New Publication in Nanoscale

🔦 From Publication to Platform: Advancing Photochemistry with the Arrow Photo Flow Reactor

We’re excited to see the Arrow Photo Flow Reactor featured in a new peer-reviewed publication in Nanoscale (RSC, 2025), demonstrating how well-engineered photo-flow technology can unlock new possibilities in light-driven chemistry.

📄 Read the paper here: https://doi.org/10.1039/D5NR03832D

🚀 Why the Arrow Photo Flow Reactor stands out
The Arrow reactor is purpose-built for photochemical and photocatalytic research, combining precise optical control with continuous-flow advantages:

• Uniform and efficient photon delivery
• Excellent heat and mass transfer
• High reproducibility across experiments
• Safe handling of reactive and light-sensitive intermediates

These features make it an ideal tool for translating fundamental photochemistry into robust, publishable results.

🔬 Proven in cutting-edge academic research
The newly published work highlights how controlled photo-flow conditions enable:

• Improved reaction efficiency and selectivity
• Reliable kinetic and mechanistic studies
• Scalable and reproducible photochemical processes

This is exactly what academic groups need when moving from proof-of-concept experiments to impactful publications.

🧩 A reactor that adapts to your research
The Arrow Photo Flow Reactor is modular and reconfigurable, making it suitable for:

• Photoredox catalysis
• Nanomaterial synthesis
• Sustainable light-driven transformations
• Method development and student training

One platform—multiple projects, multiple publications.

📩 Interested in the Arrow Photo Flow Reactor, available configurations, or 2025 academic pricing? Get in touch to discuss how the Arrow can support your next photochemistry breakthrough.

From Batch to Flow Plasmon Catalysis: Revealing Mass Transport Limits in Au@Pd Nanocatalysts for Suzuki Coupling

Nanoscale, 2025,

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