Academic literature on the topic 'Palladium Nanopartikel'

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Journal articles on the topic "Palladium Nanopartikel"

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Desportes, S., B. Tidona, and P. Rudolf von Rohr. "Palladium-Nanopartikel-Synthese in einem Zweiphasen- Mikroreaktor und im überkritischen Zustand." Chemie Ingenieur Technik 82, no. 9 (2010): 1318. http://dx.doi.org/10.1002/cite.201050303.

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Marhaba, Salem, and Samaya El Samad. "Plasmonic Coupling of One-Dimensional Palladium Nanoparticle Chains." Nano 15, no. 05 (2020): 2050060. http://dx.doi.org/10.1142/s1793292020500605.

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In this paper, we investigate the plasmonic coupling effects on the localized surface plasmon resonances (LSPRs) of palladium nanoparticle chains. We show the transmission electron microscopy (TEM) images and the extinction cross-section spectra of near-contact palladium nanoparticle chains from monomer to pentamer. The extinction spectra of chains nanoparticles were measured by far-field polarization spectroscopy over a large spectral range (ultraviolet, visible and near-infrared) and compared with numerical calculations based on finite element method (FEM). For single palladium nanoparticle,
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Houk, Amanda L., and Levi R. Houk. "Spectroscopy of Palladium Nanoparticle Synthesis: Tailoring Nanoparticle Growth Parameters for Hydrogen Storage." MRS Advances 5, no. 40-41 (2020): 2085–90. http://dx.doi.org/10.1557/adv.2020.228.

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ABSTRACTUsing palladium for hydrogen storage requires palladium (Pd) particles exhibiting specific parameters, including surface area, particle size, and particle shape, with increased interest in palladium nanoparticles (Pd NPs). In order to routinely monitor the synthesis of these particles a spectroscopic method is being developed using infrared (IR), Raman, and UV-Vis spectroscopy. By monitoring the production of Pd NPs, the growth of the NPs can be controlled to ensure quality of the product to match the desired finished particle specifications. For the reaction presented, the conversion
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Grzincic, Elissa, Ruishen Teh, Rachel Wallen, et al. "Synthesis of gold and palladium nanoshells by in situ generation of seeds on silica nanoparticle cores." RSC Adv. 4, no. 61 (2014): 32283–92. http://dx.doi.org/10.1039/c4ra05688d.

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Van Vaerenbergh, Beau, Jeroen Lauwaert, Pieter Vermeir, Joris W. Thybaut, and Jeriffa De Clercq. "Towards high-performance heterogeneous palladium nanoparticle catalysts for sustainable liquid-phase reactions." Reaction Chemistry & Engineering 5, no. 9 (2020): 1556–618. http://dx.doi.org/10.1039/d0re00197j.

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A walk-through of nanoparticle–reactant/product, nanoparticle–support and support–reactant/product interaction effects on the catalytic performance of heterogeneous palladium catalysts in liquid-phase reactions.
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Kitte, Addisu, Desalegn Assresahegn, and Refera Soreta. "Electrochemical determination of hydrogen peroxide at glassy carbon electrode modified with palladium nanoparticles." Journal of the Serbian Chemical Society 78, no. 5 (2013): 701–11. http://dx.doi.org/10.2298/jsc120619122k.

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We report here the modification of glassy carbon electrode (GCE) with palladium nanoparticles and palladium film. The response to hydrogen peroxide on the modified electrode was examined using cyclic voltammetry and amperometry (at -0.2 V vs Ag/AgCl reference electrode in the phosphate buffer solution pH 7.4). The palladium film and palladium nanoparticle modified GCE showed a linear response to hydrogen peroxide in the concentration range between 10 ?M to 14 mM and 1 ?M to 14 mM with detection limit of 6.79 ?M and 0.33 ?M, respectively.
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Peiris, Sunari, Sarina Sarina, Chenhui Han, Qi Xiao, and Huai-Yong Zhu. "Silver and palladium alloy nanoparticle catalysts: reductive coupling of nitrobenzene through light irradiation." Dalton Transactions 46, no. 32 (2017): 10665–72. http://dx.doi.org/10.1039/c7dt00418d.

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García-Calvo, José, Patricia Calvo-Gredilla, Saúl Vallejos, et al. "Palladium nanodendrites uniformly deposited on the surface of polymers as an efficient and recyclable catalyst for direct drug modification via Z-selective semihydrogenation of alkynes." Green Chemistry 20, no. 16 (2018): 3875–83. http://dx.doi.org/10.1039/c8gc01522h.

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Zhu, Jie S., and Young-Seok Shon. "Mechanistic interpretation of selective catalytic hydrogenation and isomerization of alkenes and dienes by ligand deactivated Pd nanoparticles." Nanoscale 7, no. 42 (2015): 17786–90. http://dx.doi.org/10.1039/c5nr05090a.

