Recyclable and efficient polyurethane-Ir catalysts for direct borylation of aromatic compounds
文献情報
Akihiro Kimura, Haruka Hayama, Hassan Nageh, Yue Wang, Naofumi Naga
Four polyurethanes comprising 2,2′-bipyridyl moieties incorporated in the main chain were synthesized as a novel polymer ligand for the Ir(I)-catalyzed direct borylation of aromatic compounds. The polyurethanes were insoluble in common organic solvents and soluble in dimethylsulfoxide. The borylation reaction of benzene catalyzed by Ir(I) in the presence of the polymer prepared from 4,4′-bis(hydroxylmethyl)-2,2′-bipyridyl and 1,6-diisocyanatohexane led to the catalytic activities comparable to that in the presence of 2,2′-bipyridyl, while the polymers prepared by the reactions of 4,4′-bis(hydroxylmethyl)-2,2′-bipyridyl with 1,4-diisocyanatobenzene, 1,4-diisocyanato-3-methylbenzene, and bis(4-isocyanatophenyl)methane possesed lower catalytic activities. The high activity observed using the 1,6-diisocyanatohexane-based polyurethane catalyst could have a connection to the fact that this polymer has the highest tendency to form the inter-chain hydrogen bond. The borylation reaction systems with the polymers were biphasic, where the top and bottom layers contained the product and the polymer-based catalysts, respectively. Due to the phase separation, the product isolation and catalyst recycle were readily performed through a simple decantation. The catalyst prepared from 1,6-diisocyanatohexane-based polyurethane was able to be recycled at least five times without a significant decrease in activity. Further, the regio-selectivity in borylation of toluene, anisole, and trifluoromethybenzene was studied using the polyurethane ligands as well as the corresponding small-molecular ligands.
関連文献
Isolation and structure determination of two new nosiheptide-type compounds provide insights into the function of the cytochrome P450 oxygenase NocV in nocathiacin biosynthesis
Xuebing Bai, Heng Guo, Dandan Chen, Qian Yang
DOI: 10.1039/C9QO01328H
A novel route to unsymmetrical disubstituted ureas and thioureas by HMPA catalyzed reductive alkylation with trichlorosilane
Xiaoyun Ran, Yan Long, Sheng Yang, Changjiang Peng, Yuanyuan Zhang, Shan Qian, Zhenju Jiang, Xiaomei Zhang, Lingling Yang, Zhouyu Wang, Xiaoqi Yu
DOI: 10.1039/C9QO01321K
One-pot generation of benzynes from 2-aminophenylboronates via a Rh(ii)-catalyzed N–H amination/oxidation/elimination cascade process
Motoki Ito, Arisa Tanaka, Keiju Hatakeyama, Emi Kano, Kazuhiro Higuchi, Shigeo Sugiyama
DOI: 10.1039/C9QO01115C
Synthesis of 2,3,4-trisubstituted pyrrole derivatives via [3 + 2] cyclization of activated methylene isocyanides with 4-(arylidene)-2-substituted oxazol-5(4H)-ones
Man Liu, Chao Li, Yan-Jun Xu, Lin Dong
DOI: 10.1039/C9QO01044K
Bistachybotrysins L–V, bioactive phenylspirodrimane dimers from the fungus Stachybotrys chartarum
Jimei Liu, Xiaona Jia, Jinlian Zhao, Jiamin Feng, Minghua Chen, Ridao Chen, Kebo Xie, Dawei Chen, Yan Li, Dan Zhang, Ying Peng, Shuyi Si, Jungui Dai
DOI: 10.1039/C9QO01284B
Stereoselective assembly of 3,4-epoxypyrrolines via nucleophilic addition induced domino cyclization of 6-halo-1-oxa-4-azahexatrienes
Ilia A. Smetanin, Anastasiya V. Agafonova, Nikolai V. Rostovskii, Alexander F. Khlebnikov, Dmitry S. Yufit, Mikhail S. Novikov
DOI: 10.1039/C9QO01401B
Azidofluoromethane: synthesis, stability and reactivity in [3 + 2] cycloadditions
Svatava Voltrová, Petr Slavíček, Petr Beier
DOI: 10.1039/C9QO01295H
Recent advances in the synthesis of indoles from alkynes and nitrogen sources
José Sebastião Santos Neto, Gilson Zeni
DOI: 10.1039/C9QO01315F
Development of a new bicyclic imidazole nucleophilic organocatalyst for direct enantioselective C-acylation
Muxing Zhou, Ende He, Lu Zhang, Jianzhong Chen, Zhenfeng Zhang, Yangang Liu
DOI: 10.1039/C9QO01025D
こちらもおすすめ
3-(5-フェニル-2-ファイル)-プロパン酸の市場動向や研究トレンドはどうですか?
この化合物の市場動向は不明ですが、類似化合物の需要は化学繊維、医薬品、農薬分野で安定しています。研究トレンドとしては、該当化合物の生物学的活性の評価や、その他の...
3- Chloro-1H-indazol-5-olはどのように保存すればよいですか?
3- チロロ-1H-吲唑-5-醇は遮光し、直射日光を避けて、温度は室温を推奨し、密閉容器に保存してください。
L-(1-~13~C)メチオニンの市場動向や研究トレンドはどうですか?
L-(1-~13~C)メチオニンは、医薬品やバイオテクノロジー分野での研究が増加しており、その価格は安定しています。新興研究分野では、代謝解析や遺伝子機能解析で...
1,3-フェニレンビスメチレンビスアクリレートは安全ですか?
1,3-フェニレンビスメチレンビスアクリレートは一般的に安全ですが、直接皮膚に触れる場合は保護用具を使用することを推奨します。高濃度の蒸気が吸入された場合は呼吸...
丹参醇Aはどのように保存すればよいですか?
丹参醇Aは、直射日光を避けて室温で保存し、密栓容器に入れることをお勧めします。適切な保存条件は、安定性を保ち、安全性を確保する上で重要です。
4-メチル-2-(1,1,1-三フロロ-2-メチルプロパニル)ピリドインとは何ですか?
CAS番号1378865-93-0の4-メチル-2-(1,1,1-三フロロ-2-メチルプロパニル)ピリドインは、合成化学分野で用いられる有機化合物の一種です。こ...
N-フェニルベンジル-2-クロロ酢氨を取り扱う際の実験室安全事項は何ですか?
N-フェニルベンジル-2-クロロ酢氨は毒性があり、皮膚や粘膜に刺激を与えます。取り扱う際には、保護眼鏡、手袋、ゴーグルを着用することを強く推奨します。ドラフトチ...
UCN-02を取り扱う際の実験室安全事項は何ですか?
UCN-02は毒性は低いですが、人体への直接的な接触は避けるべきです。PPE要件はグローブと顔面保護具を着用することです。ドラフトチャンバーを使用して漏洩を処理...
N-[3-[2-(二甲基氨基)乙氧基]-4-甲氧基苯基]-2'-甲基-4'-(5-甲基-1,2,4-恶二唑-3-基)-[1,1'-联苯]-4-甲酰胺を取り扱う際の実験室安全事項は何ですか?
手袋と保護眼鏡を着用し、漏洩時には吸気防止装置を使用してください。室温、乾燥した場所に保管し、直日光から隔離してください。SDS(安全データシート)を参照してく...
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.










![2,9-Dichloro-5,12-dihydroquinolino[2,3-b]acridine-7,14-dione structure 2,9-Dichloro-5,12-dihydroquinolino[2,3-b]acridine-7,14-dione structure](https://static.chemtradehub.com/structs/308/3089-17-6-750b.webp)



