Dimension Control of Platinum Nanostructures by Atomic Layer Deposition: From Surface Chemical Reactions to Applications
暂无分享,去创建一个
[1] Ming Li,et al. Nanostructuring Pt‐Pd Bimetallic Electrocatalysts for CO2 Reduction Using Atmospheric Pressure Atomic Layer Deposition , 2022, ChemCatChem.
[2] Se‐Hun Kwon,et al. In Situ Engineering of a Metal Oxide Protective Layer into Pt/Carbon Fuel-Cell Catalysts by Atomic Layer Deposition , 2022, Chemistry of Materials.
[3] Scott A. Mauger,et al. Optimization of Extended-Surface PtNi Nanowire Oxygen Reduction Electrocatalysts Produced via Atomic Layer Deposition , 2022, ACS Applied Energy Materials.
[4] Yong Qin,et al. Porous titania nanotube confined ultrafine platinum catalysts synthesized by atomic layer deposition with enhanced hydrolytic dehydrogenation performance , 2022, Applied Catalysis B: Environmental.
[5] Se‐Hun Kwon,et al. Atomic Layer Deposition Enabled PtNi Alloy Catalysts for Accelerated Fuel-Cell Oxygen Reduction Activity and Stability , 2022, Chemical Engineering Journal.
[6] W. Kessels,et al. Surface Chemistry during Atomic Layer Deposition of Pt Studied with Vibrational Sum-Frequency Generation , 2022, The journal of physical chemistry. C, Nanomaterials and interfaces.
[7] C. Detavernier,et al. Selective Vapor-Phase Doping of Pt Nanoparticles into Phase-Controlled Nanoalloys , 2022, The Journal of Physical Chemistry C.
[8] Jongbaeg Kim,et al. Atomic layer deposited Pt nanoparticles on functionalized MoS2 as highly sensitive H2 sensor , 2022, Applied Surface Science.
[9] K. Catchpole,et al. Recent Advances in Materials Design Using Atomic Layer Deposition for Energy Applications , 2021, Advanced Functional Materials.
[10] Amit Kumar Sharma,et al. Hybrid hierarchical nanolattices with porous platinum coating , 2021, Acta Materialia.
[11] Cuncheng Li,et al. Deposition of Pt clusters onto MOFs-derived CeO2 by ALD for selective hydrogenation of furfural , 2021, Fuel.
[12] Jing Liu,et al. Study of Pt growth on Si, Al2O3, Au, and Ni surfaces by plasma enhanced atomic layer deposition , 2021, Journal of Applied Physics.
[13] Yun Chen,et al. Coating internal surface of porous electrode for decreasing the ohmic resistance and shifting oxygen reduction reaction pathways in solid oxide fuel cells , 2021, Journal of Power Sources.
[14] Junling Lu,et al. Single-Atom Catalysts Designed and Prepared by the Atomic Layer Deposition Technique , 2021 .
[15] J. Mueller,et al. Direct Integration of Strained‐Pt Catalysts into Proton‐Exchange‐Membrane Fuel Cells with Atomic Layer Deposition , 2021, Advanced materials.
[16] K. K. Toudahl,et al. Is There Anything Better than Pt for HER? , 2021, ACS energy letters.
[17] K. Cao,et al. Bifunctionally faceted Pt/Ru nanoparticles for preferential oxidation of CO in H2 , 2021 .
[18] F. Prinz,et al. Bottom-Up Fabrication of Oxygen Reduction Electrodes with Atomic Layer Deposition for High-Power-Density PEMFCs , 2021 .
[19] Shahid Zaman,et al. Advanced Platinum-Based Oxygen Reduction Electrocatalysts for Fuel Cells. , 2021, Accounts of chemical research.
[20] Xinggui Zhou,et al. Platelet carbon nanofibers as support of Pt-CoO electrocatalyst for superior hydrogen evolution , 2021, Journal of Energy Chemistry.
[21] S. Han,et al. Ultralow Loading (Single‐Atom and Clusters) of the Pt Catalyst by Atomic Layer Deposition Using Dimethyl ((3,4‐η) N,N‐dimethyl‐3‐butene‐1‐amine‐N) Platinum (DDAP) on the High‐Surface‐Area Substrate for Hydrogen Evolution Reaction , 2020, Advanced Materials Interfaces.
