views: 1546
Readers community rating: votes 0
1. Finkelshtein E., Gringolts M., Bermeshev M., Chapala P., Rogan Y. Polynorbornenes. // Membrane Materials for Gas and Vapor Separation. 2017. Wiley. Chichester. P. 143—221.
2. Chapala P. P., Bermeshev M. V., Starannikova L. E., Belov N. A., Ryzhikh V. E., Shantarovich V. P., Lakhtin V. G., Gavrilova N. N., Yampolskii Y. P., Finkelshtein E. S. A Novel, Highly Gas-Permeable Polymer Representing a New Class of Silicon-Containing Polynorbornens As Efficient Membrane Materials. // Macromolecules. 2015. V. 48. № 22. P. 8055—8061.
3. Nagai K., Masuda T., Nakagawa T., Freeman B. D., Pinnau I. Poly[1-(trimethylsilyl)-1-propyne] and related polymers: synthesis, properties and functions // Prog. Polym. Sci. 2001. V. 26. №. P. 721-798.
4. Kim S., Lee Y. M. Rigid and microporous polymers for gas separation membranes. // Prog. Polym. Sci. 2015. V. 43. № 0. P. 1-32.
5. Tetsuka H., Isobe K., Hagiwara M. Synthesis and Properties of Addition-Type Poly(norbornene)s with Siloxane Substituents. // Polym. J. (Tokyo, Jpn.). 2009. V. 41. № 8. P. 643-649.
6. Tetsuka H., Hagiwara M., Kaita S. Addition-type poly(norbornene)s with siloxane substituents: synthesis, properties and nanoporous membrane. // Polym. J. (Tokyo, Jpn.). 2011. V. 43. № 1. P. 97—100.
7. Bermeshev M. V., Syromolotov A. V., Gringolts M. L., Starannikova L. E., Yampolskii Y. P., Finkelshtein E. S. Synthesis of High Molecular Weight Poly[3-{tris(trimethylsiloxy)silyl}tricyclononenes-7] and Their Gas Permeation Properties. // Macromolecules. 2011. V. 44. № 17. P. 6637—6640.
8. Bermeshev M. V., Syromolotov A. V., Starannikova L. E., Gringolts M. L., Lakhtin V. G., Yampolskii Y. P., Finkelshtein E. S. Glassy Polynorbornenes with Si–O–Si Containing Side Groups. Novel Materials for Hydrocarbon Membrane Separation. // Macromolecules. 2013. V. 46. № 22. P. 8973-8979.
9. Gmernicki K. R., Hong E., Maroon C. R., Mahurin S. M., Sokolov A. P., Saito T., Long B. K. Accessing Siloxane Functionalized Polynorbornenes via Vinyl-Addition Polymerization for CO2 Separation Membranes. // ACS Macro Lett. 2016. V. 5. № 7. P. 879—883.
10. Sundell B. J., Lawrence Iii J. A., Harrigan D. J., Vaughn J. T., Pilyugina T. S., Smith D. R. Alkoxysilyl functionalized polynorbornenes with enhanced selectivity for heavy hydrocarbon separations. // RSC Adv. 2016. V. 6. № 57. P. 51619—51628.
11. Vaughn J. T., Harrigan D. J., Sundell B. J., Lawrence Iii J. A., Yang J. Reverse selective glassy polymers for C3+ hydrocarbon recovery from natural gas. // J. Membr. Sci. 2017. V. 522. №. P. 68—76.
12. Alentiev D. A., Chapala P. P., Filatova M. P., Finkelshtein E. S., Bermeshev M. V. Synthesis of novel tricyclononenes containing alkoxysilyl groups. // Mendeleev Commun. 2016. V. 26. № 6. P. 530—531.
13. Yampol'skij Yu. P., Durgar'yan S. G., Nametkin N. S. Koehffitsienty postupatel'noj i vraschatel'noj diffuzii nizkomolekulyarnykh veschestv v polimerakh s razlichnymi temperaturami steklovaniya. // Vysokomolekulyarnye Soedineniya. 1982. V. 24. № 3. P. 536—541.
14. Robb W. L. Thin silicone membranes - their permeation properties and some applications. // Ann. N. Y. Acad. Sci. 1968. V. 146. № 1. P. 119—137.