BSI PD IEC/TS 62607-4-3:2015
$102.76
Nanomanufacturing. Key control characteristics – Nano-enabled electrical energy storage. Contact and coating resistivity measurements for nanomaterials
Published By | Publication Date | Number of Pages |
BSI | 2015 | 22 |
This part of IEC 62607 provides a standardized test method for the measurement of contact and coating resistivity of nano-enabled electrode materials. This method will enable a customer to:
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decide whether or not a coating composite material is usable, and
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select best combinations of coating composite material with fabrication technologies suitable for their application.
This part of IEC 62607 includes:
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definitions of terminology used in this part of IEC 62607,
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recommendations for sample preparation,
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outlines of the experimental procedures used to measure and calculate the contact and coating resistivity,
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methods of interpretation of results and discussion of data analysis, and
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a case study.
PDF Catalog
PDF Pages | PDF Title |
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4 | CONTENTS |
6 | FOREWORD |
8 | INTRODUCTION |
9 | 1 Scope 2 Normative references 3 Terms, definitions, acronyms and abbreviations 3.1 Terms and definitions |
10 | 3.2 Acronyms and abbreviations 4 Sample preparation methods 4.1 General |
11 | 4.2 Reagents 4.2.1 Casting slurry 4.2.2 Isolator substrates 4.2.3 Metal collector strips and sample layout 4.3 Preparation of the electrode nanomaterial test samples Figures Figure 1 – Layout of the coating (left) and contact (right) resistivity measurement |
12 | 5 Measurement of electric properties 5.1 General 5.2 Coating resistivity 5.2.1 Demarcation of method 5.2.2 Measurement of the sample thickness 5.2.3 Experimental procedures and measurement conditions |
13 | 5.3 Contact resistivity 5.3.1 Demarcation of method 5.3.2 Experimental procedures and measurement conditions 6 Data analysis / interpretation of results 6.1 Coating resistivity |
14 | 6.2 Contact resistivity |
15 | Annex A (informative) Case study A.1 Sample preparation Figure A.1 – Sample preparation |
17 | A.2 Results for a supercap EDLC-electrode and a lithium-ion battery NCM-cathode A.2.1 Linear correlation between current and voltage of the electrode coating resistance of a supercap electrode (ohmic behaviour) Figure A.2 – Construction steps Figure A.3 – Correlation between current and voltage of the coating resistance of various supercap EDLC-electrodes (variation in amount of carbon black additive in the electrode recipe) |
18 | A.2.2 Results for coating resistivity Figure A.4 – Coating resistivity of supercap electrodes with variation in the amount of carbon black in the electrode composite recipe and sample thickness Figure A.5 – Coating resistivity of NCM-based lithium-ion battery cathode with variation in the amount of NCM, binder to carbon black value and sample thickness |
19 | A.2.3 Results of measurement of contact resistivity Figure A.6 – Contact resistivity of a supercap electrode in the state “as cast” and “densified” Figure A.7 – Contact resistivity of a NCM-based lithium-ion battery cathode (81,3 vol.-% NCM) in the state “as cast” and “as densified” |
20 | Bibliography |