[22] S. Bent,et al. Atomic Layer Deposition of Pt on the Surface Deactivated by Fluorocarbon Implantation: Investigation of the Growth Mechanism , 2020 .
[23] C. Detavernier,et al. Controlled synthesis of Fe–Pt nanoalloys using atomic layer deposition , 2020, Nanotechnology.
[24] Jun Luo,et al. Atomic Design and Fine-Tuning of Subnanometric Pt Catalysts to Tame Hydrogen Generation , 2020, ACS Catalysis.
[25] R. Li,et al. Engineering the Low Coordinated Pt Single Atom to Achieve the Superior Electrocatalytic Performance toward Oxygen Reduction. , 2020, Small.
[26] Xiao Liu,et al. Activation of subnanometric Pt on Cu-modified CeO2 via redox-coupled atomic layer deposition for CO oxidation , 2020, Nature Communications.
[27] M. Beller,et al. Recent Advances in Catalytic Hydrosilylations: Developments beyond Traditional Platinum Catalysts , 2020, Angewandte Chemie.
[28] Chang Min Kim,et al. Synthesis of highly dispersed Pt nanoparticles into carbon supports by fluidized bed reactor atomic layer deposition to boost PEMFC performance , 2020, NPG Asia Materials.
[29] Xinggui Zhou,et al. Crucial size effects of atomic-layer-deposited Pt catalysts on methanol electrooxidation , 2020 .
[30] S. Han,et al. Atomic layer deposition of high-quality Pt thin film as an alternative interconnect replacing Cu , 2020 .
[31] Wei Liu,et al. Uncovering near-free platinum single-atom dynamics during electrochemical hydrogen evolution reaction , 2020, Nature Communications.
[32] Ki-Bum Kim,et al. Selective Atomic Layer Deposition of Metals on Graphene for Transparent Conducting Electrode Application. , 2020, ACS applied materials & interfaces.
[33] A. Janotti,et al. ToF-SIMS Investigation of the Initial Stages of MeCpPt(CH3)3 Adsorption and Decomposition on Nickel Oxide Surfaces: Exploring the Role and Location of the Ligands , 2020 .
[34] J. V. Ommen,et al. Atomic layer deposition on particulate materials , 2019 .
[35] Jingli Luo,et al. Minimum and well-dispersed platinum nanoparticles on 3D porous nickel for highly efficient electrocatalytic hydrogen evolution reaction enabled by atomic layer deposition , 2019, Applied Surface Science.
[36] I. Oh,et al. Reaction Mechanism of Pt Atomic Layer Deposition on Various Textile Surfaces , 2019, Chemistry of Materials.
[37] Xinggui Zhou,et al. Boosting HER Performance of Pt-Based Catalysts Immobilized on Functionalized Vulcan Carbon by Atomic Layer Deposition , 2019, Front. Mater..
[38] R. Li,et al. Atomic layer deposited Pt-Ru dual-metal dimers and identifying their active sites for hydrogen evolution reaction , 2019, Nature Communications.
[39] Xinggui Zhou,et al. Active sites engineering of Pt/CNT oxygen reduction catalysts by atomic layer deposition , 2019 .
[40] Heon-Cheol Shin,et al. Uniform and Size‐Controlled Synthesis of Pt Nanoparticle Catalyst by Fluidized Bed Reactor Atomic Layer Deposition for PEMFCs , 2019, Advanced Materials Interfaces.
[41] F. Zaera,et al. Application of time-of-flight secondary ion mass spectrometry to the detection of surface intermediates during the first cycle of atomic layer deposition (ALD) of platinum on silica surfaces , 2019, Applied Surface Science.
[42] S. Bent,et al. Mechanistic Study of Nucleation Enhancement in Atomic Layer Deposition by Pretreatment with Small Organometallic Molecules , 2019, Chemistry of Materials.
[43] H. Tsai,et al. Carbon Nanotubes Decorated with Platinum Nanoparticles for Field-Emission Application , 2019, ACS omega.
[44] Yang Zhao,et al. Pt/Pd Single-Atom Alloys as Highly Active Electrochemical Catalysts and the Origin of Enhanced Activity , 2019, ACS Catalysis.
[45] Wei Liu,et al. Highly Active and Stable Metal Single-Atom Catalysts Achieved by Strong Electronic Metal-Support Interactions. , 2019, Journal of the American Chemical Society.
