SLIM21

Sort Order Display Format Items / Page  
 
  Click the serial number on the left to view the details of the item.
 #  AuthorTitleAccn#YearItem Type Claims
1 Takada, Tatsuo Electric Charge Accumulation in Dielectrics: Measurement and Analysis I12456 2022 Book  
2 Gany, Alon 2021 International Conference on Development and Application of Carbon Nanomaterials in Energetic Materials I12395 2022 Book  
3 Geetha, K Recent Trends in Materials I12298 2022 Book  
4 Ueda, Wataru Crystalline Metal Oxide Catalysts I12285 2022 Book  
5 Jung, Chul-Ho From Intrinsic to Extrinsic Design of Lithium-Ion Battery Layered Oxide Cathode Material Via Doping Strategies I12280 2022 Book  
6 Tahir, Muhammad Bilal Nanotechnology I11804 2021 eBook  
7 Chen, Liang-Yao Optical Properties of Solar Absorber Materials and Structures I11667 2021 eBook  
8 Tanabe, Tetsuo Plasma-Material Interactions in a Controlled Fusion Reactor I11625 2021 eBook  
9 K??hne, Matthias Lithium Intercalation in Bilayer Graphene Devices I09157 2018 eBook  
10 Li, Hai-Peng Phonon Thermal Transport in Silicon-Based Nanomaterials I08950 2018 eBook  
(page:1 / 2) [#14]    Next Page   Last Page 

1.    
No image available
TitleElectric Charge Accumulation in Dielectrics: Measurement and Analysis
Author(s)Takada, Tatsuo;Ren, Hanwen;Li, Jin;Wang, Weiwang;Chen, Xiangrong;Li, Qingmin
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXX, 363 p. 282 illus., 271 illus. in color : online resource
Abstract NoteThis book mainly introduces how to measure and analyze electric charge accumulation in Dielectrics. By using the PEA and Q(t) methods with the Quantum Chemical Calculation, the charge characteristics of solid dielectrics under different situations are analyzed, which are never discussed in detail by other books. The book contains a large number of experimental and simulation data as illustrations, and thus the reader can understand the theory in the book very easily. Meanwhile, the reader can learn how to use the two methods to measure charge behavior under different conditions and analyze the charge phenomena by Quantum Chemical Calculation
ISBN,Price9789811961564
Keyword(s)1. Catalysis 2. EBOOK 3. EBOOK - SPRINGER 4. Electric power production 5. Electrical Power Engineering 6. FORCE AND ENERGY 7. MATERIALS 8. Materials for Energy and Catalysis
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12456     On Shelf    

2.     
No image available
Title2021 International Conference on Development and Application of Carbon Nanomaterials in Energetic Materials
Author(s)Gany, Alon;Fu, Xiaolong
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXXIII, 638 p. 396 illus., 306 illus. in color : online resource
Abstract NoteThis book features selected papers presented at the 2021 International Conference on Development and Application of Carbon Nanomaterials in Energetic Materials. It discusses the latest progress in the field of advance carbon nanomaterials in energetic materials; including the structural design, theoretical calculation, synthesis, properties, and applications of carbon materials. It also presents the new technology and applications of advanced carbon nanomaterials in energetic materials. It can be used as a reference book for researchers in energetic materials and related fields. It is also be useful for undergraduates and postgraduates studying these topics
ISBN,Price9789811917745
Keyword(s)1. CARBON 2. Carbon Materials 3. Catalysis 4. CHEMISTRY 5. EBOOK 6. EBOOK - SPRINGER 7. Energy Storage 8. FORCE AND ENERGY 9. MATERIALS 10. Materials Engineering 11. Materials for Energy and Catalysis 12. Mechanical and Thermal Energy Storage 13. NANOTECHNOLOGY
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12395     On Shelf    

