell culture app
266 c voltammetry (CV) and UV-vis methods on the MWCNT-(PEI/DNA)2/OPH/AChE biosensor, showing great poten
271 Parameters (such as membrane category, the MWCNTs concentration, the amount of MWCNT-DNA probe, and
272 y designed tensile testing technique for the MWCNTs is developed, which allows us to obtain more accu
273 ded particles, approximately 4000 ppm of the MWCNTs were released as exposed MWCNTs (which could cont
274 catalysis of cytochrome c immobilized on the MWCNTs-TiN composite modified on a glassy carbon electro
275 n of titanium dioxide nanoparticles onto the MWCNTs surface and a subsequent thermal nitridation.
278 characterization of unmodified GCE and TiO2-MWCNT/CHIT-SB modified GCE, and also the interaction bet
280 tamers were simply immobilized onto the TiO2-MWCNT/CHIT-SB nanocomposite matrix through simple pi - p
281 d a novel synthesized Schiff base (SB) (TiO2/MWCNT/CHIT/SB) on the surface of a glassy carbon electro
282 N adsorbed PAHs indiscriminately compared to MWCNTs, the subsequent bioavailability of GN-adsorbed PA
283 atory outcomes, mice were acutely exposed to MWCNTs (10 or 40 microg/mouse) via oropharyngeal aspirat
284 In conclusion, acute pulmonary exposure to MWCNTs causes neuroinflammatory responses that are depen
285 elevated inflammatory marker transcription, MWCNT-induced BBB disruption and neuroinflammation were
289 y metrics for ozone-based AOPs (RCT values), MWCNTs promoted *OH formation during ozonation to levels
292 od for better immobilization of ss DNA while MWCNTs are incorporated into the zeolite-assembly to enh
294 and carboxylic groups was co-assembled with MWCNTs in aqueous solution while encapsulating the model
295 WCNTs electrode, the resulting POC film with MWCNTs electrode was characterized by spectroscopy, micr
296 nzymatic biosensors were functionalized with MWCNTs as a catalyst for signal enhancement, while enzym
297 s, we conduct additional MD simulations with MWCNTs that match those prepared in experiments; such si
300 (XTT-CB), multiwalled carbon nanotubes (XTT-MWCNTs), and single-walled carbon nanotubes (XTT-SWCNTs)