[46] M. Ritala,et al. Atomic Layer Deposition of Emerging 2D Semiconductors, HfS2 and ZrS2, for Optoelectronics , 2019, Chemistry of Materials.
[47] Lihua Huang,et al. Highly dispersed Pt single-atom and cluster in Fe-modified KL zeolite with enhanced selectivity for n-heptane aromatization. , 2019, ACS applied materials & interfaces.
[48] I. Oh,et al. Atomic Layer Deposition of Pt Thin Films Using Dimethyl (N,N-Dimethyl-3-Butene-1-Amine-N) Platinum and O2 Reactant , 2019, Chemistry of Materials.
[49] P. Ajayan,et al. Atomically dispersed platinum supported on curved carbon supports for efficient electrocatalytic hydrogen evolution , 2019, Nature Energy.
[50] Lina Cao,et al. Insight of the stability and activity of platinum single atoms on ceria , 2019, Nano Research.
[51] W. Goddard,et al. Single-atom tailoring of platinum nanocatalysts for high-performance multifunctional electrocatalysis , 2019, Nature Catalysis.
[52] P. He,et al. Ultralow Loading and High-Performing Pt Catalyst for a Polymer Electrolyte Membrane Fuel Cell Anode Achieved by Atomic Layer Deposition , 2019, ACS Catalysis.
[53] M. Ritala,et al. Review Article: Atomic layer deposition of optoelectronic materials , 2019, Journal of Vacuum Science & Technology B.
[54] J. Dendooven,et al. Conformality in atomic layer deposition: Current status overview of analysis and modelling , 2019, Applied Physics Reviews.
[55] R. White,et al. Atomic Layer Deposition of Pt Nanoelectrode Array for Polymer Electrolyte Fuel Cells , 2019, Journal of The Electrochemical Society.
[56] J. Macák,et al. One-dimensional anodic TiO2 nanotubes coated by atomic layer deposition: Towards advanced applications , 2019, Applied Materials Today.
[57] F. Prinz,et al. Electrical Properties of Ultrathin Platinum Films by Plasma-Enhanced Atomic Layer Deposition , 2019, ACS applied materials & interfaces.
[58] W. Kessels,et al. From the Bottom-Up: Toward Area-Selective Atomic Layer Deposition with High Selectivity† , 2018, Chemistry of materials : a publication of the American Chemical Society.
[59] M. Bechelany,et al. Atomic layer deposition for biosensing applications. , 2018, Biosensors & bioelectronics.
[60] S. Haile,et al. Atomic layer deposition of Pt@CsH2PO4 for the cathodes of solid acid fuel cells , 2018, Electrochimica Acta.
[61] Yong Yang,et al. Tailoring Pt locations in KL zeolite by improved atomic layer deposition for excellent performance in n-heptane aromatization , 2018, Journal of Catalysis.
[62] M. Kreutzer,et al. From Single Atoms to Nanoparticles: Autocatalysis and Metal Aggregation in Atomic Layer Deposition of Pt on TiO2 Nanopowder. , 2018, Small.
[63] X. Sun,et al. Single-atom catalysts by the atomic layer deposition technique , 2018 .
[64] K. Cao,et al. Selective Passivation of Pt Nanoparticles with Enhanced Sintering Resistance and Activity toward CO Oxidation via Atomic Layer Deposition , 2018 .
[65] A. Thomas,et al. Spin-hall-active platinum thin films grown via atomic layer deposition , 2018, Applied Physics Letters.
[66] S. Bent,et al. Area-Selective Atomic Layer Deposition of Metal Oxides on Noble Metals through Catalytic Oxygen Activation , 2017, Chemistry of materials : a publication of the American Chemical Society.
[67] K. Cao,et al. Review Article: Catalysts design and synthesis via selective atomic layer deposition , 2018 .
[68] Mingli Fu,et al. Size effect of Pt nanoparticles on the catalytic oxidation of toluene over Pt/CeO2 catalysts , 2018 .
[69] Bart Johnson,et al. Understanding the Active Sites of CO Hydrogenation on Pt–Co Catalysts Prepared Using Atomic Layer Deposition , 2017 .
[70] Yong Qin,et al. The precise decoration of Pt nanoparticles with Fe oxide by atomic layer deposition for the selective hydrogenation of cinnamaldehyde , 2017 .
