Polymerization of methyl methacrylate by latent pre-catalysts based on CO2-protected N-heterocyclic carbenes
文献情報
Stefan Naumann, Friedrich Georg Schmidt, Roman Schowner, Wolfgang Frey
Various carbon dioxide-protected N-heterocyclic carbenes (NHCs) have been investigated with regard to their ability to act as thermally latent initiators for the polymerization of methyl methacrylate (MMA). Such CO2-protected NHCs, while completely inactive at room temperature, deliver poly(methyl methacrylate) (PMMA) in high yields upon heating and thus represent truly latent pre-catalysts. Polymerizations were conducted in the bulk, semi-bulk and in solution. Especially tetrahydropyrimidinium-2-carboxylates as well as 1,3-di(tert-butyl)imidazolium-2-carboxylate, both in combination with dimethylsulfoxide (DMSO), were identified as suitable pre-catalysts for the polymerization of MMA. With 1,3-di(tert-butyl)imidazolium-2-carboxylate in toluene, polydispersity indices (PDIs) as low as 1.3 and number-average molecular weights (Mn) of 500 000 g mol−1 could be realized. Tetrahydropyrimidinium-2-carboxylates in conjunction with DMSO resulted in lower molecular weights. Notably, isolated polymer yields up to 96% were possible in some cases, though yields proved to be sensitive to the structure of the initiators used. In principle, at least two different polymerization mechanisms are active. In the presence of DMF or DMSO, the formation of a solvent anion (e.g., DMSO−), which then reacts with the monomer, is proposed. What follows is that only highly basic NHCs work well under these conditions. In contrast, the polymerization of MMA in toluene or in the bulk is probably governed by the nucleophilicity of the NHC, rendering unsaturated, less basic NHCs more applicable. Both mechanisms are discussed.
関連文献
Screening metal–organic frameworks for separation of pentane isomers
Rajamani Krishna, Jasper M. van Baten
DOI: 10.1039/C7CP00586E
On the mobility of carriers at semi-coherent oxide heterointerfaces
Pratik P. Dholabhai, Enrique Martínez, Nicholas T. Brown, Blas Pedro Uberuaga
DOI: 10.1039/C7CP04884J
The frequency-dependent AC photoresistance behavior of ZnO thin films grown on different sapphire substrates
Jorge L. Cholula-Díaz, José Barzola-Quiquia, Marcelo Videa, Chunhai Yin, Pablo Esquinazi
DOI: 10.1039/C7CP04052K
Cation/macromolecule interaction in alkaline cellulose solution characterized with pulsed field-gradient spin-echo NMR spectroscopy
Sen Wang, Peng Sun, Rongrong Zhang, Ang Lu, Maili Liu, Lina Zhang
DOI: 10.1039/C6CP08744B
Constructing accurate interaction potentials to describe the microsolvation of protonated methane by helium atoms
Felix Uhl, Harald Forbert, Dominik Marx
DOI: 10.1039/C7CP00652G
Statistical thermodynamics unveils the dissolution mechanism of cellobiose
Noriyuki Isobe, James H. Clark, Seishi Shimizu
DOI: 10.1039/C7CP04647B
Temperature dependence of ion diffusion coefficients in NaCl electrolyte confined within graphene nanochannels
Jing Kong, Zheng Bo, Huachao Yang, Jinyuan Yang, Xiaorui Shuai, Jianhua Yan, Kefa Cen
DOI: 10.1039/C6CP08752C
Phase separation and physico-chemical processes at microscopic and macroscopic levels in MWCNT laden polymer blends using a unique droplet based architecture
Binita Pathak, Goutam Prasanna Kar, Suryasarathi Bose, Saptarshi Basu
DOI: 10.1039/C7CP03621C
Non-covalent interactions in anisole–(CO2)n (n = 1, 2) complexes
Jan Řezáč, Dana Natchigallová, Pavel Hobza
DOI: 10.1039/C7CP03763E
Two-photon absorption of the spatially confined LiH molecule
Justyna Kozłowska, Marta Chołuj, Robert Zaleśny, Wojciech Bartkowiak
DOI: 10.1039/C6CP07368A
こちらもおすすめ
3-(2-オキサプロピル)ベンzoic酸はどのように合成されますか?
3-(2-オキサプロピル)ベンzoic酸は、ベンzoic酸とプロパノ酸をヒドロキシム化合物として反応させて生成します。具体的には、ベンzoic酸とプロパノ酸を反...
4-メチル-4-ピペリジニル-1-ピロリドイン甲酸の主な用途は何ですか?
4-メチル-4-ピペリジニル-1-ピロリドイン甲酸は、主に医薬品の合成材料や研究用物質として使用されます。さらに、一部の薬理学的研究にも応用されています。
Biotin-PEG3-oxyamine HCl塩について、適切な化合物名称に適用される法規ガイドラインは何ですか?
Biotin-PEG3-oxyamine HCl塩は、GHS( Globally Harmonized System of Classification and...
N-(4-イソチオシアネートフェニル)-2-メトキシアリニンはどのように合成されますか?
N-(4-イソチオシアネートフェニル)-2-メトキシアリニンは、4-イソチオシアノフェノールと2-メトキシアリニルアミンのアミニド反応を用いて合成されます。この...
金粉蕨亭2'-O-葡萄糖甙の主な用途は何ですか?
金粉蕨亭2'-O-葡萄糖甙は主に薬理研究や医薬品製造に使用され、抗炎症作用や抗がん作用などがあります。また、その構造や性質から、合成化学や化学生理学の研究にも用...
2-(2-ニトロフェニル)酢酸ヒドライドの物理化学的性質は何ですか?
2-(2-ニトロフェニル)酢酸ヒドライドのCAS番号は114953-81-0です。この化合物は白色結晶性粉末で、分子量は244.12です。水溶性は限られており、...
5-(ヒドロキシメチル)-2-チオキソ-2,3-ジヒドロピリミジン-4(1H)-オンを取り扱う際の実験室安全事項は何ですか?
この化合物は高活性のため、取り扱いには注意が必要です。PPE(個人保護具)としてゴーグル、ガントリー、および防滴シールドを着用することが推奨されます。ドラフトチ...
11-脱氢血栓烷 b2の市場動向や研究トレンドはどうですか?
11-脱氢血栓烷 b2は、血栓溶解・抗凝固作用に関する研究で注目を集めています。特に心血管疾患の治療法開発において、市場の需要が高まっています。研究トレンドとし...
3,3-二甲基哌啶-4-酮はどのように保存すればよいですか?
3,3-二甲基哌啶-4-酮は避光、常温、乾燥した場所で保存してください。容器は密閉し、遠くから火源を離して保管することを確認してください。
掲載誌
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.














