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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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137 | International Organization for Standardization | ISO | TR 19733 | Nanotechnologies - Matrix Of Properties And Measurement Techniques For Graphene And Related Two-Dimensional (2D) Materials | This document provides a matrix which links key properties of graphene and related... | Graphene, 2-d materials, measurement methods, structural properties | a. Standard | Measurement and Characterizations | 2019-06-14 | ||
138 | International Organization for Standardization/International Electrotechnical Commission | ISO/IEC | 80004-2 (formerly TS 27687) | Nanotechnologies – Vocabulary – Part 2: Nano-objects | This Technical Specification lists terms and definitions related to particles in the field of... | nano-objects, nanoparticle, nanofibre, nanoplate, nanoscale, | a. Standard | Terminology and Nomenclature | 2015-06-25 | ||
141 | International Organization for Standardization | ISO | 20477 | Standard terms and their definition for cellulose nanomaterials | This glossary establishes standard terms for different types of cellulose nanomaterials,... | cellulose; nanomaterials; terminology | a. Standard | Terminology and Nomenclature | 2017-08-29 | ||
143 | International Organization for Standardization | ISO | TS 20660 | Nanotechnologies - Antibacterial Silver Nanoparticles - Specification Of Characteristics And Measurement Methods | This document provides guidance for the specification of characteristics and relevant measurement... | Nanosilver; antibacterial properties; characteristics; measurement methods | a. Standard | Material Specifications | 2019-06-14 | ||
147 | International Organization for Standardization | ISO | 17302 | Nanotechnologies -- Framework for identifying vocabulary development for nanotechnology applications in human healthcare | This Technical Report will not attempt a formal, comprehensive definition of "nanomedicine”.... | nanomedicine, diagnostics, therapeutics, prediction/prevention, monitoring, value chain | a. Standard | Terminology and Nomenclature | Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals | 2015-12-07 | |
151 | International Organization for Standardization | ISO | TR 21386 | Nanotechnologies -- Considerations for the measurement of nano-objects and their aggregates and agglomerates (NOAA) in environmental matrices | This document provides some considerations for the collection of environmental samples to be... | Nano-objects, environmental media, air, sediment, water, sampling, NOAA, | a. Standard | Health, Safety, and Environment | 2019-06-14 | ||
162 | International Organization for Standardization | ISO | TR 22019 | Nanotechnologies - Considerations For Performing Toxicokinetic Studies With Nanomaterials | This document describes the background and principles for toxicokinetic studies relevant for... | nanomaterials, toxicology, risk assessment, toxicokinetics, OECD | a. Standard | Health, Safety, and Environment | 2019-06-14 | ||
161 | ASTM International Technical Committee E56 | E3059 | Standard Guide for Workforce Education in Nanotechnology Infrastructure | This document provides guidelines for basic workforce education in the infrastructure topics... | cleanroom; education; fume hood; glove box; health; nanomaterial; nanoparticle; nanotechnology | a. Standard | Measurement and Characterizations | 2016-08-26 | |||
173 | International Electrotechnical Commission | IEC | IEC TS 62607-5-1 | Nanomanufacturing - Key control characteristics - Part 5-1: Thin-film organic/nano electronic devices - Carrier transport measurements | Provides a standardized sample structure for characterizing charge transport properties in... | thin-flim; thin-film organic; nanomanufacturing; key control characteristics; carrier transport; nan | e. Specification | 2017-01-26 | |||
175 | International Electrotechnical Commission | IEC/IEEE | IEC 62659 | Nanomanufacturing - Large scale manufacturing for nanoelectronics | Provides a framework for introducing nanoelectronics into large scale, high volume production in... | nanoelectronics; large scale; high volume production; semiconductor; nanomaterials; carbon nanotubes | a. Standard | Performance Methods | Computers and electronics | 2017-01-26 | |
178 | International Electrotechnical Commission | IEC | IEC TR 82834 | IEC nanoelectronics standardization roadmap | describes the "IEC nanoelectronics standardization roadmap". It intends to establish a common... | nanoelectronics; roadmap; nano-electrotechnology; nanoscale; nanofabrication | d. Reference Material | Measurement and Characterizations | Computers and electronics | 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 | |
190 | International Organization for Standardization | ISO | 21361 | Nanotechnologies -- Method to quantify air concentrations of carbon black and amorphous silica in the nanoparticle size range in a mixed dust manufacturing environment | This document provides guidelines to quantify and identify air concentration (number of... | carbon black; amorphous silica, industrial, collection, characterization, TEM | a. Standard | Measurement and Characterizations Health, Safety, and Environment | General Industry/Manufacturing | 2019-06-14 | |