3.     
No image available
TitleRecent Trends in Materials : Select Proceedings of ICTMIM 2022
Author(s)Geetha, K;Gonzalez-Longatt, Francisco M;Wee, Hui-Ming
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXIV, 488 p. 284 illus., 221 illus. in color : online resource
Abstract NoteThis book presents the select proceedings of 4th International Conference on Trends in Material Science and Inventive Materials (ICTMIM 2022). Various topics covered in this book are nanotechnology in materials science, green and sustainable materials, semiconductor & electronic materials and devices, bio electronic materials and sensors, thin films, materials surface and interfaces, modern electronic materials, multilayered structures and composite materials, quantum-sized structures and nanocrystals, electronic biosensors, MEMS and sensors, light emitting materials, nanomaterials, opto-electronic materials, microwave and antenna, nanostructure fabrication and self-assembly, self-healable and stretchable configurations, data-driven materials design, advanced charge transfer and suitable interfaces, metallization and superconductivity. Given the contents, the book will be useful for students, researchers and professionals working in the area of material science and engineering
ISBN,Price9789811953958
Keyword(s)1. Catalysis 2. EBOOK 3. EBOOK - SPRINGER 4. FORCE AND ENERGY 5. MATERIALS 6. Materials for Devices 7. Materials for Energy and Catalysis 8. NANOTECHNOLOGY 9. OPTICAL MATERIALS 10. Surfaces (Technology) 11. Surfaces, Interfaces and Thin Film 12. THIN FILMS
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12298     On Shelf    

4.     
No image available
TitleCrystalline Metal Oxide Catalysts
Author(s)Ueda, Wataru
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionX, 397 p. 293 illus., 189 illus. in color : online resource
Abstract NoteThis book introduces the innovatively advanced crystalline metal oxide catalysts that have multi-catalytic functions on the basis of spatially placed elements in crystal structure. With authors who are experts in their fields, the chapters of the book are organized according to catalytic function, on the basis of crystal structure. The book also covers the structure determination of micro???nano-sized metal oxide crystals that are now standard in most catalytic materials and new trends in catalyst development using materials informatics and catalytic informatics. The information contained here will guide researchers who are eager to carry out sustainable catalytic processes and ultimately to achieve a sustainable society in their quest for catalyst development
ISBN,Price9789811950131
Keyword(s)1. Catalysis 2. Cheminformatics 3. Chemoinformatics 4. CRYSTALLOGRAPHY 5. Crystallography and Scattering Methods 6. EBOOK 7. EBOOK - SPRINGER 8. FORCE AND ENERGY 9. MATERIALS 10. Materials for Energy and Catalysis 11. Nanochemistry 12. Photocatalysis
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12285     On Shelf    

5.     
No image available
TitleFrom Intrinsic to Extrinsic Design of Lithium-Ion Battery Layered Oxide Cathode Material Via Doping Strategies
Author(s)Jung, Chul-Ho
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXII, 62 p. 40 illus., 39 illus. in color : online resource
Abstract NoteThis book addresses the comprehensive understanding of Ni-rich layered oxide of lithium-ion batteries cathodes materials, especially focusing on the effect of dopant on the intrinsic and extrinsic effect to its host materials. This book can be divided into three parts, that is, 1. overall understanding of layered oxide system, 2. intrinsic effect of dopant on layered oxides, and 3. extrinsic effect of dopant on layered oxides. To truly understand and discover the fundamental solution (e.g. doping) to improve the Ni-rich layered oxides cathodic performance, understanding the foundation of layered oxide degradation mechanism is the key, thus, the first chapter focuses on discovering the true degradation mechanisms of layered oxides systems. Then, the second and third chapter deals with the effect of dopant on alleviating the fundamental degradation mechanism of Ni-rich layered oxides, which we believe is the first insight ever been provided. The content described in this book will provide research insight to develop high-performance Ni-rich layered oxide cathode materials and serve as a guide for those who study energy storage systems
ISBN,Price9789811963988
Keyword(s)1. BATTERIES 2. Catalysis 3. EBOOK 4. EBOOK - SPRINGER 5. Electric batteries 6. Electrocatalysis 7. Energy Storage 8. FORCE AND ENERGY 9. IONS 10. Low- and highly-charged ions 11. MATERIALS 12. Materials for Energy and Catalysis 13. Mechanical and Thermal Energy Storage
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12280     On Shelf    