[71] C. Detavernier,et al. Independent tuning of size and coverage of supported Pt nanoparticles using atomic layer deposition , 2017, Nature Communications.
[72] David-Wei Zhang,et al. Plasma enhanced atomic layer deposited platinum thin film on Si substrate with TMA pretreatment , 2017 .
[73] Y. Mei,et al. Nanoconfined Atomic Layer Deposition of TiO2/Pt Nanotubes: Toward Ultrasmall Highly Efficient Catalytic Nanorockets , 2017 .
[74] J. Moulijn,et al. Understanding and Controlling the Aggregative Growth of Platinum Nanoparticles in Atomic Layer Deposition: An Avenue to Size Selection , 2017, The journal of physical chemistry letters.
[75] Ijm Ivo Erkens,et al. Plasma-assisted atomic layer deposition of conformal Pt films in high aspect ratio trenches. , 2017, The Journal of chemical physics.
[76] K. Cao,et al. Oxide-Nanotrap-Anchored Platinum Nanoparticles with High Activity and Sintering Resistance by Area-Selective Atomic Layer Deposition. , 2017, Angewandte Chemie.
[77] Yong Qin,et al. Porous TiO2 Nanotubes with Spatially Separated Platinum and CoOx Cocatalysts Produced by Atomic Layer Deposition for Photocatalytic Hydrogen Production. , 2017, Angewandte Chemie.
[78] R. Li,et al. Platinum single-atom and cluster catalysis of the hydrogen evolution reaction , 2016, Nature Communications.
[79] Han-Bo-Ram Lee,et al. Highly conductive and flexible fiber for textile electronics obtained by extremely low-temperature atomic layer deposition of Pt , 2016 .
[80] N. Pinna,et al. Atomic Layer Deposition to Materials for Gas Sensing Applications , 2016 .
[81] A. Bol,et al. Area-selective atomic layer deposition of platinum using photosensitive polyimide , 2016, Nanotechnology.
[82] Yong Qin,et al. Ultrathin Coating of Confined Pt Nanocatalysts by Atomic Layer Deposition for Enhanced Catalytic Performance in Hydrogenation Reactions. , 2016, Chemistry.
[83] J. Elam,et al. Atomic layer deposition-Sequential self-limiting surface reactions for advanced catalyst "bottom-up" synthesis , 2016 .
[84] S. Bent,et al. A Process for Topographically Selective Deposition on 3D Nanostructures by Ion Implantation. , 2016, ACS nano.
[85] M. Verheijen,et al. Atomic layer deposition of Pd and Pt nanoparticles for catalysis: on the mechanisms of nanoparticle formation , 2016, Nanotechnology.
[86] M. Verheijen,et al. Surface infrared spectroscopy during low temperature growth of supported Pt Nanoparticles by atomic layer deposition , 2016 .
[87] Joel W. Clancey,et al. Enhanced Methanol Oxidation with Annealed Atomic Layer Deposited Platinum Nanoparticles on Carbon Nanotubes , 2016 .
[88] K. Cao,et al. Atomically Controllable Pd@Pt Core–Shell Nanoparticles towards Preferential Oxidation of CO in Hydrogen Reactions Modulated by Platinum Shell Thickness , 2016 .
[89] S. Bent,et al. Formation of Continuous Pt Films on the Graphite Surface by Atomic Layer Deposition with Reactive O3 , 2015 .
[90] D. Jeong,et al. Orientation-Controlled Growth of Pt Films on SrTiO3 (001) by Atomic Layer Deposition , 2015 .
[91] K. Artyushkova,et al. Nano-structured non-platinum catalysts for automotive fuel cell application , 2015 .
[92] D. Jeong,et al. Control of the initial growth in atomic layer deposition of Pt films by surface pretreatment , 2015, Nanotechnology.
[93] M. Verheijen,et al. Sub-nanometer dimensions control of core/shell nanoparticles prepared by atomic layer deposition , 2015, Nanotechnology.
[94] David H. K. Jackson,et al. Catalyst Design with Atomic Layer Deposition , 2015 .
[95] K. Cao,et al. Controlled Synthesis of Pd/Pt Core Shell Nanoparticles Using Area-selective Atomic Layer Deposition , 2015, Scientific Reports.
