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nitrogen-rich covalent triazine framework

Based on

1 Articles
2015 Most recent source

Composition

Image only illustrates the order and placement of components as described in literature.

1

nitrogen-rich covalent triazine framework

Type Complex Compound
Formula
Role raw materials

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
argon adsorption-desorption isotherm

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Applications

Area Application Nanomaterial Variant Source
gas storage

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Characterization

Method Nanomaterial Variant Source
infrared spectroscopy

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Biological effects

Preparation

Method 1

Type: Chemical synthesis
Source:
Starting materials
  • 2,6-dimethylpyridine-3,5-dicarbonitrile
  1. 35fLuc
  2. kcDeaHQqYH4lsgcwfPuyyIe7Mk8z
Product

nitrogen-rich covalent triazine framework

Pore diameter: ~ 0.35 - ~ 1 nm

Medium/Support: none

Method 2

Type: Chemical synthesis
Source:
Starting materials
  • 2,6-dimethylpyridine-3,5-dicarbonitrile
  1. 9q0MvG
  2. nKGMVOka9D7WZJEfHfuSa8L2nSr5
Product

nitrogen-rich covalent triazine framework

Pore diameter: ~ 0.35 - ~ 1 nm

Medium/Support: none

Method 3

Type: Chemical synthesis
Source:
Starting materials
  • 2,6-dimethylpyridine-3,5-dicarbonitrile
  1. 2bXuc4
  2. gel6hHopnq92alyHWJRVgRRQN8ZX
Product

nitrogen-rich covalent triazine framework

Pore diameter: ~ 0.35 - ~ 3 nm

Medium/Support: none

Method 4

Type: Chemical synthesis
Source:
Starting materials
  • 2,6-dimethylpyridine-3,5-dicarbonitrile
  1. U3Gz9O
  2. RTZ2IyTdgbSGNSJHqefhieMUaqpq
Product

nitrogen-rich covalent triazine framework

Pore diameter: ~ 0.35 - ~ 1 nm

Medium/Support: none

Method 5

Type: Chemical synthesis
Source:
Starting materials
  • 2,6-dimethylpyridine-3,5-dicarbonitrile
  1. jljIIn
  2. aRbtfREVND2hUwsFCTR59Ct37twT
Product

nitrogen-rich covalent triazine framework

Pore diameter: ~ 0.35 - ~ 1 nm

Medium/Support: none

References

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