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Items found: 188
Record # | Source (e.g. developer/organization) | Acronym (e.g. ISO, IEC) | Identifier (e.g. document designation number) | Title of document | Scope/description | Keywords | Type of Document | Issue area(s) this applies to | Primary category that this applies to | Intended stakeholders | LastModif |
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179 | International Electrotechnical Commission | IEC | IEC TS 62844 | Guidelines for quality and risk assessment for nano-enabled electrotechnical products | Provides a recommended methodology for identifying relevant parameters of nanomaterials as well... | nanotechnology, risk assessment, environment, health, safety | b. Best Practice | Health, Safety, and Environment | Computers and electronics | Nanomaterial suppliers | 2017-01-27 |
180 | International Electrotechnical Commission | IEC | IEC 62860 | Test methods for the characterization of organic transistors and materials | covers recommended methods and standardized reporting practices for electrical characterization... | electrical characterization FET flexible electronics high impedance nanocomposite nanotechnology OFE | a. Standard | Measurement and Characterizations | Computers and electronics | 2017-01-27 | |
181 | International Electrotechnical Commission | IEC | IEC 62860-1 | Test methods for the characterization of organic transistor-based ring oscillators | covers recommended methods and standardized reporting practices for electrical characterization... | electrical characterization; high impedance; printing; organic transistor; printed electronics; ring | a. Standard | Measurement and Characterizations | Computers and electronics | 2017-01-27 | |
223 | International Electrotechnical Commission | IEC | 62607-6-1 | Nanomanufacturing - Key control characteristics - Part 6-1: Graphene-based material - Volume resistivity: four probe method | establishes a standardized method to determine the electrical key control characteristic – volume... | volume resistivity graphene powder oxide reduced | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-08 | |
224 | International Electrotechnical Commission | IEC | 62607-6-3 | Nanomanufacturing - Key control characteristics - Part 6-3: Graphene-based material - Domain size: substrate oxidation | establishes a standardized method to determine the structural key control characteristic – domain... | graphene CVD substrate oxidation | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-08 | |
225 | International Electrotechnical Commission | IEC | 62607-6-13 | Nanomanufacturing - Key control characteristics - Part 6-13: Graphene powder - Oxygen functional group content: Boehm titration method | establishes a standardized method to determine the chemical key control characteristic - oxygen... | Boehm titration graphene oxide | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-08 | |
226 | International Electrotechnical Commission | IEC | 62607-6-14 | Nanomanufacturing - Key control characteristics - Part 6-14: Graphene-based material - Defect level: Raman spectroscopy | Establishes a standardized method to determine the structural key control characteristic • defect... | graphene defect Raman | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-08 | |
227 | International Electrotechnical Commission | IEC | 62607-8-1 | Nanomanufacturing - Key control characteristics - Part 8-1: Nano-enabled metal-oxide interfacial devices - Test method for defect states by thermally stimulated current | There are two types of thermally stimulated current (TSC) measurement methods, classified by the... | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-08 | ||
228 | International Electrotechnical Commission | IEC | 62607-8-2 | Nanomanufacturing - Key control characteristics - Part 8-2: Nano-enabled metal-oxide interfacial devices - Test method for the polarization properties by thermally stimulated depolarization current | There are two types of thermally stimulated current (TSC) measurement methods, classified by the... | thermally stimulated current metal oxide polarization | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-08 | |
222 | International Electrotechnical Commission | IEC | 62607-5-3 | Nanomanufacturing - Key control characteristics - Part 5-3: Thin-film organic/nano electronic devices – Measurements of charge carrier concentration | Specifies sample structures for evaluating a wide range of charge carrier concentration in... | van der Pauw; carrier concentration | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-10-01 | |
216 | International Electrotechnical Commission | IEC | 62565-4-1 | Nanomanufacturing - Key control characteristics - Part 4-1: Luminescent nanomaterials - Blank detail specification | Establishes a blank detail specification and format for listing essential optical and certain... | luminescent; nanomaterials; quantum dots; nanophosphors | e. Specification | Material Specifications | Energy e.g. Energy storage, energy efficiency | 2021-09-28 | |
217 | International Electrotechnical Commission | IEC | 62565-4-2 | Nanomanufacturing - Material specifications - Part 4-2: Luminescent nanomaterials - Detail specification for general lighting and display applications | specifies the essential general and optical requirements of monodisperse luminescent... | nanomanufacturing; luminescent; nanomaterials; quantum dots; monodisperse | e. Specification | Material Specifications | Energy e.g. Energy storage, energy efficiency | 2021-09-28 | |
218 | International Electrotechnical Commission | IEC | 62607-2-4 | Nanomanufacturing - Key control characteristics - Part 2-4: Carbon nanotube materials - Test methods for determination of resistance of individual carbon nanotubes | Specifies the test method for determining the resistivity and the contact resistance... | carbon nanotubes; CNT, resistivity, contact resistance | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-09-28 | |