[96] R. Juang,et al. Size-controlled platinum nanoparticles prepared by modified-version atomic layer deposition for ethanol oxidation , 2015 .
[97] A. Lubers,et al. Controlling Nanoscale Properties of Supported Platinum Catalysts through Atomic Layer Deposition , 2015 .
[98] J. R. Ommen,et al. Continuous production of nanostructured particles using spatial atomic layer deposition , 2015 .
[99] Joel W. Clancey,et al. Atomic layer deposition of ultrathin platinum films on tungsten atomic layer deposition adhesion layers: Application to high surface area substrates , 2015 .
[100] R. Li,et al. Extremely Stable Platinum Nanoparticles Encapsulated in a Zirconia Nanocage by Area‐Selective Atomic Layer Deposition for the Oxygen Reduction Reaction , 2015, Advanced materials.
[101] Zhenan Bao,et al. Selective metal deposition at graphene line defects by atomic layer deposition , 2014, Nature Communications.
[102] Suk Won Cha,et al. Application of dense nano-thin platinum films for low-temperature solid oxide fuel cells by atomic layer deposition , 2014 .
[103] Y. Sung,et al. Pt-based nanoarchitecture and catalyst design for fuel cell applications , 2014 .
[104] S. Bent,et al. Effect of O3 on Growth of Pt by Atomic Layer Deposition , 2014 .
[105] Stacey F. Bent,et al. A brief review of atomic layer deposition: from fundamentals to applications , 2014 .
[106] T. Kallio,et al. Atomic layer deposition in the preparation of Bi-metallic, platinum-based catalysts for fuel cell applications , 2014 .
[107] Virginia R. Anderson,et al. Atomic Layer Deposition of Platinum Nanoparticles on Titanium Oxide and Tungsten Oxide Using Platinum(II) Hexafluoroacetylacetonate and Formalin as the Reactants , 2014 .
[108] Y. Lei,et al. Toward atomically-precise synthesis of supported bimetallic nanoparticles using atomic layer deposition , 2014, Nature Communications.
[109] James E. Evans,et al. Direct observation of aggregative nanoparticle growth: kinetic modeling of the size distribution and growth rate. , 2014, Nano letters.
[110] C. Detavernier,et al. Reactor concepts for atomic layer deposition on agitated particles: A review , 2014 .
[111] C. Detavernier,et al. In situ XAS and XRF study of nanoparticle nucleation during O3-based Pt deposition , 2014 .
[112] S. Dayeh,et al. Atomic layer deposition of platinum with enhanced nucleation and coalescence by trimethylaluminum pre-pulsing , 2013 .
[113] C. Detavernier,et al. Low-Temperature Atomic Layer Deposition of Platinum Using (Methylcyclopentadienyl)trimethylplatinum and Ozone , 2013 .
[114] N. Dasgupta,et al. Atomic layer deposition of platinum catalysts on nanowire surfaces for photoelectrochemical water reduction. , 2013, Journal of the American Chemical Society.
[115] Xinhua Liang,et al. Atomic layer deposited highly dispersed platinum nanoparticles supported on non-functionalized multiwalled carbon nanotubes for the hydrogenation of xylose to xylitol , 2013, Journal of Nanoparticle Research.
[116] M. Verheijen,et al. Direct-wire atomic layer deposition of high-quality Pt nanostructures : selective growth conditions and seed layer requirements , 2013 .
[117] R. Li,et al. Single-atom Catalysis Using Pt/Graphene Achieved through Atomic Layer Deposition , 2013, Scientific Reports.
[118] M. Verheijen,et al. Influence of Oxygen Exposure on the Nucleation of Platinum Atomic Layer Deposition: Consequences for Film Growth, Nanopatterning, and Nanoparticle Synthesis , 2013 .
[119] A. Bol,et al. Room-Temperature Atomic Layer Deposition of Platinum , 2013 .
[120] J. R. Ommen,et al. Atomic layer deposition of platinum clusters on titania nanoparticles at atmospheric pressure , 2013 .
[121] M. Ritala,et al. Low temperature atomic layer deposition of noble metals using ozone and molecular hydrogen as reactants , 2013 .
[122] J. Elam,et al. Synthesis and stabilization of supported metal catalysts by atomic layer deposition. , 2013, Accounts of chemical research.
