Date published: 2025-10-20

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5-(Triethoxysilyl)-2-norbornene (CAS 18401-43-9)

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CAS Number:
18401-43-9
Molecular Weight:
256.41
Molecular Formula:
C13H24O3Si
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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5-(Triethoxysilyl)-2-norbornene, is an organosilicon compound with versatile applications in scientific research and industry. Its unique properties make it indispensable in various fields. 5-(Triethoxysilyl)-2-norbornene has played a role in scientific research, finding applications in synthesis, industrial material production, and cutting-edge technology development. It serves as both a catalyst and a reagent in organic reactions, facilitating the formation of covalent bonds. In specific chemical reactions, 5-(Triethoxysilyl)-2-norbornene exhibits its versatility. In the Wittig reaction, it functions as a nucleophilic reagent, forming Wittig intermediates by covalently bonding with alkyl halides. In the production of organosilanes, 5-(Triethoxysilyl)-2-norbornene acts as a reducing agent, forming covalent bonds with alkenes to create the desired organosilane compounds. Furthermore, it serves as a catalyst during the synthesis of polysilanes and silica-containing materials, enabling the formation of the desired end products.


5-(Triethoxysilyl)-2-norbornene (CAS 18401-43-9) References

  1. A Cocatalyst Strategy to Enhance Ruthenium-Mediated Metathesis Reactivity towards Electron-Deficient Substrates.  |  Si, G., et al. 2022. Angew Chem Int Ed Engl. 61: e202203796. PMID: 35510712
  2. Novel, efficient, palladium-based system for the polymerization of norbornene derivatives: scope and mechanism  |  Hennis, A. D., Polley, J. D., Long, G. S., Sen, A., Yandulov, D., Lipian, J.,.. & Huffman, J. 2001. Organometallics. 20(13): 2802-2812.
  3. The first structurally characterized homoleptic aryl-manganese (III) compound and the corresponding isoleptic and isoelectronic chromium (II) derivative  |  Forniés, J., Martín, A., Martín, L. F., Menjón, B., Zhen, H., Bell, A., & Rhodes, L. F. 2005. Organometallics. 24(13): 3266-3271.
  4. A detailed investigation into the gas permeation properties of addition-type poly (5-triethoxysilyl-2-norbornene)  |  Belov, N., Nikiforov, R., Starannikova, L., Gmernicki, K. R., Maroon, C. R., Long, B. K.,.. & Yampolskii, Y. 2017. European Polymer Journal. 93: 602-611.
  5. Addition-type alkoxysilyl-substituted polynorbornenes for post-combustion carbon dioxide separations  |  Maroon, C. R., Townsend, J., Higgins, M. A., Harrigan, D. J., Sundell, B. J., Lawrence III, J. A.,.. & Long, B. K. 2020. Journal of Membrane Science. 595: 117532.
  6. Vinyl-addition fluoroalkoxysilyl-substituted polynorbornene membranes for CO2/CH4 separation  |  Wang, X., Wilson, T. J., Maroon, C. R., Laub, J. A., Rheingold, S. E., Vogiatzis, K. D., & Long, B. K. 2022. ACS Applied Polymer Materials. 4(11): 7976-7988.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

5-(Triethoxysilyl)-2-norbornene, 50 ml

sc-227354
50 ml
$254.00