Mostrando 1,301 - 1,320 Resultados de 24,065 Para Buscar '".pt"', tiempo de consulta: 0.46s Limitar resultados
  1. 1301
    “…[Image: see text] A detailed velocity-resolved kinetics study of NH(3) thermal desorption rates from p(2 × 2) O/Pt(111) is presented. We find a large reduction in the NH(3) desorption rate due to adsorption of O-atoms on Pt(111). …”
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  2. 1302
    “…Herein, we report the synthesis and characterization of amorphous silica-supported Pt nanoparticles from (cod)Pt–disilicate complex (cod = 1,5-cyclooctadiene), which forms bis-grafted surface Pt species regardless of surface heterogeneity. …”
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  3. 1303
    “…When the mass ratio of PVP and Pt was 50:1 and the molar ratio of glycine and Pt was 24:1, Pt nanocatalysts with {310}, {520} and {830} high exponential facets were prepared. …”
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  4. 1304
    “…Record-breaking magnetic exchange interactions have previously been reported for 3d-metal dimers of the form [M(Pt(SAc)(4))(pyNO(2))](2) (M = Ni or Co) that are linked in the solid state via metallophilic PtPt bridges. …”
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  5. 1305
    “…Nanorod-supported (Pt–Pd)/CeO(2) catalysts were synthesized by a simple method of dealloying Al(91.7)Ce(8) Pt(X)Pd(0.3−X) (X = 0, 0.075, 0.1, 0.15, 0.2, 0.3) alloy ribbons. …”
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  6. 1306
    “…Dissecting how Pt effector proteins interact with wheat has great significance in understanding the pathogenicity mechanisms of Pt. …”
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  7. 1307
    “…However, the practical applications of PEMFCs have been seriously hindered by the intermediates (especially CO) poisoning of anodic Pt catalysts. Hence, how to improve the CO tolerance of the needed Pt catalysts and reveal their anti-CO poisoning mechanism are the key points to developing novel anti-toxic Pt-based electrocatalysts. …”
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  8. 1308
    “…The DA-PPI nanozyme was obtained by depositing high-affinity element iridium (Ir) on the surface of Pd-Pt dendritic structures. The morphology and composition of DA-PPI nanozyme were characterized using SEM, TEM, and XPS. …”
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  9. 1309
    “…The CO sensing properties of a micro thermoelectric gas sensor (micro-TGS) with a double AuPtPd/SnO(2) and Pt/α-Al(2)O(3) catalyst were investigated. …”
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  10. 1310
    por Johnstone, P. T.
    Publicado 1987
    Libro
  11. 1311
    “…The incorporation of hydrophobic hydrocarbon chains has been shown to play an important role in assisting the formation of self-assembled nanostructures via Pt···Pt, π–π stacking and hydrophobic–hydrophobic interactions. …”
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  12. 1312
  13. 1313
  14. 1314
  15. 1315
    por Romano, Marino
    Publicado 2009
    “…This thesis is about the research for Supersymmetry at the LHC in pp collisions at the energy of 14 TeV in the center of mass frame, using events with two high pt jets and missing transverse energy. The goal of this thesis is to find a subset of the mSUGRA parameter space where it is possible to achieve a good signal to background discrimination.…”