[123] S. Bent,et al. Growth of Pt nanowires by atomic layer deposition on highly ordered pyrolytic graphite. , 2013, Nano letters.
[124] S. Bent,et al. In Vacuo Photoemission Studies of Platinum Atomic Layer Deposition Using Synchrotron Radiation. , 2013, The journal of physical chemistry letters.
[125] C. Hsieh,et al. Atomic Layer Deposition of Platinum Nanocatalysts onto Three-Dimensional Carbon Nanotube/Graphene Hybrid , 2012 .
[126] S. Bent,et al. Nucleation-Controlled Growth of Nanoparticles by Atomic Layer Deposition , 2012 .
[127] B. Liu,et al. Synthesis of Pt–Pd Core–Shell Nanostructures by Atomic Layer Deposition: Application in Propane Oxidative Dehydrogenation to Propylene , 2012 .
[128] S. George,et al. Growth of continuous and ultrathin platinum films on tungsten adhesion layers using atomic layer deposition techniques , 2012 .
[129] M. Verheijen,et al. Supported Core/Shell Bimetallic Nanoparticles Synthesis by Atomic Layer Deposition , 2012 .
[130] S. Liao,et al. Fabrication of platinum electrocatalysts on carbon nanotubes using atomic layer deposition for proton exchange membrane fuel cells , 2012 .
[131] W. Kessels,et al. Nanopatterning by direct-write atomic layer deposition. , 2012, Nanoscale.
[132] M. Knez. Diffusion phenomena in atomic layer deposition , 2012 .
[133] D. Garcia-Alonso,et al. Atomic layer deposition for photovoltaics: applications and prospects for solar cell manufacturing , 2012 .
[134] F. Prinz,et al. Nanostructured Platinum Catalysts by Atomic‐Layer Deposition for Solid‐Oxide Fuel Cells , 2012 .
[135] C. Musgrave,et al. Growth of Pt Particles on the Anatase TiO2 (101) Surface , 2012 .
[136] W. Kessels,et al. Catalytic combustion and dehydrogenation reactions during atomic layer deposition of platinum , 2012 .
[137] B. Pivovar,et al. Aligned Carbon Nanotube Array Functionalization for Enhanced Atomic Layer Deposition of Platinum Electrocatalysts , 2012 .
[138] S. Bent,et al. Microstructure-Dependent Nucleation in Atomic Layer Deposition of Pt on TiO2 , 2012 .
[139] C. Detavernier,et al. Plasma-Enhanced ALD of Platinum with O2, N2 and NH3 Plasmas , 2012 .
[140] Phl Peter Notten,et al. Atomic layer deposition for nanostructured Li-ion batteries , 2012 .
[141] C. Detavernier,et al. Tailoring nanoporous materials by atomic layer deposition. , 2011, Chemical Society reviews.
[142] S. Bent,et al. Nanoengineering and interfacial engineering of photovoltaics by atomic layer deposition. , 2011, Nanoscale.
[143] Chih-Chieh Wang,et al. Fabrication of tin dioxide nanowires with ultrahigh gas sensitivity by atomic layer deposition of platinum , 2011 .
[144] L. Marks,et al. Propane Oxidation over Pt/SrTiO3 Nanocuboids , 2011 .
[145] Steven M. George,et al. Nucleation and growth of Pt atomic layer deposition on Al2O3 substrates using (methylcyclopentadienyl)-trimethyl platinum and O2 plasma , 2011 .
[146] Minhua Shao,et al. Electrocatalysis on platinum nanoparticles: particle size effect on oxygen reduction reaction activity. , 2011, Nano letters.
[147] A. Weimer,et al. Reaction mechanism studies for platinum nanoparticle growth by atomic layer deposition , 2011 .
[148] D. King,et al. Optimal preparation of Pt/TiO2 photocatalysts using atomic layer deposition , 2010 .
[149] J. Elam,et al. Supported ru-pt bimetallic nanoparticle catalysts prepared by atomic layer deposition. , 2010, Nano letters.
[150] D. King,et al. Highly dispersed Pt nanoparticle catalyst prepared by atomic layer deposition , 2010 .
[151] W. Kessels,et al. Local deposition of high-purity Pt nanostructures by combining electron beam induced deposition and atomic layer deposition , 2010 .
