Innovative route for the preparation of high-performance polyolefin materials based on unique dendrimeric silica particles
文献信息
Duarte M. Cecílio, Auguste Fernandes, Timothy F. L. McKenna, M. Rosário Ribeiro
In this study, an innovative methodology for the preparation of high-performance polyolefin-based materials combining a unique dendrimeric silica (DS) carrier, a straightforward in situ supporting procedure and in situ ethylene polymerization technique was developed. Despite being inspired in the in situ supporting concept, it goes far beyond this, since its application is made in a different perspective, which is the production of high-performance polyethylene nanocomposites by in situ polymerization, where DS nanoparticles are aimed not only to act as a MAO carrier for ethylene polymerization but, also as a filler. This route combines metallocene supporting and polymerization in a single stage and avoids time-consuming and costly immobilization steps, allowing for a much more simplified experimental set-up. The impact of the immobilization procedure both on the catalytic activity for ethylene polymerization and on the morphological and thermal features of the ensuing polymers was investigated. The in situ supporting procedure was shown to yield highly active catalysts, compared to a common approach involving a two-step immobilization procedure, and in the same order of magnitude of the reference molecular catalyst in homogeneous conditions. Moreover, the in situ supporting route makes unnecessary the addition of external methyaluminoxane (MAO) cocatalyst thus, enabling a strong reduction of the MAO amount and potentially resulting in significant process cost savings. This way, polyethylene based materials with tunable molar masses, and desirable morphology and crystalline features were prepared, proving the method's versatility and ability in tailoring polymer properties, by changing the experimental conditions, and highlighting the potential of this methodology for the generation of highly performant HDPE nanocomposite materials for several applications.
相关文献
Stabilization of CeO2nanoparticles in a CO2 rich solvent
Martin J. Hollamby, Kieran Trickett, Ana Vesperinas, Carl Rivett, David C. Steytler, Zoe Schnepp, Jon Jones, Richard K. Heenan, Robert M. Richardson, Otto Glatter, Julian Eastoe
DOI: 10.1039/B811563J
Diborylenetetraaminoperylenes (DIBOTAP): a new class of highly fluorescent functional polycyclic aromatic hydrocarbons with N–B–N units
Till Riehm, Gabriele De Paoli, Hubert Wadepohl, Luisa De Cola, Lutz H. Gade
DOI: 10.1039/B811864G
Coordination networks derived from germanium(ii) thioether macrocyclic complexes—the first authenticated chalcogenoether complexes of Ge(ii)
Fei Cheng, Andrew L. Hector, William Levason, Gillian Reid, Michael Webster, Wenjian Zhang
DOI: 10.1039/B809444F
Enantioselective synthesis of cyclopropylcarboxamides using s-BuLi–sparteine-mediated metallation
Stephanie Lauru, Nigel S. Simpkins, David Gethin, Claire Wilson
DOI: 10.1039/B810441G
Water electrolysis: an excellent approach for the removal of water from ionic liquids
Md. Mominul Islam, Takeyoshi Okajima, Shimpei Kojima, Takeo Ohsaka
DOI: 10.1039/B811174J
Deprotonative cadmation of functionalized aromatics
Jean-Martial L’Helgoual’ch, Floris Chevallier, Mitsuhiro Yonehara, Masanobu Uchiyama, Aïcha Derdour, Florence Mongin
DOI: 10.1039/B809543D
Fabrication of porous carbon nanotube network
Jun-Wei Su, Shu-Juan Fu, Shangjr Gwo, Kuna-Jiuh Lin
DOI: 10.1039/B812868E
Facile synthesis of aminophenylboronic acid-functionalized magnetic nanoparticles for selective separation of glycopeptides and glycoproteins
Wei Zhou, Ning Yao, Guoping Yao, Chunhui Deng, Xiangmin Zhang, Pengyuan Yang
DOI: 10.1039/B808800D
您可能还喜欢
硅烷偶联剂ZQ-172(CAS号:1067-53-4)的主要用途是什么?
硅烷偶联剂ZQ-172主要用于增强无机填料与有机高分子材料之间的相容性,常见于橡胶、塑料、涂料和胶黏剂等复合体系中。其硅氧烷基团可与玻璃纤维、二氧化硅等无机物表...
如何处理含有6-(2,4-二甲氧基苯基)-2-吡啶甲醇(CAS号:887981-31-9)的废料?
对于含有该化合物的废料,首先应收集并分类存放,避免与其它化学品混合。在处理前,需进行必要的检测,确定其含量和性质。随后,可以采用化学氧化、生物降解或物理吸附等方...
甲砜霉素甘氨酸酯盐酸盐(CAS号:2611-61-2)的物理化学性质是什么?
该化合物为白色或类白色结晶性粉末,不溶于水,溶于乙醇和氯仿。分子量为403.03 g/mol。它具有手性,含有三个手性中心,分别为2S,3R构型。该化合物在酸性...
如何储存反式-环丙烷-1,2-二胺双盐酸盐(CAS号:3187-76-6)?
反式-环丙烷-1,2-二胺双盐酸盐应存放在阴凉、干燥且通风良好的地方,避免阳光直射。储存容器应密封,以防挥发和受潮。同时,应远离火源和热源,确保储存环境温度不超...
什么是吩嗪硫酸甲酯(CAS号:299-11-6)?
吩嗪硫酸甲酯是一种有机化合物,化学结构由吩嗪环与甲酯基团构成,分子式为C10H9N2SO4。其为吩嗪类衍生物,具有典型的芳香环结构和酯基官能团,常作为氧化剂或染...
N1-异丙基二乙烯三胺(CAS号:207399-20-0)的市场或研究趋势如何?
随着绿色化学和环保意识的提高,N1-异丙基二乙烯三胺的研究趋势正向低毒、环保的方向发展。市场趋势方面,由于其在功能性材料、药物合成等领域的需求,预计其市场需求将...
4,4-Dimethyl-5,6-dihydro-4H-cyclopenta[d][1,3]thiazol-2-amine(CAS号:1182284-47-4)应用于哪些行业?
该化合物在医药、聚合物、传感器和半导体领域有潜在的应用。在医药领域,作为一种新型的噻唑类化合物,它可能具有抗炎、抗病毒等生物活性。在聚合物领域,该化合物可用作增...
处理5-(PYRIDIN-4-YL)-OXAZOL-2-YLAMINE(CAS号:1014629-83-4)时应注意哪些实验室安全事项?
在处理5-(吡啶-4-基)-2-氧代-1-氧杂环己烷-3-胺时,应佩戴防护眼镜、手套和防护服。实验应在通风橱中进行,以避免吸入有害气体。如果发生泄露,应立即用大...
什么是伊托必利N-氧化物(CAS号:141996-98-7)?
伊托必利N-氧化物是一种化学化合物,其分子结构是伊托必利的N位进行氧化处理后的产物。它具有一定的生物活性,主要用于药物研究和开发。
氟氯烟酸(CAS号:82671-06-5)安全吗?
氟氯烟酸属于有机氯化物,具有一定的毒性,需谨慎处理。在操作过程中,应佩戴防护手套、护目镜和实验服,避免吸入其粉尘或蒸汽。接触皮肤或眼睛可能导致刺激,应采取适当的...
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.














![4-Penten-1-yl 2-[(2-furylmethyl)(1H-imidazol-1-ylcarbonyl)amino]butanoate structure 4-Penten-1-yl 2-[(2-furylmethyl)(1H-imidazol-1-ylcarbonyl)amino]butanoate structure](https://cnstatic.chemtradehub.com/structs/101/101903-30-4-ac34.webp)