Record # |
Select Document Category |
Anticipated publication year |
Publication year |
Source (e.g. developer/organization) |
Acronym (e.g. ISO, IEC) |
Identifier (e.g. document designation number) |
Title of document |
URL Link |
Scope/description |
Keywords |
Type of Document |
Issue area(s) this applies to |
Primary category that this applies to |
Any additional categories this applies to |
Goal or need for this document |
Intended stakeholders |
Is it being implemented on a national or subnational level? If so, how and why? |
How is this document being used on the market? |
Submitter's name |
Email address |
Submitter's company/organization |
Additional comments |
Contact for additional comments and inquiries |
(This field is for ANSI use only) |
login |
group |
Last modified |
129
|
Published Document
|
|
2011
|
Nanotechnology Characterization Laboratory
|
NCL
|
GTA-14
|
Hep G2 Hepatocarcinoma Homogeneous Apoptosis Assay
|
http://ncl.cancer.gov/NCL_Method_GTA-14.pdf
|
This protocol describes the monitoring of nanoparticle treated human hepatocarcinoma cells...
|
Hepg2, Caspase-3/7 activation
|
e. Specification
|
Measurement and Characterizations
Health, Safety, and Environment
|
Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals
|
|
|
|
|
|
Admin
|
SCulley@ansi.org
|
ANSI
|
|
http://ncl.cancer.gov/working_assay-cascade_dow...
|
EF
|
sculley
|
Editors
|
2014-07-16 |
130
|
Published Document
|
|
2013
|
Nanotechnology Characterization Laboratory
|
NCL
|
GTA-11
|
Autophagic Dysfunction Assay: Qualitative Analysis of MAP LC3 - I to LC3 - II C onversion by Western Blot
|
http://ncl.cancer.gov/NCL_Method_GTA-11.pdf
|
Lysosomal dysfunction is recognized as a potential toxic mechanism for xenobiotics that can...
|
xenobiotics, lysosomal pathologies, phospholipase
|
e. Specification
|
Measurement and Characterizations
Health, Safety, and Environment
|
Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals
|
|
|
|
|
|
Admin
|
SCulley@ansi.org
|
ANSI
|
|
http://ncl.cancer.gov/working_assay-cascade_dow...
|
EF
|
sculley
|
Editors
|
2014-07-16 |
131
|
Published Document
|
|
2011
|
Nanotechnology Characterization Laboratory
|
NCL
|
GTA-12
|
Autophagic Dysfunction in LLC-PK1 Cells
|
http://ncl.cancer.gov/NCL_Method_GTA-12.pdf
|
Lysosomal dysfunction is recognized as a potential toxic mechanism for xenobiotics that can...
|
lysosomes, phospholipase
|
e. Specification
|
Measurement and Characterizations
Health, Safety, and Environment
|
Chemicals e.g. pesticides, pharmaceuticals, paints, basic chemicals
|
|
|
|
|
|
Admin
|
SCulley@ansi.org
|
ANSI
|
|
http://ncl.cancer.gov/working_assay-cascade_dow...
|
EF
|
sculley
|
Editors
|
2014-07-16 |
168
|
Published Document
|
|
2015
|
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
|
http://webstore.ansi.org/FindStandards.aspx?SearchString=IEC%2fTS+62607-4-1+Ed.+2.0+en%3a2015&SearchOption=0&PageNum=0&SearchTermsArray=null%7cIEC%2fTS+62607-4-1+Ed.+2.0+en%3a2015%7cnull
|
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
|
|
Characterization of the electrochemical properties of cathode nanomaterials used in electrical...
|
Energy storage device suppliers; producers of energy storage devices that incorporate...
|
Nanomaterial research and product development
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
Gerd Weking; gerd.weking at isc-team.eu
|
EF
|
MLeibowitz
|
Editors
|
2017-01-18 |
169
|
Published Document
|
|
2016
|
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
|
http://webstore.ansi.org/FindStandards.aspx?SearchString=IEC%2fTS+62607-4-2&SearchOption=0&PageNum=0&SearchTermsArray=null%7cIEC%2fTS+62607-4-2%7cnull
|
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
|
|
This standardized method is intended for use in comparing the characteristics of cathode...
|
cathode nanomaterial suppliers; nano-enabled energy storage device manufacturers
|
Research and nanomaterial development
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
Gerd Weking; gerd.weking at isc-team.eu
|
EF
|
MLeibowitz
|
Editors
|
2017-01-18 |
170
|
Published Document
|
|
2015
|
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
|
http://webstore.ansi.org/FindStandards.aspx?SearchString=IEC%2fTS+62607-4-3&SearchOption=0&PageNum=0&SearchTermsArray=null%7cIEC%2fTS+62607-4-3%7cnull
|
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
|
|
This Technical Specification provides standard methods to measure coating and contact resistivity...