219 | International Electrotechnical Commission | IEC | 62607-4-6 | Nanomanufacturing - Key control characteristics - Nano-enabled electrical energy storage. Determination of carbon content for nano-enabled electrode materials, infrared absorption method | Provides a method for determination of carbon content of nano-electrode materials by infrared... | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-09-28 | ||
220 | International Electrotechnical Commission | IEC | 62607-4-7 | Nanomanufacturing - Key control characteristics - Nano-enabled electrical energy storage - Determination of magnetic impurities in anode nanomaterials, ICP-OES method | Provides a method for the determination of magnetic impurities in anode nanomaterials for energy... | Energy e.g. Energy storage, energy efficiency | 2021-09-28 | ||||
221 | International Electrotechnical Commission | IEC | 62607-4-8 | Nanomanufacturing - Key control characteristics - Part 4-8: Nano-enabled electrical energy storage - Determination of water content in electrode nanomaterials, Karl Fischer method | Specifies a test method for the determination of water content in electrode nanomaterials for... | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-09-28 | ||
215 | International Electrotechnical Commission | IEC | 62607-3-3 | Nanomanufacturing - Key control characteristics - Part 3-3: Luminescent nanomaterials - Determination of fluorescence lifetime of semiconductor quantum dots using time correlated single photon counting (TCSPC) | provides a method for determining the fluorescence lifetime of semiconductor quantum dots (QDs)... | quantum dots; QD; semiconductor; fluorescence | a. Standard | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | 2021-09-10 | |
37 | Institute of Environmental Sciences and Technology | IEST | IEST-RP-NANO200 | Planning of Nanoscale Science and Technology Facilities: Guidelines for Design, Construction, and Start-up | This Recommended Practice is an overview of factors involved in the design, start-up, and... | nanotechnology facilities, nano laboratories, nano research centers | b. Best Practice | Health, Safety, and Environment | Facility owners, designers, construction team, users/researchers, and equipment providers | 2014-02-28 | |
51 | CSA Group | CSA | Z12885 | Nanotechnologies — Exposure control program for engineered nanomaterials in occupational settings | This is the first edition of CSA Z12885, Nanotechnologies — Exposure control program for... | nanotechnologies, nanomaterials, workplace safety, engineereed nanomaterials, exposure control, occu | a. Standard | Health, Safety, and Environment | General Industry/Manufacturing | This Standard focuses on the manufacture and use of engineered nanomaterials in workplaces... The... | 2014-02-28 |
52 | CSA Group | CSA | CAN/CSA-ISO/TR 13121:13 | Nanotechnologies - Nanomaterial risk evaluation | This is the first edition of CAN/CSA-ISO/TR 13121, Nanotechnologies - Nanomaterial risk... | nanotechnology, nanomaterials, risk, risk management | c. Guideline | Health, Safety, and Environment | General Industry/Manufacturing | 2014-02-28 | |
34 | ASTM International Technical Committee on Nanotechnology | ASTM E56 | ASTM E2909 - 13 | Standard Guide for Investigation/Study/Assay Tab-Delimited Format for Nanotechnologies (ISA-TAB-Nano): Standard File Format for the Submission and Exchange of Data on Nanomaterials and Characterizations | 1.1 This guide (ISA-TAB-Nano) specifies the format for representing and sharing information about... | data sharing; ISA-TAB-Nano; nanomedicine; nanotech | a. Standard | Terminology and Nomenclature | 2014-02-28 | ||
154 | ASTM International Technical Committee E56 | E2834 | Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Nanoparticle Tracking Analysis (NTA) | This guide deals with the measurement of particle size distribution of suspended particles, from... | dynamic light scattering; nano; nanoparticle tracking analysis; photon correlation spectroscopy | a. Standard | Measurement and Characterizations | Researchers, developers, manufacturers and users of nanomaterials and nanotechnology-enabled... | 2016-08-26 | ||
155 | ASTM International Technical Committee E56 | E2864 | Standard Test Method for Measurement of Airborne Metal and Metal Oxide Nanoparticle Surface Area Concentration in Inhalation Exposure Chambers using Krypton Gas Adsorption | This test method covers determination of surface area of airborne metal and metal oxide... | BET surface area; gas sorption analysis; inhalation exposure; krypton; metal and metal oxide nanopar | a. Standard | Measurement and Characterizations | Researchers, developers, manufacturers, and users of nanomaterials and nanotechnology-enabled... | 2016-08-26 | ||
156 | ASTM International Technical Committee E56 | E2865 | Standard Guide for Measurement of Electrophoretic Mobility and Zeta Potential of Nanosized Biological Materials | This guide deals with the measurement of mobility and zeta potential in systems containing... | electrophoretic mobility; isoelectric point; zeta potential; zwitterion; nano-bio materials | a. Standard | Measurement and Characterizations | Researchers, developers, manufacturers, and users of nanoscale biological materials. Stakeholders... | 2016-08-26 | ||
157 | ASTM International Technical Committee E56 | E3025 | Standard Guide for Tiered Approach to Detection and Characterization of Silver Nanomaterials in Textiles | This guide covers the use of a tiered approach for detection and characterization of silver... | analytical methods; characterization; detection; nanomaterials; silver; textiles; tiered approach | a. Standard | Measurement and Characterizations | This guide is intended to serve as a resource for manufacturers, producers, analysts,... | 2016-08-26 |