39 | U.S. National Institute for Occupational Safety and Health | NIOSH | DHHS (NIOSH) Publication Number 2011-160 | Current Intelligence Bulletin 63: Occupational Exposure to Titanium Dioxide | This NIOSH CIB (1) reviews the animal and human data relevant to assessing the carcinogenicity... | nanoscale titania, occupational safety and health | c. Guideline | Health, Safety, and Environment | General Industry/Manufacturing | academia, industry, organized labor, public health agencies, and public interest groups as well... | 2014-02-28 |
32 | U.S. National Institute for Occupational Safety and Health | NIOSH | DHHS (NIOSH) 2013-145 | Current Intelligence Bulletin 65: Occupational Exposure to Carbon Nanotubes and Nanofibers | This NIOSH Current Intelligence Bulletin, (1) reviews the animal and other toxicological data... | carbon nanotubes, nanofibers, occupational safety | c. Guideline | Health, Safety, and Environment | General Industry/Manufacturing | Academia, industry, organized labor, public health agencies, and public interest groups, as well... | 2014-02-28 |
18 | International Organization for Standardization | ISO | 19007 | Nanotechnologies - In Vitro MTS Assay For Measuring The Cytotoxic Effect Of Nanoparticles | ISO 19007:2018 specifies a method for evaluating the effects of nano-objects and their aggregates... | a. Standard | Health, Safety, and Environment | Biological testing laboratories. | 2019-06-14 | ||
25 | International Electrotechnical Commisssion | IEC | 62607-2-1 | Nanomanufacturing - Key control characteristics - Part 2-1: Carbon nanotube materials - Film resistance | Provides a standardized method for categorizing a grade of commercial carbon nanotubes in terms... | film resistance, key control characteristics, nanotube, carbon nanotubes | e. Specification | Measurement and Characterizations Performance Methods | Energy e.g. Energy storage, energy efficiency | Carbon nanotube suppliers; Producers of nano-electrotechnical enabled products or systems, e.g.... | 2014-02-28 |
169 | International Electrotechnical Commission | IEC | IEC TS 62607-4-2 | Nanomanufacturing - Key control characteristics - Part 4-2: Nano-enabled electrical energy storage - Physical characterization of cathode nanomaterials, density measurement | Provides a standardized method for the determination of the density of cathode nanomaterials in... | cathode; cathode nanomaterials, energy storage | e. Specification | Measurement and Characterizations Performance Methods | Energy e.g. Energy storage, energy efficiency | cathode nanomaterial suppliers; nano-enabled energy storage device manufacturers | 2017-01-18 |
177 | International Electrotechnical Commission | IEC/IEEE | IEC 62624 | Test methods for measurement of electrical properties of carbon nanotubes | Provides methods for the electrical characterization of carbon nanotubes (CNTs), independent of... | carbon nanotube; electrical characterization; high-impedance measurement; nanotechnology | a. Standard | Measurement and Characterizations | Computers and electronics | CNT suppliers; electronics and computer manufacturing | 2017-01-27 |
68 | International Organization for Standardization | ISO | TR 14786 | Nanotechnologies — Considerations for the development of chemical nomenclature for selected nano-objects | This Technical Report is intended to provide information and analyses in support of the... | a. Standard | Terminology and Nomenclature | Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals | developers of nomenclature systems; academia, industry, government, non-government organizations | 2014-05-16 | |
3 | International Electrotechnical Commission | IEC | 62607-3-1 | Nanomanufacturing - Key control characteristics - Part 3-1: Luminescent nanomaterials - Quantum efficiency | Specifies the procedures to be followed and precautions observed when performing reproducible... | Quantum efficiency, quantum dots, nanoparticles, nanophosphors, nanocrystals | a. Standard | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | End use product manufacturers in the lighting, electronics (touch screens), renewable energy and... | 2017-01-18 |
168 | International Electrotechnical Commission | IEC | IEC TS 62607-4-1 | Nanomanufacturing - Key control characteristics - Part 4-1: Cathode nanomaterials for nano-enabled electrical energy storage - Electrochemical characterisation, 2-electrode cell method | provides a standardized method for the determination of electrochemical properties of cathode... | cathode, lithium, lithium iron, lithium iron phosphate, nanomaterial, energy storage, electrochemica | e. Specification | Measurement and Characterizations Performance Methods | Energy e.g. Energy storage, energy efficiency | Energy storage device suppliers; producers of energy storage devices that incorporate... | 2017-01-18 |
172 | International Electrotechnical Commission | IEC | IEC TS 62607-4-5 | Nanomanufacturing - Key control characteristics - Part 4-5: Cathode nanomaterials for nano-enabled electrical energy storage - Electrochemical characterization, 3-electrode cell method | provides a standardized method for the determination of electrochemical properties of cathode... | nanomanufacturing; energy storage; cathode; cathode nanomaterials; lithium; lithium iron phosphate | e. Specification | Measurement and Characterizations Performance Methods | Energy e.g. Energy storage, energy efficiency | energy storage-related nanomaterial suppliers; energy storage device manufacturers | 2017-01-26 |
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 |