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1 ed mineral surfaces in soils (e.g., iron and aluminum oxides).
2 tion from dual templates using porous anodic aluminum oxide (AAO) membranes with silica nanospheres s
3 sphocholine (DOPC) vesicles on porous anodic aluminum oxide (AAO) membranes, creating sealed attolite
4 noporous block-copolymer monoliths to anodic aluminum oxide (AAO) membranes.
5 ned by using R2R UV-NIL technique and anodic aluminum oxide (AAO) mold.
6 40 K using an aluminum surface with anodized aluminum oxide (AAO) nanoporous texture finish.
7 ycine in the cylindrical nanopores of anodic aluminum oxide (AAO) revealed the formation of metastabl
8                                       Anodic aluminum oxide (AAO) substrates with flow-through 175 nm
9  the nanostructured aluminum oxide or anodic aluminum oxide (AAO) surface is reported.
10 anopore-based sensors fabricated from anodic aluminum oxide (AAO) thin film, offers improved sensitiv
11 (imide) or poly(imide) coated with amorphous aluminum oxide (AAO), amorphous carbon (AC), parylene, p
12 u nanoparticles (NPs) 13 nm in diameter with aluminum oxide (Al(2)O(3)) particles 50-200 mum in diame
13 (2)), with a nominal pore size of 30 nm, and aluminum oxide (Al(2)O(3)), with a nominal pore size of
14 p Effective, Rugged and Safe (QuEChERS) with aluminum oxide (Al2O3) as dispersive solid phase extract
15 erein, we discovered that the earth-abundant aluminum oxide (Al2O3) though paradigmatically known to
16                             Namely, anodized aluminum oxide (Al2O3, 2-20 nm) and self-assembled monol
17                                   The anodic aluminum oxide alignment method is applicable to a broad
18 ch included sample purification on activated aluminum oxide and elution, is less than 1 h per 96-well
19 hanisms by combining two ordinary compounds, aluminum oxide and polymethyl methacrylate, into ice-tem
20 iorhodopsin (bR) deposited on gold, aluminum/aluminum-oxide, and nickel substrates.
21 ive excitations have been observed in liquid aluminum oxide at high temperatures by combining a conta
22               Metal oxides such as ferric or aluminum oxides can play an important role in the retent
23                   When mixed with a platinum/aluminum oxide catalyst and aged in air at 800 degrees C
24               Hydration reactions of anionic aluminum oxide clusters were measured using a quadrupole
25 tive sites over commercial copper/zinc oxide/aluminum oxide (Cu/ZnO/Al2O3) catalysts for carbon dioxi
26  interface of ultrathin PMMA films on native aluminum oxide, deposited by reactive adsorption, was st
27  mismatch between the GaAs and ALD-deposited aluminum oxide due to their different coefficients of th
28  that has been coated and passivated with an aluminum oxide film deposited by atomic layer deposition
29 s surface is invariably covered with a dense aluminum oxide film, which prevents its effective use as
30 ltration to capture viruses on a 0.02-microm aluminum oxide filter, and subsequent staining and mount
31  single crystals, prepared with an amorphous aluminum oxide gate insulator, are capable of ambipolar
32 ce, taken as a model for surfaces of natural aluminum oxide hydrates.
33        The reactivity of aqueous Fe(II) with aluminum oxide in anoxic solutions was investigated with
34                                              Aluminum oxide is important cosmically, because its pres
35    Heterogeneous coprecipitation of iron and aluminum oxides is an important process for pollutant im
36 y deep reactive ion etching through a porous aluminum oxide layer.
37                                   Nanoporous aluminum oxide layers, grown by anodization of aluminum
38 er solution into the system through a porous aluminum oxide membrane results in the growth of highly
39 Copper electrodeposits are grown in anodized aluminum oxide membranes with polyelectrolyte coatings t
40                                   Insulating aluminum oxide nanocrystals are assembled layer by layer
41 rmal layers of amorphous silicon dioxide and aluminum oxide nanolaminates at rates of 12 nanometers (
42 by modifying the active side of the MCs with aluminum oxide nanoparticles (AONP) for purposes of enha
43                  In this paper, we show that aluminum oxide nanoparticles that are covalently coupled
44    The nanofluid consists of DI-water, 0.10% Aluminum Oxide nanoparticles with an average diameter of
45               Fabricated separators based on aluminum oxide nanowires enhanced the safety and rate ca
46 is is achieved by atomic layer deposition of aluminum oxide on Ag NCs and addition of a tetra-topic p
47 eacon biosensors based on the nanostructured aluminum oxide or anodic aluminum oxide (AAO) surface is
48 ographically patterned grids of photoresist, aluminum oxide, or gold on oxidized silicon substrates w
49                              Porous anodized aluminum oxide (pAAO) is a nanostructured material, whic
50 low-cell is a disposable chip made of porous aluminum oxide (PAO), which retains the sensor microorga
51                                   Radiopaque aluminum oxide particles from abrasive cautery-tip clean
52 ees C are integrated with solution-deposited aluminum oxide phosphate dielectrics in functional trans
53        In comparison to pure alumina, nickel aluminum oxide samples exhibited larger mesopores and im
54 ed by calcium and iron sulfates, silicon and aluminum oxides, sodium carbonate, and iron sulfide.
55                                       Anodic aluminum oxide substrates with macroscopically aligned h
56 of the compound likely adsorb onto the polar aluminum oxide surface and direct the self-assembly path
57     Deposition and release behavior of GO on aluminum oxide surface is very similar to positively cha
58 he absence of glyphosate, Zn adsorbed on the aluminum oxide surface mainly as bidentate mononuclear s
59                                              Aluminum oxide surface was used as a model metal oxide s
60 n polyacrylic acid (PAA) layer with a native aluminum oxide surface.
61 ent on alginate, followed by SRFA, SRHA, and aluminum oxide surfaces, and that GO displayed higher in
62  crosslinked within the pores of an anodized aluminum oxide template.
63 ike, and stepwise are prepared from anodized aluminum oxide templates.
64 rarchically branched nanopores inside anodic aluminum oxide templates.
65  grown metal nanorod arrays in porous anodic aluminum oxide templates.
66 ss utilizes atomic layer deposition (ALD) of aluminum oxide to conformally insulate a gold-coated nan
67  used for the synthesis of mesoporous nickel aluminum oxide was demonstrated by preparation of other
68 he extent of reduction of U(VI) presorbed to aluminum oxides was semiquantitatively estimated by comp
69 oposal of an adsorption mechanism of PMMA on aluminum oxide, which shows the formation of methanol at

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