|
Nanomaterial suppliers and end users; nanomaterial researchers
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
Gerd Weking; gerd.weking at isc-team.eu
|
EF
|
MLeibowitz
|
Editors
|
2017-01-18 |
171
|
Published Document
|
|
2016
|
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
|
http://webstore.ansi.org/FindStandards.aspx?SearchString=IEC%2fTS+62607-4-4+Ed.+1.0+en%3a2016&SearchOption=0&PageNum=0&SearchTermsArray=null%7cIEC%2fTS+62607-4-4+Ed.+1.0+en%3a2016%7cnull
|
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
|
|
In order to prevent a thermal runaway scenario, nano material additives has been used to ensure...
|
Nanomaterial suppliers; energy storage end product manufacturers and researchers
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
Bin-Cheng (Mike) Yao; Asia Nano Forum
|
EF
|
MLeibowitz
|
Editors
|
2017-01-18 |
172
|
Published Document
|
|
2017
|
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
|
http://webstore.ansi.org/RecordDetail.aspx?sku=IEC%2fTS+62607-4-5+Ed.+1.0+en%3a2017
|
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
|
|
This document is needed to provide a detailed characterization of electrodes so that individual...
|
energy storage-related nanomaterial suppliers; energy storage device manufacturers
|
research, product development
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-26 |
173
|
Published Document
|
|
2014
|
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
|
http://webstore.ansi.org/RecordDetail.aspx?sku=IEC%2fTS+62607-4-5+Ed.+1.0+en%3a2017
|
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
|
|
|
|
The purpose of this Technical Specification is to provide test sample structures for determining...
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-26 |
174
|
Published Document
|
|
2016
|
International Electrotechnical Commission
|
IEC
|
IEC TS 62607-6-4
|
Nanomanufacturing - Key control characteristics - Part 6-4: Graphene - Surface conductance measurement using resonant cavity
|
http://webstore.ansi.org/FindStandards.aspx?SearchString=IEC%2fTS+62607-6-4+Ed.+1.0+en%3a2016&SearchOption=0&PageNum=0&SearchTermsArray=null%7cIEC%2fTS+62607-6-4+Ed.+1.0+en%3a2016%7cnull
|
establishes a method for determining the surface conductance of two-dimensional (2D) single-layer...
|
graphene; surface conductance; nano-carbon; chemical vapor deposition; CVD; resonant cavity; resonan
|
e. Specification
|
Measurement and Characterizations
|
Energy e.g. Energy storage, energy efficiency
|
|
This document provides a non-contact non-invasive electrical characterization technique for...
|
Graphene suppliers, graphene end users; researchers
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-26 |
183
|
Document Awaiting to be Published
|
2018
|
|
International Electrotechnical Commission
|
IEC
|
IEC TS 62565-4-2
|
Nanomanufacturing - Material specifications - Part 4-2: Luminescent nanomaterials - Detail specification for general lighting and display applications
|
http://www.iec.ch/dyn/www/f?p=103:38:10882060908159::::FSP_ORG_ID,FSP_APEX_PAGE,FSP_PROJECT_ID:1315,23,21028
|
Specifies the essential general and optical requirements of mono-disperse luminescent...
|
nanomanufacturing; material specifications; detail specification; luminescent nanomaterials; quantum
|
e. Specification
|
Material Specifications
|
Energy e.g. Energy storage, energy efficiency
|
|
To codify the format for specifying, reporting, and validating the essential properties of...
|
Luminescent nanomaterial suppliers; manufacturers of nano-enabled end use electrotechnical products
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-27 |
184
|
Document Awaiting to be Published
|
2018
|
|
International Electrotechnical Commission
|
IEC
|
IEC TS 62607-4-6
|
Nanomanufacturing-Key control characteristics - Part 4-6: Nano-enabled electrical energy storage devices - Determination of carbon content for nano electrode materials, infrared absorption method
|
http://www.iec.ch/dyn/www/f?p=103:38:10882060908159::::FSP_ORG_ID,FSP_APEX_PAGE,FSP_PROJECT_ID:1315,23,23641
|
Describes a method for determining the carbon content in nano electrode materials with carbon...
|
|
e. Specification
|
Measurement and Characterizations
|
Energy e.g. Energy storage, energy efficiency
|
|
To provide a widely accepted method for the electrical energy storage sector for carbon content...
