Articoli di riviste sul tema "Pt"

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1

Irikura, Karl K. "Polarizability of atomic Pt, Pt+, and Pt−". Journal of Chemical Physics 154, n. 17 (7 maggio 2021): 174302. http://dx.doi.org/10.1063/5.0044996.

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Hwang, Gui-Sung, e Rhim-Youl Lee. "Characteristics of Pt, Pt-Ru and Pt-CeO2Catalysts Supported on Carbon Nanotubes for Methanol Fuel Cell". Korean Journal of Materials Research 21, n. 3 (27 marzo 2011): 138–43. http://dx.doi.org/10.3740/mrsk.2011.21.3.138.

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3

Chen, Sinn-wen, e Shyh-jye Luo. "Interfacial Reactions in Pt/Ti, Pt/Zr, Pt/TiO2, and Pt/ZrO2Couples". Industrial & Engineering Chemistry Research 39, n. 2 (febbraio 2000): 547–49. http://dx.doi.org/10.1021/ie990463h.

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4

Baddour, Frederick G., Stephanie R. Fiedler, Matthew P. Shores, Jeffrey W. Bacon, James A. Golen, Arnold L. Rheingold e Linda H. Doerrer. "Pt···Pt vs Pt···S Contacts Between Pt-Containing Heterobimetallic Lantern Complexes". Inorganic Chemistry 52, n. 23 (19 novembre 2013): 13562–75. http://dx.doi.org/10.1021/ic402075y.

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5

Sun, Shi-Gang, e Yan Lin. "Kinetics of isopropanol oxidation on Pt(111), Pt(110), Pt(100), Pt(610) and Pt(211) single crystal electrodes -". Electrochimica Acta 44, n. 6-7 (novembre 1998): 1153–62. http://dx.doi.org/10.1016/s0013-4686(98)00218-7.

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6

Ongrai, O., J. V. Pearce, G. Machin e S. J. Sweeney. "Comparative Study of Pt/Pd and Pt–Rh/Pt Thermocouples". International Journal of Thermophysics 31, n. 8-9 (13 luglio 2010): 1506–16. http://dx.doi.org/10.1007/s10765-010-0782-0.

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7

Forniés, Juan, Ana García, Julio Gómez, Elena Lalinde e M. Teresa Moreno. "Synthesis of Pt(II)−Pt(II) and Pt/Pd(II)−Pt(0) Monoalkynylphosphine Bridging Complexes". Organometallics 21, n. 18 (settembre 2002): 3733–43. http://dx.doi.org/10.1021/om020374w.

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8

Ho, Patrick W. C., Firas Odai Hatem, Haider Abbas F. Almurib e T. Nandha Kumar. "Comparison between Pt/TiO2/Pt and Pt/TaOX/TaOY/Pt based bipolar resistive switching devices". Journal of Semiconductors 37, n. 6 (giugno 2016): 064001. http://dx.doi.org/10.1088/1674-4926/37/6/064001.

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9

Feibelman, Peter J., e Thomas Michely. "Pt-dimer dissociation on Pt(111)". Surface Science 492, n. 1-2 (ottobre 2001): L723—L728. http://dx.doi.org/10.1016/s0039-6028(01)01459-5.

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10

Sergeyev, D., e N. Zhanturina. "Simulation of Electrical Characteristics of Switching Nanostructures "Pt – TiO – Pt" and "Pt – NiO – Pt" with Memory". Radioengineering 28, n. 4 (13 dicembre 2019): 714–20. http://dx.doi.org/10.13164/re.2019.0714.

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11

Silva, Camila Daiane, Patricia Gon Corradini, Vinicius Del Colle, Lucia Helena Mascaro, Fabio Henrique Barros de Lima e Ernesto Chaves Pereira. "Pt/Rh/Pt and Pt/Ru/Pt multilayers for the electrochemical oxidation of methanol and ethanol". Electrochimica Acta 354 (settembre 2020): 136674. http://dx.doi.org/10.1016/j.electacta.2020.136674.

