618 results on '"Armelao, Lidia"'
Search Results
202. Wetting Behavior of Porous Silicon Surfaces Functionalized with a Fulleropyrrolidine
203. Tailored synthesis of ZnO:Er(III) nanosystems by a hybrid rf-sputtering/sol-gel route
204. Structural and Magnetic Properties of Pure and Ca-Doped LaCoO3 Nanopowders Obtained by a Sol–Gel Route
205. Synthesis of Copper Sulphide Nanoparticles in Carboxylic Acids as Solvent
206. Highly homogeneous, transparent and luminescent SiO2glassy layers containing a covalently bound tetraazacyclododecane–triacetic acid–Eu(iii)–acetophenone complex
207. Polymerization processes in Al(OBus)3 sol-gel solutions: an investigation by laser desorption/ionization mass spectrometry
208. Gold Nanoclusters Protected by Conformationally Constrained Peptides
209. Low temperature synthesis of MgxAl2(1−x)Ti(1+x)O5 films by sol–gel processing
210. Turning Fluorescent Dyes into Cu(II) Nanosensors
211. Optical and electrical properties of nanostructured LaCoO3 thin films
212. LaCoO3 Nanosystems by a Hybrid CVD/Sol–Gel Approach
213. Copper−Silica Nanocomposites Tailored by the Sol−Gel Route
214. Preparation of Gold Nanoparticles on Silica Substrate by Radio Frequency Sputtering
215. Structural evolution and effects of calcium doping on nanophasic LaCoO3 powders prepared by non-alkoxidic sol–gel technique
216. Zirconium and hafnium oxoclusters as molecular building blocks for highly dispersed ZrO2 or HfO2 nanoparticles in silica thin films
217. Zr and Hf oxoclusters as building blocks for the preparation of nanostructured hybrid materials and binary oxides MO2–SiO2(M = Hf, Zr)
218. Hybrid Chemical Vapor Deposition/Sol−Gel Route in the Preparation of Nanophasic LaCoO3 Films
219. Silica-Supported Erbium-based Nanosystems: An XPS Characterization
220. Au/TiO2 Nanosystems: A Combined RF-Sputtering/Sol−Gel Approach
221. Biodegradable Polyesters Reinforced with Surface‐Modified Vegetable Fibers
222. Study of Ag/SiO2 Nanosystems by XPS
223. Characterization of Au/TiO2 Nanocomposites by XPS
224. LaCoO3 Nanosystems by a Hybrid CVD/Sol-Gel Route: An XPS Investigation
225. HfO2-doped Silica Thin Films by XPS
226. ZrO2-CeO2 Sol-Gel Thin Films by XPS
227. Boron and Phosphorus Quantification in Sol-Gel BPSG Glasses by XPS
228. Introduction to XPS Studies of Metal and Metal-oxide Nanosystems
229. HfO2–ZrO2 Doped Silica Thin Films by XPS
230. Matrix‐assisted laser desorption/ionisation mass spectrometry in the study of polycondensation of Ti(OBun)4 in the presence of Si(OEt)4
231. Sol–Gel Synthesis of λ–Na2O·xAl2O3 Films
232. A sol–gel approach to nanophasic copper oxide thin films
233. Construction and Characterization of Ru(II)Tris(bipyridine)-Based Silica Thin Film Electrochemiluminescent Sensors
234. A molecular approach to RuO2-based thin films: sol–gel synthesis and characterisation
235. Synthesis and characterization of crystalline tin oxide nanoparticles
236. Study of polycondensation reactions of Ge(OEt)4 and Ge(OEt)4/Si(OEt)4 by electrospray ionization mass spectrometry
237. Chemical and physical routes for composite materials synthesis: Ag and Ag2S nanoparticles in silica glass by sol–gel and ion implantation techniques
238. Pure and Ca-doped LaCoO3 Nanopowders: Sol-Gel Synthesis, Characterization and Magnetic Properties.
239. Cobalt oxide-based films: sol–gel synthesis and characterization
240. ZrO2 Sol-Gel Thin Films by XPS
241. Plasma-Enhanced CVD CeO2 Nanocrystalline Thin Films Analyzed by XPS
242. Electrospray ionization in the study of sol‐gel processes: the polycondensation of Ti(O‐n‐Bu)4 in the presence of Si(OEt)4
243. Sol-gel synthesis and characterization of CuO–based nanosystems.
244. Composition and Microstructure of Cobalt Oxide Thin Films Obtained from a Novel Cobalt(II) Precursor by Chemical Vapor Deposition
245. Sol-Gel and CVD Co3O4 Thin Films Characterized by XPS
246. Electrospray ionization mass spectrometric study of the hydrolysis-polycondensation process of Sn(OBut)4
247. Gold molecular precursors and gold–silica interactions
248. LaCoO3 Nanopowders by XPS
249. Study of β-Al2TiO5 Thin Films by XPS
250. Water splitting reaction on Ce0.15Zr0.85O2driven by surface heterogeneityElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01337b
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.