|
Battery electrode nanomaterial suppliers; energy storage device manufacturers
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-27 |
185
|
Document Awaiting to be Published
|
2019
|
|
International Electrotechnical Commission
|
IEC
|
IEC TS 62607-4-7
|
Nanomanufacturing - Key control characteristics - Part 4-7: Anode nanomaterials for nano-enabled electrical energy storage- Determination of magnetic materials, ICP-OES method
|
http://www.iec.ch/dyn/www/f?p=103:38:10882060908159::::FSP_ORG_ID,FSP_APEX_PAGE,FSP_PROJECT_ID:1315,23,23642
|
Provides a method for the determination of magnetic impurities in anode nanomaterials for...
|
|
e. Specification
|
Measurement and Characterizations
|
Energy e.g. Energy storage, energy efficiency
|
|
To provide an accurate evaluation of magnetic impurity content, an important measurement for...
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-27 |
186
|
Document Awaiting to be Published
|
2018
|
|
International Electrotechnical Commission
|
IEC
|
IEC TS 62876-2-1
|
Nanotechnology - Reliability assessment - Part 2.1: Nano-enabled photovoltaic - Stability test
|
http://www.iec.ch/dyn/www/f?p=103:38:10882060908159::::FSP_ORG_ID,FSP_APEX_PAGE,FSP_PROJECT_ID:1315,23,20007
|
Establishes a general stability testing program to verify the stability of the performance of...
|
|
e. Specification
|
Measurement and Characterizations
|
Energy e.g. Energy storage, energy efficiency
|
|
To specify the requirements for a general stability assessment standard (SAS) for NePV intended...
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
|
EF
|
MLeibowitz
|
Editors
|
2017-01-27 |
223
|
Published Document
|
|
2020
|
International Electrotechnical Commission
|
IEC
|
62607-6-1
|
Nanomanufacturing - Key control characteristics - Part 6-1: Graphene-based material - Volume resistivity: four probe method
|
https://webstore.ansi.org/Standards/IEC/IECTS62607Eden2020-2418326
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-08 |
224
|
Published Document
|
|
2020
|
International Electrotechnical Commission
|
IEC
|
62607-6-3
|
Nanomanufacturing - Key control characteristics - Part 6-3: Graphene-based material - Domain size: substrate oxidation
|
https://webstore.ansi.org/Standards/IEC/IECTS62607Eden2020-2426325
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-08 |
225
|
Published Document
|
|
2020
|
International Electrotechnical Commission
|
IEC
|
62607-6-13
|
Nanomanufacturing - Key control characteristics - Part 6-13: Graphene powder - Oxygen functional group content: Boehm titration method
|
https://webstore.ansi.org/Standards/IEC/IECTS6260713Eden2020
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-08 |
226
|
Published Document
|
|
2020
|
International Electrotechnical Commission
|
IEC
|
62607-6-14
|
Nanomanufacturing - Key control characteristics - Part 6-14: Graphene-based material - Defect level: Raman spectroscopy
|
https://webstore.ansi.org/Standards/IEC/IECTS6260714Eden2020
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-08 |
227
|
Published Document
|
|
2020
|
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
|
https://webstore.ansi.org/Standards/IEC/IECTS62607Eden2020-2407371
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-08 |
228
|
Published Document
|
|
2021
|
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
|
https://webstore.ansi.org/Standards/IEC/IECTS62607Eden2021
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-08 |
222
|
Published Document
|
|
2020
|
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
|
https://webstore.ansi.org/Standards/IEC/IECTS62607Eden2020-2407599
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-10-01 |
216
|
Published Document
|
|
2019
|
International Electrotechnical Commission
|
IEC
|
62565-4-1
|
Nanomanufacturing - Key control characteristics - Part 4-1: Luminescent nanomaterials - Blank detail specification
|
https://webstore.ansi.org/Standards/IEC/IECTS62565Eden2019
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-09-28 |
217
|
Published Document
|
|
2018
|
International Electrotechnical Commission
|
IEC
|
62565-4-2
|
Nanomanufacturing - Material specifications - Part 4-2: Luminescent nanomaterials - Detail specification for general lighting and display applications
|
https://webstore.ansi.org/Standards/IEC/IECTS62565Eden2018
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-09-28 |
218
|
Published Document
|
|
2020
|
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
|
https://webstore.ansi.org/Standards/BSI/PDIECTS626072020-2409092
|
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
|
Information technology
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
National Electrical Manufacturers Association
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-09-28 |
219
|
Published Document
|
|
2018
|
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
|
https://webstore.ansi.org/Standards/BSI/PDIECTS626072018
|
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
|
|
|
|
|
|
Mike Leibowitz
|
mike.leibowitz@nema.org
|
NEMA
|
|
mike.leibowitz at nema.org
|
EF
|
ying0922
|
|
2021-09-28 |