6.     
No image available
TitleNanotechnology : Trends and Future Applications
Author(s)Tahir, Muhammad Bilal;Rafique, Muhammad;Sagir, Muhammad
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionV, 142 p. 48 illus., 28 illus. in color : online resource
Abstract NoteThis book presents the basic and fundamental aspects of nanomaterials, its types, and classifications with respect to different factors. It contains methods of preparation and characterization of unique nanostructured materials. Consisting of six chapters, this book appeals to a wide readership from academia and industry professionals and is also useful to undergraduate and graduate students focusing on nanotechnology and nanomaterials, sustainable chemistry, energy conversion and storage, environmental protection, opto-electronics, sensors, and surface and interface science. It also appeals to readers who wish to know about the design of new types of materials with controlled nanostructures
ISBN,Price9789811594373
Keyword(s)1. Catalysis 2. EBOOK 3. EBOOK - SPRINGER 4. FORCE AND ENERGY 5. MATERIALS 6. Materials for Energy and Catalysis 7. Nanochemistry 8. Nanoengineering 9. Nanophysics 10. Nanoscale Design, Synthesis and Processing 11. NANOSCIENCE 12. NANOTECHNOLOGY
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I11804     On Shelf    

7.     
No image available
TitleOptical Properties of Solar Absorber Materials and Structures
Author(s)Chen, Liang-Yao
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXVI, 172 p. 92 illus., 66 illus. in color : online resource
Abstract NoteThis book presents an overview of both the theory and experimental methods required to realize high efficiency solar absorber devices. It begins with a historical description of the study of spectrally selective solar absorber materials and structures based on optical principles and methods developed over the past few decades. The optical properties of metals and dielectric materials are addressed to provide the background necessary to achieve high performance of the solar absorber devices as applied in the solar energy field. In the following sections, different types of materials and structures, together with the relevant experimental methods, are discussed for practical construction and fabrication of the solar absorber devices, aiming to maximally harvest the solar energy while at the same time effectively suppressing the heat-emission loss. The optical principles and methods used to evaluate the performance of solar absorber devices with broad applications in different physical conditions are presented. The book is suitable for graduate students in applied physics, and provides a valuable reference for researchers working actively in the field of solar energy
ISBN,Price9789811634925
Keyword(s)1. Catalysis 2. EBOOK 3. EBOOK - SPRINGER 4. Energy and state 5. Energy policy 6. Energy Policy, Economics and Management 7. FORCE AND ENERGY 8. LASER 9. LASERS 10. MATERIALS 11. Materials for Energy and Catalysis 12. Microwaves, RF Engineering and Optical Communications 13. OPTICAL MATERIALS 14. TELECOMMUNICATION
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I11667     On Shelf    

8.     
No image available
TitlePlasma-Material Interactions in a Controlled Fusion Reactor
Author(s)Tanabe, Tetsuo
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXII, 207 p. 110 illus., 78 illus. in color : online resource
Abstract NoteThis book is a primer on the interplay between plasma and materials in a fusion reactor, so-called plasma???materials interactions (PMIs), highlighting materials and their influence on plasma through PMI. It aims to demonstrate that a plasma-facing surface (PFS) responds actively to fusion plasma and that the clarifying nature of PFS is indispensable to understanding the influence of PFS on plasma. It describes the modern insight into PMI, namely, relevant feedback to plasma performance from plasma-facing material (PFM) on changes in a material surface by plasma power load by radiation and particles, contrary to a conventional view that unilateral influence from plasma on PFM is dominant in PMI. There are many books and reviews on PMI in the context of plasma physics, that is, how plasma or plasma confinement works in PMI. By contrast, this book features a materials aspect in PMI focusing on changes caused by heat and particle load from plasma: how PFMs are changed by plasma exposure and then, accordingly, how the changed PFM interacts with plasma
ISBN,Price9789811603280
Keyword(s)1. Applied and Technical Physics 2. Catalysis 3. Characterization and Analytical Technique 4. EBOOK 5. EBOOK - SPRINGER 6. FORCE AND ENERGY 7. High Temperature Plasma 8. HIGH TEMPERATURE PLASMAS 9. MATERIALS 10. Materials for Energy and Catalysis 11. Materials???Analysis 12. NUCLEAR FUSION 13. PHYSICS
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I11625     On Shelf    

