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Preparation and characterization of stable monodisperse silver nanoparticles via photoreductionXU, Guang-Nian; QIAO, Xue-Liang; QIU, Xiao-Lin et al.Colloids and surfaces. A, Physicochemical and engineering aspects. 2008, Vol 320, Num 1-3, pp 222-226, issn 0927-7757, 5 p.Article

Self-coiling of Ag2V4O11 nanobelts into perfect nanorings and microloopsGUOZHEN SHEN; DI CHEN.Journal of the American Chemical Society. 2006, Vol 128, Num 36, pp 11762-11763, issn 0002-7863, 2 p.Article

Thermodynamic properties in the clathrate-type silver- and copper-oxide: Ag6O8MX and Cu6O8MX (M = cation, X = anion)KAWASHIMA, K; TOZAWA, H; MARUYAMA, M et al.Physica. C. Superconductivity. 2010, Vol 470, Num SUP1, issn 0921-4534, S26-S28Conference Paper

Stability of reactively sputtered silver oxide filmsPIERSON, J. F; ROUSSELOT, C.Surface & coatings technology. 2005, Vol 200, Num 1-4, pp 276-279, issn 0257-8972, 4 p.Conference Paper

One-step/one-pot decoration of oxide microparticles with silver nanoparticlesMACCHIONE, Micaela A; DOUGLAS-GALLARDO, Oscar A; CORONADO, Eduardo A et al.Journal of colloid and interface science. 2014, Num 428, pp 32-35, issn 0021-9797, 4 p.Article

Low-current resistance spot welding of pure copper using silver oxide pasteSUZUKI, Yuichiro; OGURA, Tomo; TAKAHASHI, Makoto et al.Materials characterization. 2014, Vol 98, pp 186-192, issn 1044-5803, 7 p.Article

Decomposition of ozone on Ag/SiO2 catalyst for abatement of waste gases emissionsNAYDENOV, A; KONOVA, P; NIKOLOV, Pen et al.Catalysis today. 2008, Vol 137, Num 2-4, pp 471-474, issn 0920-5861, 4 p.Conference Paper

Controllable low energy ion assistance as a tool for tailoring properties of gold oxide and gold―silver oxide thin filmsPASCOVA, Radost; KOURTEV, Jordan.Thin solid films. 2011, Vol 519, Num 11, pp 3448-3456, issn 0040-6090, 9 p.Article

Superconducting State of Silver-Oxide Clathrate Ag6O8AgNO3KAWASHIMA, Kenji; ISHII, Masaru; OKABE, Hirotaka et al.Journal of the Physical Society of Japan. 2008, Vol 77, Num 2, issn 0031-9015, 024707.1-027707.5Article

Hydrometallurgical recovery of silver from waste silver oxide button cellsSATHAIYAN, N; NANDAKUMAR, V; RAMACHANDRAN, P et al.Journal of power sources. 2006, Vol 161, Num 2, pp 1463-1468, issn 0378-7753, 6 p.Article

Determination of state-of-discharge of zinc-silver oxide button cells. III: In situ impedance measurements of each electrodeRANDIN, J.-P.Journal of applied electrochemistry. 1985, Vol 15, Num 4, pp 591-601, issn 0021-891XArticle

Silver recovery from spent silver oxide button cellsAKTAS, Serdar.Hydrometallurgy (Amsterdam). 2010, Vol 104, Num 1, pp 106-111, issn 0304-386X, 6 p.Article

Oxygen adsorption on silver in polyfluorocarbon sulfonic acid (Nafion) filmsCHRYSSIKOS, G. D; MATTERA, V. D. JR; RISEN, W. M. JR et al.Journal of catalysis (Print). 1985, Vol 93, Num 2, pp 430-441, issn 0021-9517Article

PHASE TRANSITIONS IN AG2O TO 39 KBAR.KLEMENT W JR.1977; PHYS. STATUS SOLIDI, A; ALLEM.; DA. 1977; VOL. 39; NO 1; PP. K45-K48; BIBL. 7 REF.Article

UBER DIE SILBERTEILSTRUKTUREN IN SILBERREICHEN OXIDEN = STRUCTURE PARTIELLE DE L'ARGENT DANS LES OXYDES RICHES EN ARGENTJANSEN M.1980; J. LESS-COMMON MET.; ISSN 0022-5088; CHE; DA. 1980; VOL. 76; PP. 285-292; ABS. ENG; BIBL. 45 REF.Article

SYNTHESIS OF DIMETHYL ETHERS OF ALPHA ,ALPHA -TREHALOSE.CHEANG KUAN LEE; LINDLEY MG.1978; CARBOHYD. RES.; NETHERL.; DA. 1978; VOL. 63; PP. 277-282; BIBL. 11 REF.Article

THE EFFECT OF REDUCING GASES ON THE CONDUCTIVITIES OF METAL OXIDE SEMICONDUCTORSYAMAMOTO N; TONOMURA S; MATSUOKA T et al.1981; JPN. J. APPL. PHYS.; ISSN 0021-4922; JPN; DA. 1981; VOL. 20; NO 4; PP. 721-726; BIBL. 19 REF.Article

X-RAY CRYSTAL STRUCTURE OF AG6O2BEESK W; JONES PG; RUMPEL H et al.1981; J. CHEM. SOC., CHEM. COMMUN.; ISSN 0022-4936; GBR; DA. 1981; NO 14; PP. 664-665; BIBL. 6 REF.Article

ETUDE CHROMATOGRAPHIQUE DE LA REACTION DE L'OXYGENE ET DU DIOXYDE DE CARBONE AVEC UN CATALYSEUR D'ARGENTVALITOV N KH; IBRAGIMOV F KH; LYSIKOV VI et al.1976; ZH. FIZ. KHIM.; S.S.S.R.; DA. 1976; VOL. 50; NO 12; PP. 3160-3163; BIBL. 8 REF.Article

Photoluminescence of reactively sputtered Ag2O filmsLUND, Esben; GALECKAS, Augustinas; AZAROV, Alexander et al.Thin solid films. 2013, Vol 536, pp 156-159, issn 0040-6090, 4 p.Article

Thermodynamic properties of the clathrate-type silver-oxide Ag6O8AgHF2KAWASHIMA, K; KRIENER, M; ISHII, M et al.Physica. C. Superconductivity. 2008, Vol 468, Num 6, pp 464-470, issn 0921-4534, 7 p.Article

Reduction of chloride matrix effect using silver oxide as a precipitating reagent for the determination of trace anions in chloride-rich samples via ion chromatographyFU HOUTUN; CHUNCHENG, Huang John; ZHAO LIMIN et al.Journal of separation science. 2007, Vol 30, Num 5, pp 693-698, issn 1615-9306, 6 p.Article

Neues ökonomisches Verfahren zur Herstellung von Silber(I,III)-oxid AgO = A new economical process for the preparation of silver(I,III) oxide, AgOKIELHORN, S; BUSS, D. H; GLEMSER, O et al.Angewandte Chemie. 1991, Vol 103, Num 8, pp 1017-1018, issn 0044-8249Article

Decomposition kinetics of AgO cathode material by thermogravimetryDALLEK, S; WEST, W. A; LARRICK, B. F et al.Journal of the Electrochemical Society. 1986, Vol 133, Num 12, pp 2451-2454, issn 0013-4651Article

Superconductivity in clathrate-type silver oxides : Ag6O8MX (M = cation, X = anion)KAWASHIMA, K; ISHII, M; DATE, S et al.Physica. C. Superconductivity. 2007, Vol 460-462, Num 1, pp 542-543, issn 0921-4534, 2 p.Conference Paper

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