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|a TA418.9.F5 .L384 2015
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|a 677.02832
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|a UAMI
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|a Electrocatalysts for Hydrogen Energy /
|c [edited by Boz̄ena Łosiewicz].
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|a Zurich :
|b Trans Tech Publishers,
|c ©2015.
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|a 1 online resource (416 pages) :
|b illustrations (some color)
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
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|a Solid State Phenomena ;
|v v. 228
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|a Print version record.
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|a Electrocatalysts for Hydrogen Energy; Preface; Table of Contents; I. Conventional and Novel Electrode Materials; Electrode Materials; Intermetallic Compounds as Catalysts in the Reaction of Electroevolution/Absorption of Hydrogen; Multi-Phased Electrode Materials for the Electroevolution of Oxygen; Amorphous Ni-P Electrode Materials; New Ni-Me-P Electrode Materials; Characterization of Composite Coatings Obtained by Electrodeposition; Physical and Chemical Characterization of Ni+MoO2 Composite Electrocoatings; II. Electrodeposition of Composite Electrocatalysts.
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|a Electrodeposition Mechanism of Composite Coatings ; Characteristics of the Galvanic Baths for Electrodeposition of Nickel Coatings Using the Hull Cell; The Role of Ni(II) Ion Adsorption onto TiO2 in the Electrodeposition of Composite Ni-P+TiO2 Coatings; Relaxation Characteristics of the Electrodeposition Process of Composite Ni-P+TiO2+PTFE and Ni-P+Ni(OH)2+PTFE Coatings; Electrodeposition Process of Composite Ni-P+Ni(OH)2+PTFE Coatings; DC Current Electrodeposition of High Mo Content Ni-Mo Alloy Coatings from Alkaline Solutions; Electrodeposition of the Ni+MoS2 Composite Electrocatalysts.
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|a Electrodeposition of the Ni-Mo+MoO2 Composite Electrocoatings III. Structure of Electrode Materials; Effect of Phosphorus on the Structure of Nickel Electrocoatings; Effect of Heat Treatment on the Structure of Ni-P Electrocoatings; Production and Structure of Ni-W and Ni+W Coatings; Electrodeposition and Thermal Treatment of Nickel Coatings Containing Cobalt; Production and Structure of Nickel-Phosphorus Electrolytic Coatings Modified with Metallic Tungsten or Nickel Oxide; Electrolytic Production and Structure of Ni+Al+Ti Composite Coatings.
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|a Electrodeposition and Thermal Treatment of Ni+W+Si and Ni+W+Mo+Si Composite Coatings IV. Electrochemical Properties of Solid State Electrocatalysts; Aims of Electrocatalysis; Hydrogen Evolution Reaction on Nickel-Phosphorus+Titanium Oxides Composite Electrocoatings; Tailoring Structural and Electrochemical Properties of Composite Ni-Based Electrocoatings; Cyclic Voltammetry Studies on Electrochemical Behavior of the Composite Ni-P+TiO2 Electrocatalysts in Alkaline Solutions; Comparison of Electrocatalytic Activity of the Composite Ni-P+NiO and Ni-P+Ni(OH)2 Coatings for Hydrogen Evolution.
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|a Production and Electrochemical Characterization of Nickel Based Composite Coatings Containing Chromium Group Metal and Silicon PowdersComparison of Electrochemical Properties of Ni+MoS2 and Ni Coatings in an Alkaline Solution; Influence of Thermal Treatment on the Electrochemical Properties of Ni+Mo Composite Coatings in an Alkaline Solution; The Influence of Temperature of Electrodeposition on the Electrochemical Properties of Ni+MoS2 Composite Coatings; The Influence of Temperature of Electrodeposition on the Electrochemical Properties of Ni Coatings.
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|a Effect of Sodium Hypophosphite Content in the Electroplating Bath on the Electrochemical Properties of Ni-P Alloy Coatings.
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|a This special topic volume deals with the development of novel solid state electrocatalysts of a high performance to enhance the rates of the hydrogen or oxygen evolution. It contains a description of various types of metals, alloys and composites which have been obtained using electrodeposition in aqueous solutions that has been identified to be a technologically feasible and economically superior technique for the production of the porous electrodes. The goal was to produce papers that would be useful to both the novice and the expert in hydrogen technologies. This volume is intended to be useful to the materials scientist or electrochemist, student or profesional, who is planning studies of solid state electrocatalysts and who may have had little previous experience with electrochemical measurements.
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|a Includes bibliographical references and index.
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|a English.
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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|a Electrocatalysts.
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|a Electrospinning.
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|a Nanofibers.
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|a Nanofibers
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|a Électrofilature.
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|a Nanofibres.
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|a nanofiber.
|2 aat
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|a TECHNOLOGY & ENGINEERING
|x Technical & Manufacturing Industries & Trades.
|2 bisacsh
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|a TECHNOLOGY & ENGINEERING
|x Textiles & Polymers.
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|a Electrospinning
|2 fast
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|a Nanofibers
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|a Łosiewicz, Boz̄ena,
|e editor.
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758 |
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|i has work:
|a Electrocatalysts for Hydrogen Energy (Text)
|1 https://id.oclc.org/worldcat/entity/E39PD3myWkvr9yW98T6bJvd8WC
|4 https://id.oclc.org/worldcat/ontology/hasWork
|
776 |
0 |
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|i Print version:
|a Losiewicz, Bozena.
|t Electrocatalysts for Hydrogen Energy.
|d Zurich : Trans Tech Publishers, ©2015
|z 9783038354185
|
830 |
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|a Diffusion and defect data.
|n Pt. B,
|p Solid state phenomena ;
|v v. 228.
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856 |
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|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=2008339
|z Texto completo
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