9.     
No image available
TitleLithium Intercalation in Bilayer Graphene Devices
Author(s)K??hne, Matthias
PublicationCham, Springer International Publishing, 2018.
DescriptionXVI, 116 p. 64 illus., 60 illus. in color : online resource
Abstract NoteThis book reports on the successful implementation of an innovative, miniaturized galvanic cell that offers unprecedented control over and access to ionic transport. It represents a milestone in fundamental studies on the diffusive transport of lithium ions between two atomically thin layers of carbon (graphene), a highly relevant aspect in electrodes for energy and mass storage in the context of batteries. Further, it is a beautiful example of how interdisciplinary work that combines expertise from two very distinct fields can significantly advance science. Machinery and tools common in the study of low-dimensional systems in condensed matter physics are combined with methods routinely employed in electrochemistry to enable truly unique and powerful experiments. The method developed here can easily be generalized and extended to other layered materials as well as other ionic species. Not only the method but also the outcome of its application to Li diffusion and intercalation in bilayer graphene is remarkable. A record chemical diffusion coefficient is demonstrated, exceeding even the diffusion of sodium chloride in water and surpassing any reported value of ion diffusion in single-phase mixed conducting materials. This finding may be indicative of the exceptional properties yet to be discovered in nanoscale derivatives of bulk insertion compounds
ISBN,Price9783030023669
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electrochemistry 4. Energy Materials 5. FORCE AND ENERGY 6. Interfaces (Physical sciences) 7. MATERIALS SCIENCE 8. SOLID STATE PHYSICS 9. Surface and Interface Science, Thin Films 10. Surfaces (Physics) 11. THIN FILMS
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I09157     On Shelf    

10.    
No image available
TitlePhonon Thermal Transport in Silicon-Based Nanomaterials
Author(s)Li, Hai-Peng;Zhang, Rui-Qin
PublicationSingapore, Springer Singapore, 2018.
DescriptionX, 86 p. 39 illus., 35 illus. in color : online resource
Abstract NoteIn this Brief, authors introduce the advance in theoretical and experimental techniques for determining the thermal conductivity in nanomaterials, and focus on review of their recent theoretical studies on the thermal properties of silicon???based nanomaterials, such as zero???dimensional silicon nanoclusters, one???dimensional silicon nanowires, and graphenelike two???dimensional silicene. The specific subject matters covered include: size effect of thermal stability and phonon thermal transport in spherical silicon nanoclusters, surface effects of phonon thermal transport in silicon nanowires, and defects effects of phonon thermal transport in silicene. The results obtained are supplemented by numerical calculations, presented as tables and figures. The potential applications of these findings in nanoelectrics and thermoelectric energy conversion are also discussed. In this regard, this Brief represents an authoritative, systematic, and detailed description of the current status of phonon thermal transport in silicon???based nanomaterials. This Brief should be a highly valuable reference for young scientists and postgraduate students active in the fields of nanoscale thermal transport and silicon-based nanomaterials
ISBN,Price9789811326370
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Energy Materials 4. FORCE AND ENERGY 5. MATERIALS SCIENCE 6. Nanoscale science 7. Nanoscale Science and Technology 8. NANOSCIENCE 9. Nanostructures 10. NANOTECHNOLOGY 11. Numerical and Computational Physics, Simulation 12. PHYSICS 13. SOLID STATE PHYSICS
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I08950     On Shelf    

(page:1 / 2) [#14]    Next Page   Last Page