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1 Prussian blue analogue, which is adsorbed on carbon black.
2 A/g) than the NPs deposited on conventional carbon black (0.14 s(-1) and 126 A/g, respectively) at a
4 s usually divided by the analysis of organic carbon, black (also called elemental) carbon, and inorga
5 A range of different labels (colloidal gold, carbon black and magnetic nanoparticles) was compared as
7 nd their kinetic activities were compared to carbon black and platinum catalysts in rotating disk ele
8 ions of particle mass <2.5 microm (PM(2.5)), carbon black, and gaseous air pollutants were measured.
9 nk composed of the prototype TAML activator, carbon black, and Nafion and the subsequent use of this
10 ormulation based on carboxymethyl cellulose, carbon black, and vapor ground carbon fibers seems to be
11 graphene oxide (GO), carbon nanotubes (CNT), carbon blacks, and solvent, as well as polymers and othe
14 s applied to aqueous adsorption on activated carbon, black carbon, multiwalled carbon nanotubes, and
16 To enhance the performance of AC cathodes, carbon black (CB) was added into AC at CB:AC ratios of 0
17 mposite materials is prepared by well-mixing carbon black (CB) with Pt-loaded reduced graphene oxide
20 PSS detector array was compared to that of a carbon black composite array for a broadly construed set
23 ition of PEDOT-PSS composites to an array of carbon black composite detectors therefore can produce i
26 asurements and dc resistance measurements on carbon black composites of these same polymers have been
27 sisting of linear poly(ethylenimine) (1-PEI)-carbon black composites showed an approximately 10(3) in
28 S composites produced smaller responses than carbon black composites when exposed to nonpolar analyte
29 produce a series of electrically conducting carbon black composites whose resistance is sensitive to
30 c properties of Pt nanoclusters supported on carbon black contrast markedly with those of the Pt/gamm
33 neously on polymer films that do not contain carbon black filler to relate the QCM frequency change a
34 The electrical conductivity of different carbon blacks (FW 200, lamp black 101, Printex 30, Print
35 a tandem cartridge consisting of graphitized carbon black (GCB) and primary-secondary amine sorbent (
38 Several SPE sorbents such as graphitised carbon black (GCB), primary secondary amine (PSA), C(18)
42 esistance changes have been investigated for carbon black-insulating polymer composite vapor detector
44 re we study the impact of surface-engineered carbon-black materials on brine shrimp (Artemia francisc
47 -1 derived from hydrothermal synthesis using carbon black nanoparticle templates, and the catalytic a
48 of a screen-printed electrode modified with carbon black nanoparticles (CBNPs) leads to the quantifi
49 highly controlled shock waves, we show that carbon black nanoparticles activated by femtosecond lase
51 effective solid system tested in this study, carbon black nanoparticles functionalised with poly(ethy
53 e and primary human alveolar macrophages) to carbon black nanoparticles induces pyroptosis, an inflam
54 hat interaction between the laser energy and carbon black nanoparticles may generate photoacoustic fo
55 these effects was seen in mice that inhaled carbon black nanoparticles or a lower dose of nanotubes
57 Previous studies have shown that exposure of carbon black nanoparticles to nanosecond pulsed near-inf
58 from male C57BL/6 mice exposed to ultrafine carbon black nanoparticles, a model of chronic obstructi
59 tudy, we show that insoluble nanoparticulate carbon black (nCB) accumulates in human myeloid dendriti
60 of mice exposed to smoke or nanoparticulate carbon black (nCB) through a mechanism that involved the
61 nterparticle electronic connectivity via the carbon black network, the smaller particles lithiate fir
63 edia than Fe(3)O(4) NPs supported on N-doped carbon black or N-doped graphene sheets, highlighting th
64 Limits of detection for DMMP on unoptimized carbon black/ organic polymer composite vapor detectors
65 ous carbon supports (for example, commercial carbon black particles, carbon nanotubes, and graphene s
68 e pulsed waves of ultrasound, generated by a carbon black/polydimethylsiloxane (PDMS)-photoacoustic l
70 plasticizer diethylene glycol dibenzoate to carbon black-polymer composites of poly(vinyl acetate) (
71 An array of 20 compositionally different carbon black--polymer composite chemiresistor vapor dete
72 n each analyte was exposed separately to the carbon black/polymer composite detectors under study.
73 e responses relative to an air background of carbon black/polymer composite vapor detectors have been
74 ial resistance responses, delta R/Rb, of the carbon black/polymer composite vapor detectors were well
75 luding carbon nanotubes, graphene oxide, and carbon black provide a range of surface topographies, po
76 y of this device is largely improved using a carbon black/Prussian Blue nanocomposite as a working el
80 ion-selective electrode was fabricated with carbon black supporting platinum nanoparticles (PtNPs-CB
82 ted mesoporous carbon, activated carbon, and carbon black with different pore structures and composit
83 -electrolyte interphase, initially formed on carbon black with no electrochemical bias applied, readi
84 highly dispersed palladium nanoparticles on carbon black with stabilizers and the intermetallic Cu(2
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