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12

Rodríguez, J., J. M. Salas, M. A. Romero, M. Quirós e R. Faure. "Monomeric Pt(II) and dimeric Pt-Pt and Pt-Pd complexes of a triazolo pyrimidine derivative". Journal of Inorganic Biochemistry 59, n. 2-3 (agosto 1995): 223. http://dx.doi.org/10.1016/0162-0134(95)97329-o.

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13

Sun, Shi-Gang, e Yi-Yun Yang. "Studies of kinetics of HCOOH oxidation on Pt(100), Pt(110), Pt(111), Pt(510) and Pt(911) single crystal electrodes". Journal of Electroanalytical Chemistry 467, n. 1-2 (giugno 1999): 121–31. http://dx.doi.org/10.1016/s0022-0728(99)00032-7.

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14

Vidya Wibowo, Sabrina, Edith Ratna M.S e Irma Cahyaningtyas. "Perjanjian Kerjasama Antara PT. Outsource Indonesia Dengan PT. Cobra Jaya Mandiri". Notarius 14, n. 1 (6 maggio 2021): 331–41. http://dx.doi.org/10.14710/nts.v14i1.38999.

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15

Kattel, Shyam, Binhang Yan, Jingguang G. Chen e Ping Liu. "CO2 hydrogenation on Pt, Pt/SiO2 and Pt/TiO2: Importance of synergy between Pt and oxide support". Journal of Catalysis 343 (novembre 2016): 115–26. http://dx.doi.org/10.1016/j.jcat.2015.12.019.

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16

Saito, N., B. Bassalleck, T. Bürger, M. Burger, R. Chrien, G. E. Diebold, H. En’yo et al. "Composite particle production in relativistic Au+Pt, Si+Pt, andp+Pt collisions". Physical Review C 49, n. 6 (1 giugno 1994): 3211–18. http://dx.doi.org/10.1103/physrevc.49.3211.

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17

Okuda, M., J.-C. Eloi, S. E. Ward Jones, M. Verwegen, J. J. L. M. Cornelissen e W. Schwarzacher. "Pt, Co–Pt and Fe–Pt alloy nanoclusters encapsulated in virus capsids". Nanotechnology 27, n. 9 (8 febbraio 2016): 095605. http://dx.doi.org/10.1088/0957-4484/27/9/095605.

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18

Ohara, Shuichiro, Koji Aizawa e Hiroshi Ishiwara. "Ferroelectric Properties of Pt/Pb5Ge3O11/Pt and Pt/Pb5Ge3O11/HfO2/Si Structures". Japanese Journal of Applied Physics 44, n. 9A (8 settembre 2005): 6644–47. http://dx.doi.org/10.1143/jjap.44.6644.

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19

Siadou, N., M. Androutsopoulos, I. Panagiotopoulos, L. Stoleriu, A. Stancu, T. Bakas e V. Alexandrakis. "Magnetization reversal in [Ni/Pt]6/Pt(x)/[Co/Pt]6 multilayers". Journal of Magnetism and Magnetic Materials 323, n. 12 (giugno 2011): 1671–77. http://dx.doi.org/10.1016/j.jmmm.2011.01.035.

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20

Gellman, Andrew J., L. Baker e B. S. Holsclaw. "Xe adsorption site distributions on Pt(111), Pt(221) and Pt(531)". Surface Science 646 (aprile 2016): 83–89. http://dx.doi.org/10.1016/j.susc.2015.10.062.

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21

Morimoto, Yu, e Ernest B. Yeager. "Comparison of methanol oxidations on Pt, Pt|Ru and Pt|Sn electrodes". Journal of Electroanalytical Chemistry 444, n. 1 (marzo 1998): 95–100. http://dx.doi.org/10.1016/s0022-0728(97)00563-9.