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Zeng, Fan W., Dajie Zhang, and James B. Spicer. "Palladium nanoparticle formation processes in fluoropolymers by thermal decomposition of organometallic precursors." Physical Chemistry Chemical Physics 20, no. 37 (2018): 24389–98. http://dx.doi.org/10.1039/c8cp04997a.

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Dissertations / Theses on the topic "Palladium Nanopartikel"

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Meusel, Ingo. "Aufbau einer Molekularstrahlapparatur für oberflächenkinetische Untersuchungen." [S.l.] : [s.n.], 2002. http://edocs.tu-berlin.de/diss/2002/meusel_ingo.pdf.

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Heel, Andre. "Integriertes Verfahren zur Funktionalisierung der Oberfläche von gasgetragenen Partikeln durch MOCVS, MOCVD und dessen Anwendung auf die Herstellung von Pd-SiO2-Katalysatoren." Karlsruhe : Univ.-Verl. Karlsruhe, 2006. http://www.uvka.de/univerlag/volltexte/2007/183/.

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Heel, Andre. "Integriertes Verfahren zur Funktionalisierung der Oberfläche von gasgetragenen Partikeln durch MOCVS, MOCVD und dessen Anwendung auf die Herstellung von Pd-SiO2-Katalysatoren." Karlsruhe Univ.-Verl. Karlsruhe, 2007. http://nbn-resolving.de/urn:nbn:de:0072-55238.

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Ulbrich, Till. "Co, Pd- und Co, Pt-Schichtsysteme auf Partikelmonolagen." Berlin dissertation.de, 2008. http://d-nb.info/989281876/04.

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Dietrich, Sascha. "(Metallo-)Dendrimers in Catalysis, Nanoparticle Stabilization and Biological Application." Doctoral thesis, Universitätsbibliothek Chemnitz, 2012. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-82016.

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(Metallo-)Dendrimers in Catalysis, Nanoparticle Stabilization and Biological Application Technische Universität Chemnitz, Fakultät für Naturwissenschaften Dissertation 2011, 165 Seiten Die vorliegende Dissertationsschrift befasst sich mit der Darstellung, Charakterisierung und Anwendung neuartiger (Metallo-)Dendrimere. Den Schwerpunkt der Arbeit bildet dabei die terminale Funktionalisierung (Poly)amidoamin-basierender Dendrimere kleiner Generationen. Durch Standardpeptid-Knüpfungsreaktionen von 1,1´-(Diphenylphosphino)ferrocen-carbonsäure an dendritische (Poly)amidoamine ist eine Serie ent
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Assim, Khaybar. "Synthese und Charakterisierung von Übergangsmetallkomplexen zur Herstellung von nanostrukturierten Materialien." Doctoral thesis, Universitätsbibliothek Chemnitz, 2017. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-224679.

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Die vorliegende Dissertation beschäftigt sich mit der Synthese und Charakterisierung von Übergangsmetallkomplexen und deren Anwendungen in der MOCVD (= metal-organic chemical vapor deposition), sowie als Precursoren zur Darstellung von Nanopartikeln und Nanokompositen. Ein Schwerpunkt dieser wissenschaftlichen Arbeit liegt dabei in der Entwicklung von Me-, tBu- und SiMe3-substituierten Manganhalbsandwichkomplexen für die Generierung dünner Mangan-basierter Schichten mittels MOCVD-Technik. Die gezielte strukturelle Veränderung des Cyclopentadienyl-Liganden beeinflusst die physikalischen und ch
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Ziegler, Christoph. "Syntheses and Assemblies of Noble Metal Nanostructures." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2013. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-101781.

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Shape and size control as well as the control of the assembly of nanostructures are current challenges in nano sciences. Focussing on metal nanostructures all of these aspects have been addressed in the frame of the present work. It was possible to develop a new aqueous seeded growth method that produces gold nanoparticles with adjustable diameters over a large range of sizes. The spherical particles obtained show very low polydispersities and a good long term stability. Furthermore it was possible to reveal the growth mechanism of these particles utilizing electron microscopy and optical inve
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Patil, Pratap Tukaram. "Nanoscopic metal fluoride based novel solid catalysts." Doctoral thesis, Humboldt-Universität zu Berlin, Mathematisch-Naturwissenschaftliche Fakultät I, 2009. http://dx.doi.org/10.18452/16021.

