3,6-Di(pyridin-4-yl)-9H-carbazole

Catalog No.: B17193
Metal-organic Framework
3,6-Di(pyridin-4-yl)-9H-carbazole serves as a key building block in metal-organic frameworks (MOFs). This compound exhibits significant potential for applications in gas storage, separation, and catalysis due to its ability to form stable coordination networks. Its unique structural properties make it suitable for research in material science and nanotechnology, particularly in the development of advanced porous materials.
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100mg
$35.00
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250mg
$70.00
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500mg
$115.00
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1g
$185.00
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Adooq Products cited in reputable paper
Science VOLUME 380, ISSUE 6663 (2023)
Science VOLUME 369, ISSUE 6510 (2020)
Science VOLUME 356, ISSUE 6336 (2017)
Cell Vol. 185 Issue 23 p4428-4447.e28
Cell Vol 177, Issue 7, p1933-1947.e25
Cell Vol 156, Issue 5, p857-1114
Nature Volume 622 Issue 7982 (2023)
Nature volume 620, pages890-897 (2023)
Nature volume 610, pages540-546 (2022)
Nature volume 588, pages83-88 (2020)
Nature volume 574, pages268-272 (2019)
Nature volume 573, pages539-545 (2019)
Nature volume 567, pages118-122 (2019)
Nature volume 551, pages639-643 (2017)
Nature volume 551, pages247-250 (2017)
Nature volume 548, pages356-360 (2017)
Nature volume 545, pages187-192 (2017)
Biological Activity
Description3,6-Di(pyridin-4-yl)-9H-carbazole serves as a key building block in metal-organic frameworks (MOFs). This compound exhibits significant potential for applications in gas storage, separation, and catalysis due to its ability to form stable coordination networks. Its unique structural properties make it suitable for research in material science and nanotechnology, particularly in the development of advanced porous materials.
Product Information
Catalog NumB17193
FormulaC22H15N3
Molecular Weight321.38
CAS Number1446275-54-2
SMILESN=1C=CC(=CC1)C2=CC=C3NC=4C=CC(=CC4C3=C2)C=5C=CN=CC5
Useful Calculator

This calculator helps you calculate mass of compound based on solution concentration, volume and molecular weight in a specific solution using the formula:

Mass (mg) = Concentration (mM) × Volume (mL) × Molecular Weight (g/mol)

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Calculate the dilution required to prepare a stock solution.
This equation is commonly abbreviated as: C1V1 = C2V2

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