[152] V. Misra,et al. Platinum Nanoparticles Grown by Atomic Layer Deposition for Charge Storage Memory Applications , 2010 .
[153] F. Prinz,et al. Catalysts with Pt Surface Coating by Atomic Layer Deposition for Solid Oxide Fuel Cells , 2010 .
[154] Seung Min Kim,et al. Genesis and Evolution of Surface Species during Pt Atomic Layer Deposition on Oxide Supports Characterized by in Situ XAFS Analysis and Water−Gas Shift Reaction , 2010 .
[155] C. Hwang,et al. Investigation on the Growth Initiation of Ru Thin Films by Atomic Layer Deposition , 2010 .
[156] J. Elam,et al. Atomic Layer Deposition of Ir−Pt Alloy Films , 2010 .
[157] Aicheng Chen,et al. Platinum-based nanostructured materials: synthesis, properties, and applications. , 2010, Chemical reviews.
[158] S. George. Atomic layer deposition: an overview. , 2010, Chemical reviews.
[159] John Nijenhuis,et al. Atmospheric Pressure Process for Coating Particles Using Atomic Layer Deposition , 2009 .
[160] Hcm Harm Knoops,et al. Surface reactions during atomic layer deposition of Pt derived from gas phase infrared spectroscopy , 2009 .
[161] Chueh-Yang Liu,et al. Atomic layer deposition of platinum nanoparticles on carbon nanotubes for application in proton-exchange membrane fuel cells. , 2009, Small.
[162] Phl Peter Notten,et al. Remote plasma ALD of platinum and platinum oxide films , 2009 .
[163] M. Hersam,et al. Nanoscale structure and morphology of atomic layer deposition platinum on SrTiO 3 (001) , 2009 .
[164] Y. Tolmachev,et al. Electrochemical Properties of Pt Coatings on Ni Prepared by Atomic Layer Deposition , 2009 .
[165] M. Ritala,et al. Atomic Layer Deposition of Platinum Oxide and Metallic Platinum Thin Films from Pt(acac)2 and Ozone , 2008 .
[166] Elina Färm,et al. Selective-Area Atomic Layer Deposition Using Poly(methyl methacrylate) Films as Mask Layers , 2008 .
[167] S. Bent,et al. Ultralow loading Pt nanocatalysts prepared by atomic layer deposition on carbon aerogels. , 2008, Nano letters.
[168] Rachel B. Getman,et al. Thermodynamics of Environment-Dependent Oxygen Chemisorption on Pt(111) , 2008 .
[169] F. Prinz,et al. Application of Atomic Layer Deposition of Platinum to Solid Oxide Fuel Cells , 2008 .
[170] S. Bent,et al. Area-Selective Atomic Layer Deposition of Platinum on YSZ Substrates Using Microcontact Printed SAMs , 2007 .
[171] S. George,et al. Rotary reactor for atomic layer deposition on large quantities of nanoparticles , 2007 .
[172] S. Bent,et al. Highly stable monolayer resists for atomic layer deposition on germanium and silicon , 2006 .
[173] Clifford L. Henderson,et al. Area-Selective ALD of Titanium Dioxide Using Lithographically Defined Poly(methyl methacrylate) Films , 2006 .
[174] Stacey F. Bent,et al. Chemistry for Positive Pattern Transfer Using Area‐Selective Atomic Layer Deposition , 2006 .
[175] S. Bent,et al. Achieving area-selective atomic layer deposition on patterned substrates by selective surface modification , 2005 .
[176] Alan W. Weimer,et al. Coating Fine Nickel Particles with Al2O3 Utilizing an Atomic Layer Deposition‐Fluidized Bed Reactor (ALD–FBR) , 2004 .
[177] Mikko Ritala,et al. Atomic layer deposition chemistry: recent developments and future challenges. , 2003, Angewandte Chemie.
[178] M. Ritala,et al. Reaction Mechanism Studies on Atomic Layer Deposition of Ruthenium and Platinum , 2003 .
[179] M. Ritala,et al. Atomic Layer Deposition of Platinum Thin Films , 2003 .
[180] Steven M. George,et al. Viscous flow reactor with quartz crystal microbalance for thin film growth by atomic layer deposition , 2002 .
[181] G. Fisher,et al. Oxygen interactions with the Pt(111) surface , 1980 .