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Metallfluoride sind dank ihrer hohen chemischen und thermischen Stabilität, insbesondere bei Reaktionen unter Beteiligung von hoch korrosiven Gasen (HF, HCl, Cl2, F2) den entsprechenden Oxiden überlegen. Über den Sol-Gel Prozess synthetisierte Produkte weisen oft spezifische, zum Teil sehr unterschiedliche Eigenschaften im Vergleich zu klassisch hergestellten Verbindungen auf. In dieser Arbeit wurde der Sol-Gel Prozess zur Herstellung von binären Fluoriden (AlF3, MgF2, CaF2, CuF2 und FeF3) genutzt und zum Teil weiter entwickelt sowie das Synthesepotential dieser Methode als Zugang für komplex
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Rose, Marcus, Andreas Notzon, Maja Heitbaum, et al. "N-Heterocyclic carbene containing element organic frameworks as heterogeneous organocatalysts." Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2014. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-138636.

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A bifunctional imidazolium linker was used for the production of highly crosslinked element organic frameworks by Suzuki-coupling with tetrafunctional boronic acids. The resulting porous materials are good heterogeneous organocatalysts in the N-heterocyclic carbene-catalyzed conjugated umpolung of α,β-unsaturated cinnamaldehyde<br>Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich
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Rose, Marcus, Andreas Notzon, Maja Heitbaum, et al. "N-Heterocyclic carbene containing element organic frameworks as heterogeneous organocatalysts." Royal Society of Chemistry, 2011. https://tud.qucosa.de/id/qucosa%3A27766.

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A bifunctional imidazolium linker was used for the production of highly crosslinked element organic frameworks by Suzuki-coupling with tetrafunctional boronic acids. The resulting porous materials are good heterogeneous organocatalysts in the N-heterocyclic carbene-catalyzed conjugated umpolung of α,β-unsaturated cinnamaldehyde.<br>Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich.
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Book chapters on the topic "Palladium Nanopartikel"

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Grigg, R., and V. Sridharan. "Isoindolones and Related N-Heterocycles Isoindolones and Related N-Heterocycles via Palladium Nanoparticle-Catalyzed 3-Component Cascade Reactions." In New Avenues to Efficient Chemical Synthesis. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/2789_2007_029.

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Fujishima, M., M. Yamauchi, R. Ikeda, T. Kubo, K. Nakasuji, and H. Kitagawa. "Powder XRD and Solid-State 2H-NMR Studies on RAP-Protected Palladium Nanoparticle (RAP = Rubeanic-Acid Polymer)." In Solid State Phenomena. Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/3-908451-18-3.107.

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Van Vaerenbergh, Beau, Jeroen Lauwaert, Pieter Vermeir, Jeriffa De Clercq, and Joris W. Thybaut. "Synthesis and support interaction effects on the palladium nanoparticle catalyst characteristics." In Advances in Catalysis. Elsevier, 2019. http://dx.doi.org/10.1016/bs.acat.2019.10.001.

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Conference papers on the topic "Palladium Nanopartikel"

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Xie, Bo, Linlin Liu, Yue Zhang, et al. "Dense palladium nanoparticle arrays with controlled coverage for fast hydrogen sensors." In 2011 IEEE International Conference on Nano/Micro Engineered and Molecular Systems (NEMS). IEEE, 2011. http://dx.doi.org/10.1109/nems.2011.6017286.

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Renjini, S., Pinky Abraham, T. Jyotish Kumar, V. Anitha Kumary, and P. G. Chithra. "Graphene oxide supported palladium nanoparticle as an electrochemical sensor for epinephrine." In PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS: ICAM 2019. AIP Publishing, 2019. http://dx.doi.org/10.1063/1.5130281.

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Xu, Dongsheng, Dan Zheng, Pengcheng Xu, Ying Chen, and Xinxin Li. "Synergistic Enhancement Effect of Palladium-Silver Alloy Nanoparticle Catalysts Towards High-Sensitive Hydrogen Detection." In 2019 20th International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII (TRANSDUCERS & EUROSENSORS XXXIII). IEEE, 2019. http://dx.doi.org/10.1109/transducers.2019.8808575.

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Kim, D., M. A. Lim, D. Yang, Z. Li, C. O. Park, and I. Park. "Ultra-sensitive, low-power and flexible H2S sensors based on palladium nanoparticle-coated metal oxide nanowires." In 2012 IEEE 25th International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2012. http://dx.doi.org/10.1109/memsys.2012.6170422.

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Arouca, Aline M., Alexandre Umpierre, Giovanna Machado, and Brenno A. D. Neto. "Palladium nanoparticle catalysts in ionic liquids: synthesis, characterisation and hydrogenation of alkenes with an ionically-tagged ligand." In 14th Brazilian Meeting on Organic Synthesis. Editora Edgard Blücher, 2013. http://dx.doi.org/10.5151/chempro-14bmos-r0016-1.

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