Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)
plasma mass spectrometry plasma mass spectrometry introductionthis standard carbon nanotubes elemental impurities carbon diaphragm type fuel pumps sensory analysis method duo-trio test scopethis international standard substrate wafers
GB/T 35418-2017 in English

GB/T 35418-2017 in English

VALID

Nanotechnologies―Determination of elemental impurities in samples of carbon nanotubes―Inductively coupled plasma mass spectrometry

  • Issued on:2017-12-29
  • Implemented on:2018-04-01
  • File Format:PDF
  • Delivery:Via email within 5 business days
Price(USD): $310.00
$301.00
Standard No: GB/T 35418-2017
Document status: VALID
Title in English: Nanotechnologies―Determination of elemental impurities in samples of carbon nanotubes―Inductively coupled plasma mass spectrometry
Title in Chinese: 纳米技术 碳纳米管中杂质元素的测定 电感耦合等离子体质谱法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 5 business days
Issued on: 2017-12-29
Implemented on: 2018-04-01
ICS Classification: 71.040-Analytical chemistry
Chinese Classification: A40-Basic Subject in general
Professional Classification: GB-National Standard
Related Keywords: plasma mass spectrometry
plasma mass spectrometry introductionthis standard
carbon nanotubes
elemental impurities
carbon
Related Topics: Precursor ion peak in mass spectrum
Mass spec impurity
mass spectrometry field ionization
Mass Spectrometry Ionization Species
Plasma Mass Spectrometry
Determination of Metal Elements in Solid Waste by Inductively Coupled Plasma Mass Spectrometry
Bromine Mass Spectrometry
plasma mass spectrometry
Mass spec impurity
Ferrous inductive coupling
GB/T 35418-2017
GB/T+35418-2017
ion pairs in mass spectrometry
Plasma Impurity Spectroscopy
Determination of Metal Elements in Solid Waste by Inductively Coupled Plasma Mass Spectrometry
Determination of impurity elements in nanotechnology carbon nanotubes by inductively coupled plasma mass spectrometry
Mass spec impurity ions
plasma mass spectrometry
Precursor Ions in Mass Spectrometry
Plasma and Mass Spectrometry
Nano gold spectrum
field ionization mass spectrometry
Inductively Coupled Plasma Mass Spectrometry Manganese
Carbon nanotube impurities
Inductively Coupled Mass Spectrometry Lithium
nanoplasma mass spectrometry
impurity elements just now
thermal ionization mass spectrometry
Mass spec impurity peak
Mass Spectrum Impurities
Carbon nanotubes peak at 25 degrees
super strong carbon nanotubes
Nano gold carrier
nanochromatography
nano mass spectrometry
mass carbon
Coupling of deuterium to carbon
exosome nano
plasma coupled mass spectrometry
Plasmonic nanosheets
Ions in a mass spectrum
Carbon nanotube series
Elemental Impurities Inorganic Impurities
plasma technology
Major ions in mass spectrometry
plasma technology
The peak position of carbon nanotubes
Detecting Transitions in Mass Spectrometry
DC Plasma Mass Spectrometry
Plasmonic carbon nanotubes
Portable Plasma Mass Spectrometry
Ions in mass detection
carbon nanotube interior
Ion peaks in a mass spectrum
Elemental impurities
Nanodata
Determination method of sodium ion in water
Mass Spec Nano
ionization mass spectrometry
plasma carbon
Mass Spectrum Impurities
plasma dual mass spectrometry
Inductively Coupled Plasma Dual Mass Spectrometry
Mass Spec Nano
Dual nano-mass
Carbon nanotubes to the peak
carbon nanogold
Inductively Coupled Plasma Mass Spectrometry Sample Preparation
Precursor ion peaks in mass spectra
Carbon Nanotube Processing
Determination of Ion Peaks in Mass Spectrometry
Carrier gold nanoparticles
Ion source in mass spectrometry
Nanosheet energy spectrum
How to determine the parent ion in mass spectrometry
Auto carbon nanotubes
icpms inductively coupled plasma mass spectrometry
Major Ions in Mass Spectrometry
Nano carbon conducts electricity
Mass spec impurity peak
Impurity elements in aluminum
carbon-carbon coupling
Used ICP-MS
Impurity profile
Precursor Ions and Precursor Ions in Mass Spectrometry
MS coupled peaks
xrf impurity element
nano center battery
Mass Spectrometry Ionization Technology
Mass Spectrometry Ionization Technology
High-grade carbon nanotubes
amphoteric carbon nanotubes
Carbon nanotube temperature
Carbon Nanotube Dimensioning Method
Nano carbon agent
Inductively Coupled Plasma Mass Spectrometry for Lead in Water
Talc powder inductively coupled plasma mass spectrometry
gold nanocoupling
Impurity profile
Determination of 24 Elements in Soil by Inductively Coupled Plasma Mass Spectrometry
nanocluster mass spectrometry
nano mass spectrometry
Nano multi-element
Inorganic and elemental impurities
Respectral Parananotechnology
nanotube spectrum
nanotube spectroscopy
Nanotube Spectroscopy
Carbon Nanotube Photosensitive Resin
Inductively Coupled Plasma Mass Spectrometry
GBT35418
GB/T 35418-2017
Environmental protection of carbon nanotubes
CuTiTantalum Inductively Coupled Plasma Mass Spectrometry
Inorganic Inductively Coupled Plasma Mass Spectrometry
Nano Center Tian Falin
The development history of carbon nanotubes
Inventor of mass spectrometry soft ionization
ND100 Nano Homogenizer
Inductively coupled plasma mass spectrometer won the bid
Nano electrospinning
Carbon nanotube Rbm peak
Soft ionization method of mass spectrometry
In the mass spectrum if the mass of the precursor ion m1 and the product ion m2
PE inductively coupled plasma mass spectrometer won the bid
Ratio of PVP dispersed carbon nanotubes
TME Determination of Nanoparticles in Aqueous Solutions
EMA elemental impurities
Carbon Nanotube Kavli Award
Directed evolution of nanobodies
Carbon industry impurities
Carbon nanotube technology
Nanocarbon detection
Metal impurities in carbon nanotube powder
Metal impurity content of carbon nanotubes
Establishment of elemental impurity standards
Detection methods for impurities in rice
Elemental impurity standard curve method
Carbon Nanotube Powder Moisture Test Method
Carbon nanotube quota
Determination method of nanoliposome encapsulation efficiency
Phosphorus element standard mass spectrum
Elemental impurities in food
Carbon Nanotube Impurity Testing
Physical opening method of carbon nanotubes

《GB/T 35418-2017纳米技术 碳纳米管中杂质元素的测定 电感耦合等离子体质谱法》由TC279(全国纳米技术标准化技术委员会)归口,主管部门为中国科学院。


Introduction

This standard provides a method for determining impurity elements in carbon nanotubes using inductively coupled plasma mass spectrometry. It outlines the procedures, equipment, and analytical techniques necessary for accurate and reliable measurement of impurities. The standard specifies the preparation of samples, calibration processes, and data analysis methods to ensure consistent results. It also includes guidelines for handling and interpreting the data obtained through this analytical technique. The document is structured to facilitate the application of the method in laboratories conducting nanotechnology research and development. It covers the essential aspects of the testing process to support quality control and standardization in the field of nanomaterials.

*** Please note: This description may not be accurate, please refer to the official documentation.

Sample only — not a preview of GB/T 35418-2017
Page: 1 / 0
100%

Loading PDF document...

Error loading PDF. Please make sure the file is valid and try again.