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22

Molina, J., J. Fernández, A. I. del Río, J. Bonastre e F. Cases. "Characterization of azo dyes on Pt and Pt/polyaniline/dispersed Pt electrodes". Applied Surface Science 258, n. 17 (giugno 2012): 6246–56. http://dx.doi.org/10.1016/j.apsusc.2012.02.150.

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23

Tang, Hairong, e Bernhardt L. Trout. "NO Chemisorption on Pt(111), Rh/Pt(111), and Pd/Pt(111)". Journal of Physical Chemistry B 109, n. 37 (settembre 2005): 17630–34. http://dx.doi.org/10.1021/jp052668b.

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24

Zezyulin, Dmitry A., e Vladimir V. Konotop. "Solitons in a Hamiltonian $\newcommand{\PT}{\mathcal{ PT}}{\boldsymbol \PT}$ -symmetric coupler". Journal of Physics A: Mathematical and Theoretical 51, n. 1 (7 dicembre 2017): 015206. http://dx.doi.org/10.1088/1751-8121/aa96f4.

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25

Ma, Zhijun, Tianjin Zhang, Ruikun Pan, Kun Liang, Duofa Wang, Jingang Wang, Jinzhao Wang, Juan Jiang, Yajun Qi e Huifang Chu. "Tunneling electroresistance effect in Pt/MgO/Pt/PbTiO3/Pt ferroelectric tunnel junctions". Applied Physics Letters 101, n. 2 (9 luglio 2012): 022906. http://dx.doi.org/10.1063/1.4734513.

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26

Sohlberg, Karl, Sergey Rashkeev, Albina Y. Borisevich, Stephen J. Pennycook e Sokrates T. Pantelides. "Origin of Anomalous Pt-Pt Distances in the Pt/Alumina Catalytic System". ChemPhysChem 5, n. 12 (17 dicembre 2004): 1893–97. http://dx.doi.org/10.1002/cphc.200400212.

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27

Passos, Fabio B., Martin Schmal e M. A. Vannice. "Ethylene Adsorption on Al2O3-Supported Pt, Pt–Sn, and Pt–In Catalysts". Journal of Catalysis 160, n. 1 (aprile 1996): 118–24. http://dx.doi.org/10.1006/jcat.1996.0129.

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28

Jeoung, Hana, Jong Nam Kim, Chung-Yul Yoo, Jong Hoon Joo, Ji Haeng Yu, Ki Chang Song, Monika Sharma e Hyung Chul Yoon. "Electrochemical Synthesis of Ammonia from Water and Nitrogen using a Pt/GDC/Pt Cell". Korean Chemical Engineering Research 52, n. 1 (1 febbraio 2014): 58–62. http://dx.doi.org/10.9713/kcer.2014.52.1.58.

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29

Demeulemeester, J., D. Smeets, C. Van Bockstael, C. Detavernier, C. M. Comrie, N. P. Barradas, A. Vieira e A. Vantomme. "Pt redistribution during Ni(Pt) silicide formation". Applied Physics Letters 93, n. 26 (29 dicembre 2008): 261912. http://dx.doi.org/10.1063/1.3058719.

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30

Shaw, T. M., R. B. Laibowitz, D. Beach e P. R. Duncombe. "The capacitance of Pt/Pb0.65La0.28Ti0.96O3/Pt structures". Applied Physics Letters 68, n. 21 (20 maggio 1996): 3043–45. http://dx.doi.org/10.1063/1.115571.

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31

Zhong, Ni, Hisashi Shima e Hiro Akinaga. "Switchable Pt/TiO2-x/Pt Schottky Diodes". Japanese Journal of Applied Physics 48, n. 5 (20 maggio 2009): 05DF03. http://dx.doi.org/10.1143/jjap.48.05df03.

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32

Feibelman, Peter J., J. S. Nelson e G. L. Kellogg. "Energetics of Pt adsorption on Pt(111)". Physical Review B 49, n. 15 (15 aprile 1994): 10548–56. http://dx.doi.org/10.1103/physrevb.49.10548.

