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1 fractions) using colloidal silica and sodium aluminate.
2 boxylic acids on both hydrated silicates and aluminates.
3 ence of a variety of monomeric and polymeric aluminate and aluminosilicate species (Al(1)Si(x)-Al(13)
4 dy also directly reveals the complexation of aluminate and aluminosilicate species with perchlorate s
5 control) of a precursor solution containing aluminate and germanate precursors chemically bonded to
8 uclear and polynuclear perfluoroarylborate, -aluminate, and -gallate cocatalysts/activators B(C6F5)3
9 S spectra from the relevant aluminosilicate, aluminate, and silicate solutions reveals the presence o
12 olysis is proposed for the [iBu(3) AlHLi](2) aluminate catalyzed hydrophosphination of alkynes with d
13 is procedure enables the addition of calcium aluminate cement to further enhance sorbent strength.
17 6G dyes with tetrakis(perfluoro-tert-butoxy)aluminate counterions (~6000 dyes per NP), and bearing 6
20 ylphosphine by perfluorinated phenazinium(F) aluminate in difluorobenzene affords hexaaryl-1,2-diphos
21 ain behaviour in pure-ferroelastic lanthanum aluminate (LaAlO[Formula: see text]) as a function of as
22 e interface between the insulators lanthanum aluminate (LaAlO3) and strontium titanate (SrTiO3) disti
25 allow resonances from different silicate and aluminate moieties to be resolved and assigned in compli
27 -sorted, silica-coated 650 290 -nm strontium aluminate nanoparticles are infused into five diverse pl
28 croemulsions to produce discrete barium hexa-aluminate nanoparticles that display excellent methane c
32 minum in the main hydration product, calcium aluminate silicate hydrate (C-A-S-H), remains elusive.
33 t types of sugars have on the rates at which aluminate, silicate, and aluminosilicate species hydrate
34 nd alkaline reaction properties on hydrating aluminate, silicate, and aluminosilicate surfaces that a
35 or crystalline particles composed of calcium aluminates, silicates and iron condense into atmospheric
36 rent crystalline and disordered silicate and aluminate species in anhydrous and hydrated cements.
37 band gap narrowing emerges in a high-entropy aluminate spinel oxide, (Fe(0.2)Co(0.2)Ni(0.2)Cu(0.2)Zn(
38 was incorporated into the matrix of magnesio aluminate spinel-alumina (MA-A) via infiltration of a po
39 electron waveguides formed at the lanthanum aluminate-strontium titanate (LaAlO(3)/SrTiO(3)) interfa