光催化

光氧催化,或所謂的可見光光氧催化,在早期自由基化學和光化學領域的先驅所建立的基礎上,已經成為有機合成的強大工具。1-7 在可見光的存在下,光催化劑可以透過一系列的合成轉換(包括但不限於交叉耦合、C-H 功能化、烯和炔功能化以及三氟甲基化),提供全新的、以前無法獲得的鍵的形成。
特色類別
相關文章
- 自由基化学在有机合成中的应用已经过充分发展且影响广泛,但常常受制于对有毒自由基引发剂的依赖。
- Photocatalysis in organic synthesis has grown with innovative methods using visible light, contributing to new research.
- Effective Csp2- and Csp-hybridized coupling reactions established for catalysis, expanding to multi-step Csp3-coupling.
- Markovnikov and anti-Markovnikov alkene reactivity differences are discussed, highlighting challenges and catalytic advancements.
- 查看全部 (12)
相關通訊協定
- Materials and procedure Step-by-Step Guide for Photocatalysis High-Throughput Reaction Screening Kit
尋找更多文章和協議
How Can We Help
若有任何問題,請提交客戶支援請求
或與我們的客戶服務團隊討論:
電子郵件[email protected]
或致電 +1 (800) 244-1173
額外支援
- Chromatogram Search
Use the Chromatogram Search to identify unknown compounds in your sample.
- 計算機與應用程式
Web Toolbox - 用於分析化學、生命科學、化學合成和材料科學的科學研究工具和資源。
- Customer Support Request
Customer support including help with orders, products, accounts, and website technical issues.
- FAQ
Explore our Frequently Asked Questions for answers to commonly asked questions about our products and services.
參考資料
1.
Prier CK, Rankic DA, MacMillan DWC. 2013. Visible Light Photoredox Catalysis with Transition Metal Complexes: Applications in Organic Synthesis. Chem. Rev.. 113(7):5322-5363. https://doi.org/10.1021/cr300503r
2.
Fukuzumi S, Ohkubo K. Organic synthetic transformations using organic dyes as photoredox catalysts. Org. Biomol. Chem.. 12(32):6059-6071. https://doi.org/10.1039/c4ob00843j
3.
Shaw MH, Twilton J, MacMillan DWC. 2016. Photoredox Catalysis in Organic Chemistry. J. Org. Chem.. 81(16):6898-6926. https://doi.org/10.1021/acs.joc.6b01449
4.
Romero NA, Nicewicz DA. 2016. Organic Photoredox Catalysis. Chem. Rev.. 116(17):10075-10166. https://doi.org/10.1021/acs.chemrev.6b00057
5.
Skubi KL, Blum TR, Yoon TP. 2016. Dual Catalysis Strategies in Photochemical Synthesis. Chem. Rev.. 116(17):10035-10074. https://doi.org/10.1021/acs.chemrev.6b00018
6.
Poplata S, Tröster A, Zou Y, Bach T. 2016. Recent Advances in the Synthesis of Cyclobutanes by Olefin [2+2] Photocycloaddition Reactions. Chem. Rev.. 116(17):9748-9815. https://doi.org/10.1021/acs.chemrev.5b00723
7.
Kärkäs MD, Porco JA, Stephenson CRJ. 2016. Photochemical Approaches to Complex Chemotypes: Applications in Natural Product Synthesis. Chem. Rev.. 116(17):9683-9747. https://doi.org/10.1021/acs.chemrev.5b00760
登入以繼續
若要繼續閱讀,請登入或建立帳戶。
還沒有帳戶?為便利客戶閱讀,此頁面中文以機器翻譯完成。雖然我們已盡力確保機器翻譯的準確性,但機器翻譯並非完美。如果您對機器翻譯的內容不滿意,請參考英文版本。











![Ir[p-F(t-Bu)-ppy]3](/deepweb/assets/sigmaaldrich/product/structures/189/186/7badaac3-82af-4109-aab5-dea3a3aa916d/640/7badaac3-82af-4109-aab5-dea3a3aa916d.png)

![Ir[dF(t-Bu)-ppy]3](/deepweb/assets/sigmaaldrich/product/structures/254/294/d0fb19e5-05b2-4c1b-990b-a99fa60b3e73/640/d0fb19e5-05b2-4c1b-990b-a99fa60b3e73.png)
![[Ir(dFCF3ppy)2-(5,5’-dCF3bpy)]PF6 ≥95%](/deepweb/assets/sigmaaldrich/product/structures/422/901/e00f3148-fb86-4f94-9e79-21d064c3f327/640/e00f3148-fb86-4f94-9e79-21d064c3f327.png)
![[Ir(dFOMeppy)2-(5,5′-dCF3bpy)]PF6 ≥95%](/deepweb/assets/sigmaaldrich/product/structures/401/909/9c746f9e-e2f3-41bc-94d2-6ef5c913fcc5/640/9c746f9e-e2f3-41bc-94d2-6ef5c913fcc5.png)









