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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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105 | Nanotechnology Characterization Laboratory | NCL | Cell Binding | Cell Binding/Internalization | NCL has methods to asses targe ting by measuring the inhibition coefficient (Ki) and binding... | Cell Binding | e. Specification | Measurement and Characterizations Health, Safety, and Environment | Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals | 2014-07-10 | |
119 | Nanotechnology Characterization Laboratory | NCL | ITA-11 | Measurement of Nanoparticle Effect s on Cytotoxic Activity of NK Cells by Label-Free RT-CES System | NK cells carry small granules in their cytoplasm which contain special proteins such as perforin... | perforin, NK, granzymes | e. Specification | Measurement and Characterizations Health, Safety, and Environment | Energy e.g. Energy storage, energy efficiency | 2014-07-16 | |
110 | Nanotechnology Characterization Laboratory | NCL | ITA-4 | NCL Method ITA-4 Analysis of Nanoparticle Interaction with Plasma Proteins by 2D PAGE | Proteins bind the surfaces of nanoparticles, and biological materials in general, immediately... | nanoparticles, protein binding, phagocytic cells | e. Specification | Measurement and Characterizations Health, Safety, and Environment | Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals | 2014-07-10 | |
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 | |
171 | International Electrotechnical Commission | IEC | IEC TS 62607-4-4 | Nanomanufacturing - Key control characteristics - Part 4-4: Nano-enabled electrical energy storage - Thermal characterization of nanomaterials, nail penetration method | Provides a measurement method for thermal runaway quality level test for nano-enabled energy... | nano-enabled; energy storage; nail; nail penetration; thermal runaway; electrode | e. Specification | Measurement and Characterizations Performance Methods | Energy e.g. Energy storage, energy efficiency | Nanomaterial suppliers; energy storage end product manufacturers and researchers | 2017-01-18 |
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 | ||
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 | |
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 | ||||
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 |
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 |
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 |
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 |
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 | |||
170 | International Electrotechnical Commission | IEC | IEC TS 62607-4-3 | Nanomanufacturing - Key control characteristics - Part 4-3: Nano-enabled electrical energy storage - Contact and coating resistivity measurements for nanomaterials | Provides a standardized test method for the measurement of contact and coating resistivity of... | nano-enabled; nano-enabled electrode; coating composite, energy storage; resistivity; measurement | e. Specification | Measurement and Characterizations Performance Methods | Energy e.g. Energy storage, energy efficiency | Nanomaterial suppliers and end users; nanomaterial researchers | 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 |
48 | ASTM International | ASTM | E2859 | Standard Guide for Size Measurement of Nanoparticles Using Atomic Force Microscopy | Significance and Use As AFM measurement technology has matured and proliferated, the technique... | atomic force microscope; AFM; calibration; cantilever deflection; contact mode; functionalized substr | a. Standard | Measurement and Characterizations | 2014-02-28 | ||
46 | ASTM International | ASTM | E2578 | Standard Practice for Calculation of Mean Sizes/Diameters and Standard Deviations of Particle Size Distributions | Significance and Use Mean particle diameters defined according to the Moment-Ratio (M-R) system... | distribution; equivalent size; mass distribution; mean particle size; mean particle diameter; | a. Standard | Measurement and Characterizations | 2014-02-28 | ||
43 | ASTM International | ASTM | E2525 | Standard Test Method for Evaluation of the Effect of Nanoparticulate Materials on the Formation of Mouse Granulocyte-Macrophage Colonies | Significance and Use Stem cells of hematopoietic origin are pluripotential and may be... | bone marrow; CFU-GM; clonogenic assay; granulocyte; macrophage; myelosuppression; stem cells | a. Standard | Measurement and Characterizations | 2014-02-28 | ||
45 | ASTM International | ASTM | E2535 | Standard Guide for Handling Unbound Engineered Nanoscale Particles in Occupational Settings | Significance and Use This Guide is intended for use by entities involved in the handling of UNP... | a. Standard | Health, Safety, and Environment | 2014-02-28 | |||
53 | International Organization for Standardization | ISO | 12901-2 | Nanotechnologies – Occupational risk management applied to engineered nanomaterials – Part 2: Use of the control banding approach | SO/TS 12901-2:2014 describes the use of a control banding approach for controlling the risks... | nano-objects, and their agglomerates and aggregates greater than 100 nanometers, NOAA, control bandi | a. Standard | Health, Safety, and Environment | Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals | 2014-06-12 | |
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 | |
167 | International Electrotechnical Commission | IEC | IEC TS 62607-3-2 | Nanomanufacturing - Key control characteristics - Part 3-2: Luminescent nanoparticles - Determination of mass of quantum dot dispersion | Specifies a method for determining the mass of a sample of QD dispersion after the removal of... | quantum dot; QD; semiconductor; colloidal; dispersion; dispersability; ligands; TGA; solvent; impuri | e. Specification | Measurement and Characterizations | Energy e.g. Energy storage, energy efficiency | Suppliers and end users of quantum dots | 2017-01-18 |
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 | ||
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 |