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  16. 1316
  17. 1317
  18. 1318
    por Adolph, C., Alekseev, M.G., Alexakhin, V.Yu., Alexandrov, Yu., Alexeev, G.D., Amoroso, A., Antonov, A.A., Austregesilo, A., Badelek, B., Balestra, F., Barth, J., Baum, G., Bedfer, Y., Bernhard, J., Bertini, R., Bettinelli, M., Bicker, K., Bieling, J., Birsa, R., Bisplinghoff, J., Bordalo, P., Bradamante, F., Braun, C., Bravar, A., Bressan, A., Burtin, E., Chaberny, D., Chiosso, M., Chung, S.U., Cicuttin, A., Crespo, M.L., Dalla Torre, S., Das, S., Dasgupta, S.S., Denisov, O.Yu., Dhara, L., Donskov, S.V., Doshita, N., Duic, V., Dunnweber, W., Dziewiecki, M., Efremov, A., Elia, C., Eversheim, P.D., Eyrich, W., Faessler, M., Ferrero, A., Filin, A., Finger, M., Finger, Michael, Jr., Fischer, H., Franco, C., von Hohenesche, N.du Fresne, Friedrich, J.M., Garfagnini, R., Gautheron, F., Gavrichtchouk, O.P., Gazda, R., Gerassimov, S., Geyer, R., Giorgi, M., Gnesi, I., Gobbo, B., Goertz, S., Grabmuller, S., Grasso, A., Grube, B., Gushterski, R., Guskov, A., Guthorl, T., Haas, F., von Harrach, D., Hedicke, S., Heinsius, F.H., Herrmann, F., Hess, C., Hinterberger, F., Horikawa, N., Hoppner, Ch., d'Hose, N., Huber, S., Ishimoto, S., Ivanov, O., Ivanshin, Yu., Iwata, T., Jahn, R., Jasinski, P., Joosten, R., Kabuss, E., Kang, D., Ketzer, B., Khaustov, G.V., Khokhlov, Yu.A., Kisselev, Yu., Klein, F., Klimaszewski, K., Koblitz, S., Koivuniemi, J.H., Kolosov, V.N., Kondo, K., Konigsmann, K., Konorov, I., Konstantinov, V.F., Korzenev, A., Kotzinian, A.M., Kouznetsov, O., Kramer, M., Kroumchtein, Z.V., Kunne, F., Kurek, K., Lauser, L., Le Goff, J.M., Lednev, A.A., Lehmann, A., Levorato, S., Lichtenstadt, J., Maggiora, A., Magnon, A., Makke, N., Mallot, G.K., Mann, A., Marchand, C., Martin, A., Marzec, J., Matsuda, T., Meyer, W., Michigami, T., Mikhailov, Yu.V., Moinester, M.A., Morreale, A., Mutter, A., Nagaytsev, A., Nagel, T., Nassalski, J.P., Nerling, F., Neubert, S., Neyret, D., Nikolaenko, V.I., Nowak, W.D., Nunes, A.S., Olshevsky, A.G., Ostrick, M., Padee, A., Panknin, R., Panzieri, D., Parsamyan, B., Paul, S., Perevalova, E., Pesaro, G., Peshekhonov, D.V., Piragino, G., Platchkov, S., Pochodzalla, J., Polak, J., Polyakov, V.A., Pontecorvo, G., Pretz, J., Procureur, S.L., Quaresma, M., Quintans, C., Rajotte, J.F., Ramos, S., Rapatsky, V., Reicherz, G., Richter, A., Rocco, E., Rondio, E., Rossiyskaya, N.S., Ryabchikov, D.I., Samoylenko, V.D., Sandacz, A., Sapozhnikov, M.G., Sarkar, S., Savin, I.A., Sbrizzai, G., Schiavon, P., Schill, C., Schluter, T., Schmidt, K., Schmitt, L., Schonning, K., Schopferer, S., Schott, M., Shevchenko, O.Yu., Silva, L., Sinha, L., Sissakian, A.N., Slunecka, M., Smirnov, G.I., Sosio, S., Sozzi, F., Srnka, A., Stolarski, M., Sulc, M., Sulej, R., Sznajder, P., Takekawa, S., Wolbeek, J.Ter, Tessaro, S., Tessarotto, F., Tkatchev, L.G., Uhl, S., Uman, I., Vandenbroucke, M., Virius, M., Vlassov, N.V., Wang, L., Windmolders, R., Wislicki, W., Wollny, H., Zaremba, K., Zavertyaev, M., Zemlyanichkina, E., Ziembicki, M., Zhuravlev, N., Zvyagin, A.
    Publicado 2012
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  19. 1319
    por Li, Wei
    Publicado 2012
    “…We discuss recent results of the CMS experiment on high-pT di-hadron and jet-hadron correlations in PbPb collisions. …”
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  20. 1320
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