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33

Kalaycı, Taner, Caner Deger, Salih Akbulut e Fikret Yildiz. "Tuning magnetic properties of non-collinear magnetization configuration in Pt/[Pt/Co] 6 /Pt/Co/Pt multilayer structure". Journal of Magnetism and Magnetic Materials 436 (agosto 2017): 11–16. http://dx.doi.org/10.1016/j.jmmm.2017.04.008.

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34

Judd, Robert W., Melanie A. Reichelt e Richard M. Lambert. "Carbon monoxide chemisorption on Pt-dosed W(100): Pt strained overlayers, Pt crystallites and W/Pt surface alloys". Surface Science 198, n. 1-2 (gennaio 1988): 26–41. http://dx.doi.org/10.1016/0039-6028(88)90470-0.

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35

Mergler, Y. J., A. van Aalst, J. van Delft e B. E. Nieuwenhuys. "Promoted Pt Catalysts for Automotive Pollution Control: Characterization of Pt/SiO2, Pt/CoOx/SiO2, and Pt/MnOx/SiO2Catalysts". Journal of Catalysis 161, n. 1 (giugno 1996): 310–18. http://dx.doi.org/10.1006/jcat.1996.0189.

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36

Poh, Chee Kok, Zhiqun Tian, Jiajian Gao, Zhaolin Liu, Jianyi Lin, Yuan Ping Feng e Fabing Su. "Nanostructured trimetallic Pt/FeRuC, Pt/NiRuC, and Pt/CoRuC catalysts for methanol electrooxidation". Journal of Materials Chemistry 22, n. 27 (2012): 13643. http://dx.doi.org/10.1039/c2jm31956j.

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37

Ze, Jia, Ren Tian-Ling, Liu Tian-Zhi, Hu Hong, Zhang Zhi-Gang, Xie Dan e Liu Li-Tian. "Comparison of Properties of Pt/PZT/Pt and Ru/PZT/Pt Ferroelectric Capacitors". Chinese Physics Letters 23, n. 4 (30 marzo 2006): 1042–45. http://dx.doi.org/10.1088/0256-307x/23/4/078.

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38

Hu, Xi, Fangyuan Li, Nabila Noor e Daishun Ling. "Platinum drugs: from Pt(II) compounds, Pt(IV) prodrugs, to Pt nanocrystals/nanoclusters". Science Bulletin 62, n. 8 (aprile 2017): 589–96. http://dx.doi.org/10.1016/j.scib.2017.03.008.

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39

Jenkins, S. J., M. A. Petersen e D. A. King. "Comparative theory of missing-row reconstructions: Pt{110}, Pt{211} and Pt{311}". Surface Science 494, n. 3 (dicembre 2001): 159–65. http://dx.doi.org/10.1016/s0039-6028(01)01488-1.

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40

Hada, M., H. Nakatsuji, H. Nakai, S. Gyobu e S. Miki. "Theoretical study on the methane activation reactions by Pt, Pt+, and Pt− atoms". Journal of Molecular Structure: THEOCHEM 281, n. 2-3 (aprile 1993): 207–12. http://dx.doi.org/10.1016/0166-1280(93)87076-p.

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41

Besson, M., G. Flèche, P. Fuertes, P. Gallezot e F. Lahmer. "Oxidation of glucose and gluconate on Pt, Pt Bi, and Pt Au catalysts". Recueil des Travaux Chimiques des Pays-Bas 115, n. 4 (1996): 217–21. http://dx.doi.org/10.1002/recl.19961150405.

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42

Raharjanti, Amalia. "Mean-Variance Investment Without Risk-Free Assets in PT Company Shares PT Ace Hardware (Aces.Jk), PT Mayora Indah (Myor.Jk), PT Bri (Bbri.Jk), PT Siloam Hospital (Silo.Jk), PT Eterindo Wahanatama (Etwa.Jk)". Operations Research: International Conference Series 4, n. 3 (6 settembre 2023): 105–8. http://dx.doi.org/10.47194/orics.v4i3.251.

