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宾夕法尼亚大学博士光反应器M2
宾夕法尼亚大学PhD光反应器是一款完整的光氧化还原催化反应装置。该台式仪器配备可调LED光源(波长范围365至450纳米)、机械搅拌系统及冷却装置。反应器支持多种规格的反应瓶,包括GC瓶、4毫升、8毫升、20毫升及40毫升规格。
相关资源
- White Paper: Illuminating Progress: Recent Advances in Photoredox Catalysis
This white paper explores recent advances, including mechanisms like single-electron transfer, novel bond-forming reactions, and breakthroughs in scaling through flow chemistry.
- Brochure: Illuminated Synthesis
Photoredox catalysis and photoreactors enable reproducibility in your research.
- User Guide: Photoredox Catalysis
Photoredox Catalysis desk reference and user’s guide.
- Article: Visible-light Photoredox Catalysis
Photoredox chemistry is a powerful tool in organic synthesis. Find the right photoreactor for your experiment.
- Article: Nicewicz Photoredox Catalysts for Anti-Markovnikov Alkene Hydrofunctionalization
Explore our portfolio of photoexcitable acridinium salts to facilitate olefin hydrofunctionalization with complete anti-Markovnikov selectivity.
- Article: Reducing Organic Photoredox Catalysts for Visible Light-Driven Polymer and Small Molecule Synthesis
Learn more about our phenoxazine and dihydrophenazine organic photoredox catalysts for photoredox catalysis.
- Article: Scale-Up Guide: Photocatalysis Reaction
Read up on our general guidelines for scaling up photocatalysis reactions with our SynLed Parallel and Penn PhD photoreactors.
- Article: Photoredox Iridium Catalyst for Single Electron Transfer (SET) Cross-Coupling
Browse our selection of novel catalysts developed in collaboration with the Gary Molander Group for high-yielding SET reactions.
- Aldrichimica Acta 51.2
Read about the resurgence of electrochemical redox reactions in organic synthesis, conjunctive reagents in cross-coupling, and more in this issue.
- Aldrichimica Acta 52.1
Explore sustainable alternatives to precious-metal-based photoredox catalysts and titanium salalen catalysts in this issue.
- Aldrichimica Acta 54.1
Take a deep dive into preparative batch-type electrosynthesis, reductive electrosynthesis, and emerging trends in organic electrocatalysis.
相关网络研讨会
在本场网络研讨会中,您将了解光氧化还原催化的多功能性,商业化光反应器的最新应用进展,优化反应条件的策略,以及将光氧化还原催化技术扩展至更广泛亲核试剂范围的实践方法。
在本场网络研讨会中,您将探索光催化如何影响绿色化学的发展——从先进催化剂的设计,到其在制药等行业及重要化合物合成等领域的工业应用潜力。
观看这场富有洞见的网络研讨会,探索光氧化还原催化剂在有机合成与高分子合成中的基础原理及应用。
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