Date published: 2026-5-10

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1,4-Bis(triethoxysilyl)benzene (CAS 2615-18-1)

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Application:
1,4-Bis(triethoxysilyl)benzene is a powerful nucleophile that is silicon-based which is shown to be reactive in Pd-catalyzed cross-coupling reactions
CAS Number:
2615-18-1
Purity:
>95%
Molecular Weight:
402.63
Molecular Formula:
C18H34O6Si2
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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1,4-Bis(triethoxysilyl)benzene is a powerful nucleophile that is silicon-based which is shown to be reactive in Pd-catalyzed cross-coupling reactions. It is soluble in water and alcohols. It also has fluorescence and optical properties. In addition, it has acidic functional groups and photocatalytic activity.


1,4-Bis(triethoxysilyl)benzene (CAS 2615-18-1) References

  1. An alternate route for the synthesis of hybrid mesoporous organosilica with crystal-like pore walls from allylorganosilane precursors.  |  Kapoor, MP., et al. 2005. J Am Chem Soc. 127: 8174-8. PMID: 15926846
  2. Periodic mesoporous organosilicas with multiple bridging groups and spherical morphology.  |  Cho, EB., et al. 2007. Langmuir. 23: 11844-9. PMID: 17918981
  3. Molybdenum-based epoxidation catalysts heterogenized in silica matrixes via the sol–gel method  |  Teixeira, S., Dallmann, K., Schuchardt, U., & Buffon, R. 2002. Journal of Molecular Catalysis A: Chemical. 182: 167-173.
  4. Synthesis and characterization of proton-conducting sol–gel membranes produced from 1, 4-bis (triethoxysilyl) benzene and (3-glycidoxypropyl) trimethoxysilane  |  Aparicio, M., Mosa, J., Sánchez, F., & Durán, A. 2005. Journal of power sources. 151: 57-62.
  5. Direct synthesis of sulfonic acid-functionalized periodic mesoporous benzene–silicas with large pores  |  Cho, E. B., & Kim, D. 2008. Journal of Physics and Chemistry of Solids. 69(5-6): 1142-1146.
  6. Multifunctional periodic mesoporous organosilicas prepared with block copolymer: Composition effect on morphology  |  Cho, E. B., & Kim, D. 2008. Microporous and mesoporous materials. 113(1-3): 530-537.
  7. Fabrication of oriented zeolite L monolayer via covalent molecular linkers  |  Wang, Y., Li, H., Liu, B., Gan, Q., Dong, Q., Calzaferri, G., & Sun, Z. 2008. Journal of solid state chemistry. 181(9): 2469-2472.
  8. Mesoporous benzene silica functionalized with various amine groups  |  Coutinho, D., Xiong, C., & Balkus Jr, K. J. 2008. Microporous and mesoporous materials. 108(1-3): 86-94.
  9. Hydrolysis behavior of a precursor for bridged polysilsesquioxane 1, 4-bis (triethoxysilyl) benzene: a 29 Si NMR study  |  Saito, H., Nishio, Y., Kobayashi, M., & Sugahara, Y. 2011. Journal of sol-gel science and technology. 57: 51-56.
  10. Hydrophobic periodic mesoporous organosilicas for the adsorption of cytochrome c  |  Park, M., Park, S. S., Selvaraj, M., Kim, I., & Ha, C. S. 2011. Journal of Porous Materials. 18: 217-223.
  11. Adsorption of amino acids on periodic mesoporous organosilicas.  |  Shin, J. H., Park, S. S., Selvaraj, M., & Ha, C. S. 2012. Journal of Porous Materials. 19: 29-35.
  12. Hierarchical 3D-ordered macro-/mesoporous organosilicas with inverse opal morphology synthesized by a combination of nanocasting and pseudomorphic transformation  |  Simon, T., Brieler, F. J., & Fröba, M. 2017. Journal of Materials Chemistry C. 5(21): 5263-5268.
  13. Modification of Bacterial Cellulose Membrane with 1, 4-Bis (triethoxysilyl) benzene: A Thorough Physical–Chemical Characterization Study  |  Monteiro, A. S., de Oliveira Jr, M., Santagneli, S., Carcel, C., Gutmann, T., Buntkowsky, G.,.. & Ribeiro, S. J. 2021. The Journal of Physical Chemistry C. 125(8): 4498-4508.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

1,4-Bis(triethoxysilyl)benzene, 5 g

sc-253986
5 g
$140.00

1,4-Bis(triethoxysilyl)benzene, 20 g

sc-253986A
20 g
$371.00

1,4-Bis(triethoxysilyl)benzene, 100 g

sc-253986B
100 g
$1796.00

1,4-Bis(triethoxysilyl)benzene, 500 g

sc-253986C
500 g
$6125.00