光反应器
光反应器是一个集成式平台,可以稳定和可重复地进行光氧化还原催化反应。每个光化学反应器由光源和冷却系统组成,以保持反应物和产物的稳定性。
我们的光反应器为从筛选到放大的光化学反应提供了通用和高效的手段,兼容一系列波长,且允许多个光催化反应并行运行。
- SynLED平行光反应器2.0 – 下一代光氧化还原平行合成
- LightOx PhotoReact 365 光反应器 – 光化学和光生物学反应
- Penn PhD 光反应器M2 – 用户定义的参数包括温度、光强、风扇速度和搅拌。
还可以探索我们广泛的光催化剂产品组合,包括吖啶、铱和钌催化剂、可见轻金属复合光氧化还原催化剂和无金属有机催化剂,可满足您所有的光氧化还原化学需求。
LightOx PhotoReact 365 光反应器
台式 LightOx PhotoReact 365 光反应器使用稳定的直接紫外光催化光化学和光生物反应。研究人员可以完全控制光强度、能量输送率和时间,通过传感器监测,以获得快速、可重复的结果。反应器可使用标准尺寸的多孔板或单个 95 毫米圆盘。
Penn PhD Photoreacto M2
Penn PhD Photoreactor 是一款完整的光氧化还原催化反应器。 该台式仪器包括可变 LED 光源(在365至450nm)、机械搅拌和冷却装置。 反应器支持各种小瓶尺寸,包括 gc、4、8、20 和 40 mL。
相关产品资源
- 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
观看见解深刻的网络研讨会,了解光氧化还原催化剂在有机和大分子合成中的基本原理和应用。
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