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عنوان
Handbook of Nanomaterials for Hydrogen Storage

پدید آورنده
Jurczyk, Mieczyslaw

موضوع

رده
QC
73
.
8
.
H36
2018

کتابخانه
Library of Razi Metallurgical Research Center

محل استقرار
استان: Tehran ـ شهر: Tehran

Library of Razi Metallurgical Research Center

تماس با کتابخانه : 46831570-021

OTHER STANDARD IDENTIFIER

Standard Number
electronic

TITLE AND STATEMENT OF RESPONSIBILITY

]author[
First Statement of Responsibility
Jurczyk, Mieczyslaw
Title Proper
Handbook of Nanomaterials for Hydrogen Storage

.PUBLICATION, DISTRIBUTION, ETC

Place of Publication, Distribution, etc.
Singapore
Name of Publisher, Distributor, etc.
Pan Stanford Publishing
Date of Publication, Distribution, etc.
2018

NOTES PERTAINING TO TITLE AND STATEMENT OF RESPONSIBILITY

Text of Note
Mieczyslaw Jurczyk

NOTES PERTAINING TO SUBJECT ACCESS

Text of Note
R

NOTES PERTAINING TO RESPONSIBILITY

Text of Note
Nanoscale metallic and ceramic materials, also called nanomaterials, have held enormous attraction for researchers over the past few years. They demonstrate novel properties compared with conventional )microcrystalline( materials owing to their nanoscale features. Recently, mechanical alloying and powder metallurgy processes for the fabrication of metal-ceramic/alloy-ceramic nanocomposites with a unique microstructure have been developed. This book focuses on the fabrication of nanostructured hydrogen storage materials and their nanocomposites. The potential application of the research presented in the book fits well into the EU Framework Programme for Research and Innovation Horizon 2020, where one of the societal challenges is secure, clean, and efficient energy. Wherever possible, the authors have illustrated the subject by their own results. The goal of the book is to provide comprehensive knowledge about materials for energy applications to graduate students and researchers in chemistry, chemical engineering, and materials science

CONTENTS NOTE

Text of Note
Introduction. Nanomaterial. Solid State Hydrides. Preparation Methods of Hydrogen Storage Materials and Nanomaterials. X-ray Diffraction. Atomic Force Microscopy in Hydrogen Storage Materials Research. Characterization of Hydrogen Absorption/Desorption in Metal Hydrides. Electrochemical Characterization of Metal Hydride Electrode Materials. TiFe-based Hydrogen Storage Alloys. TiNi-based Hydrogen Storage Alloys. ZrV2-based Hydrogen Storage Alloys. LaNi5-based Hydrogen Storage Alloys. Mg-3d-based Hydrogen Storage Alloys. )La,Mg(2Ni7-based Hydrogen Storage Alloys. Ni-MHx Batteries.

LIBRARY OF CONGRESS CLASSIFICATION

Class number
QC
73
.
8
.
H36
2018

PERSONAL NAME - PRIMARY RESPONSIBILITY

Relator Code
AU

NO

Proposal/Bug Report

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