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Abstract (sommario):
Portfolio is a form of strategy that investors often apply in risky investment conditions. The essence of portfolio construction is to allocate funds to various investment options to minimize investment risk. Therefore, the aim of this discussion is to construct an investment portfolio of several shares using an average variable portfolio optimization model without risk-free assets. To obtain an optimal portfolio, a mean-variance investment optimization model without risk-free assets or what is called the Basic Markowitz model is used. This involves investors measuring the risk of an asset using its “variance” and then comparing it to the asset's average. It is hoped that this discussion can help investors to obtain an optimal portfolio, especially from the five selected shares.
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43

Nascimento Silva, Rudyere, Leandro Aparecido Pocrifka e Raimundo Ribeiro Passos. "Obtaining SnO2@Pt/C, Ni@Pt/C and NiSn@Pt/C for Application in the Electrocatalyst of Oxygen Reduction Reaction". Revista Virtual de Química 11, n. 6 (2019): 1920–33. http://dx.doi.org/10.21577/1984-6835.20190134.

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44

Zyablovsky, A. A., Aleksei P. Vinogradov, Aleksandr A. Pukhov, A. V. Dorofeenko e A. A. Lisyansky. "PT-symmetry in optics". Uspekhi Fizicheskih Nauk 184, n. 11 (2014): 1177–98. http://dx.doi.org/10.3367/ufnr.0184.201411b.1177.

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45

Kulkarni, P. "Oligomerization pathways of dichlorodifluoromethane hydrodechlorination catalyzed by activated carbon supported Pt-Cu, Pt-Ag, Pt-Fe, and Pt-Co". Applied Catalysis B: Environmental 36, n. 4 (28 marzo 2002): 299–309. http://dx.doi.org/10.1016/s0926-3373(01)00288-0.

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46

Gyenge, Előd, Mohammed Atwan e Derek Northwood. "Electrocatalysis of Borohydride Oxidation on Colloidal Pt and Pt-Alloys (Pt-Ir, Pt-Ni, and Pt-Au) and Application for Direct Borohydride Fuel Cell Anodes". Journal of The Electrochemical Society 153, n. 1 (2006): A150. http://dx.doi.org/10.1149/1.2131831.

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47

Poater, Albert, Silvia Moradell, Elena Pinilla, Jordi Poater, Miquel Solà, M. Ángeles Martínez e Antoni Llobet. "A trinuclear Pt(ii) compound with short Pt–Pt–Pt contacts. An analysis of the influence of π–π stacking interactions on the strength and length of the Pt–Pt bond". Dalton Trans., n. 9 (2006): 1188–96. http://dx.doi.org/10.1039/b511625m.

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48

Bick, Eckhard. "PFN-PT". Domínios de Lingu@gem 16, n. 4 (12 settembre 2022): 1401–35. http://dx.doi.org/10.14393/dl52-v16n4a2022-7.

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Abstract (sommario):
This article presents PFN-PT, a robust system for the automatic semantic annotation of Portuguese, consisting of a new, parsing-oriented framenet and a rule-based frame- and role-tagger. The framenet provides almost 13,000 valency frames covering 7,300 verb lemmas with 10,700 senses. Frame and role tagging is achieved by iterated matching of syntactic structures and semantic noun types with slot-filler conditions in the framenet. We discuss design principles and present frame and role statistics. In an evaluation run on news data, the system achieved an overall F-score of 92.2% for frame senses.
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49

Donovan, Nancy C. "Reality PT". Journal of Womenʼs Health Physical Therapy 36, n. 1 (2012): 1–2. http://dx.doi.org/10.1097/jwh.0b013e31824e0a06.

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50

Bennett, Christopher L., e Richard R. McNeer. "PT-SAFE". Anesthesia & Analgesia 114, n. 3 (marzo 2012): 576–83. http://dx.doi.org/10.1213/ane.0b013e3182456963.

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