Эта публикация цитируется в 12 научных статьях (всего в 12 статьях)
Communications
Robust thermostable polymer composition based on poly[N,N′-(1,3-phenylene)isophthalamide] and 3,3-bis(4-acrylamidophenyl)phthalide for laser 3D printing
Аннотация:
A photopolymer composition based on poly[N,N′-(1,3-phenylene)isophthalamide] and 3,3-bis(4-acrylamidophenyl)phthalide was developed and utilized for the formation of 3-dimensional structures using the laser stereolithography method with a high reproducibility and the absence of any autopolymerization effects. The obtained 3D structures were mechanically strong and characterized by a high thermal stability (up to 415°C), which makes them promising as high-tech plastics for constructional purposes.
Тип публикации:
Статья
Язык публикации: английский
Образец цитирования:
B. Ch. Kholkhoev, K. N. Bardakova, N. V. Minaev, O. S. Kupriyanova, E. N. Gorenskaia, T. M. Zharikova, P. S. Timashev, V. F. Burdukovskii, “Robust thermostable polymer composition based on poly[N,N′-(1,3-phenylene)isophthalamide] and 3,3-bis(4-acrylamidophenyl)phthalide for laser 3D printing”, Mendeleev Commun., 29:2 (2019), 223–225
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc1479
https://www.mathnet.ru/rus/mendc/v29/i2/p223
Эта публикация цитируется в следующих 12 статьяx:
Dmitriy A. Sapozhnikov, Olga A. Melnik, Alexander V. Chuchalov, Roman S. Kovylin, Sergey A. Chesnokov, Dmitriy A. Khanin, Galina G. Nikiforova, Alexey F. Kosolapov, Sergey L. Semjonov, Yakov S. Vygodskii, “Soluble Fluorinated Cardo Copolyimide as an Effective Additive to Photopolymerizable Compositions Based on Di(meth)acrylates: Application for Highly Thermostable Primary Protective Coating of Silica Optical Fiber”, IJMS, 25:10 (2024), 5494
Bato Ch. Kholkhoev, Kseniia N. Bardakova, Alena N. Nikishina, Zakhar A. Matveev, Yuri M. Efremov, Anastasia A. Frolova, Anastasiya A. Akovantseva, Elena N. Gorenskaia, Nikolay A. Verlov, Peter S. Timashev, Vitalii F. Burdukovskii, “4D-printing of mechanically durable high-temperature shape memory polymer with good irradiation resistance”, Applied Materials Today, 36 (2024), 102022
Bato Ch. Kholkhoev, Alena N. Nikishina, Kseniia N. Bardakova, Zakhar A. Matveev, Dmitriy A. Sapozhnikov, Yuri M. Efremov, Peter S. Timashev, Vitaliy F. Burdukovskii, “4D-printing of high-temperature shape-memory polymers based on polyimide, N,N-dimethylacrylamide and photoactive cross-linkers”, Polymer, 299 (2024), 126978
Bato Ch. Kholkhoev, Kseniia N. Bardakova, Evgeniy O. Epifanov, Zakhar A. Matveev, Taisiya A. Shalygina, Evgeniy B. Atutov, Svetlana Yu. Voronina, Peter S. Timashev, Vitaliy F. Burdukovskii, “A photosensitive composition based on an aromatic polyamide for LCD 4D printing of shape memory mechanically robust materials”, Chemical Engineering Journal, 454 (2023), 140423
V. A. Kuznetsov, A. A. Fedorov, B. Ch. Kholkhoev, E. Yu. Gerasimov, V. F. Burdukovskii, “Effect of the Type of a High-Temperature Polymer Matrix on the Morphology and Electrical Conductivity of Composites with SWCNTs”, J Struct Chem, 64:7 (2023), 1212
Bato Ch. Kholkhoev, Kseniia N. Bardakova, Evgeniy O. Epifanov, Zakhar A. Matveev, Taisiya A. Shalygina, Evgeniy B. Atutov, Svetlana Yu. Voronina, Peter Timashev, Vitaliy F. Burdukovskii, “A Photosensitive Composition Based on an Aromatic Polyamide for Lcd 4d Printing of Shape Memory Mechanically Robust Materials”, SSRN Journal, 2022
Kseniia N. Bardakova, Bato Ch. Kholkhoev, Ivan A. Farion, Evgenii O. Epifanov, Olga S. Korkunova, Yuri M. Efremov, Nikita V. Minaev, Anna B. Solovieva, Peter S. Timashev, Vitaliy F. Burdukovskii, “4D Printing of Shape‐Memory Semi‐Interpenetrating Polymer Networks Based On Aromatic Heterochain Polymers”, Adv Materials Technologies, 7:1 (2022)
O. S. Korkunova, B. Ch. Kholkhoev, V. F. Burdukovskii, “Photosensitive thiol–ene composition for DLP 3D printing of thermally stable polymer materials”, Mendeleev Commun., 32:2 (2022), 231–233
B. Ch. Kholkhoev, Z. A. Matveev, A. N. Nikishina, V. F. Burdukovskii, “Polybenzimidazole-based thiol-ene photosensitive composition for DLP 3D printing”, Mendeleev Commun., 32:6 (2022), 813–815
M. V. Yakovlev, O. S. Morozov, E. S. Afanaseva, B. A. Bulgakov, A. V. Babkin, A. V. Kepman, V. V. Avdeev, “Trifunctional thermosetting monomer with propargyl and phthalonitrile groups”, Russ Chem Bull, 69:11 (2020), 2183
Е. Г. Гордеев, В. П. Анаников, “Oбщeдocтyпныe тexнoлoгии 3D-пeчaти в xимии, биoxимии и фapмaцeвтикe: пpилoжeния, мaтepиaлы, пepcпeктивы”, Усп. хим., 89:12 (2020), 1507–1561; E. G. Gordeev, V. P. Ananikov, “Widely accessible 3D printing technologies in chemistry, biochemistry and pharmaceutics: applications, materials and prospects”, Russian Chem. Reviews, 89:12 (2020), 1507–1561
Д. В. Ганин, Д. С. Дудова, Б. С. Шавкута, О. С. Коркунова, Б. Ч. Холхоев, П. С. Тимашев, В. Ф. Бурдуковский, Н. В. Минаев, “Фотоотверждаемая полимерная композиция на основе термостойкого ароматического полиамида для формирования оптических элементов методом двухфотонной полимеризации”, Оптика и спектроскопия, 128:7 (2020), 903–908; D. V. Ganin, D. S. Dudova, B. S. Shavkuta, O. S. Korkunova, B. Ch. Holhoev, P. S. Timashev, V. F. Burdukovskiy, N. V. Minaev, “Photocurable polymer composition based on heat-resistant aromatic polyamide for the formation of optical elements by two-photon polymerization”, Optics and Spectroscopy, 128:7 (2020), 909–914