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Simplifying Complex Chemistry: Discover the new ChemSynt 301 Synthesis Reactor

A new modular reaction station designed to accelerate process development, optimize synthesis workflows, and support reliable scale-up studies.
Simplifying Complex Chemistry: Discover the new ChemSynt 301 Synthesis Reactor
Simplifying Complex Chemistry: Discover the new ChemSynt 301 Synthesis Reactor
Innovation starts with knowledge. The ability to observe, control, and learn from every experiment is what transforms promising ideas into robust and scalable processes.

Chemical synthesis is at the core of pharmaceutical, API, fine chemical, and academic research laboratories. Yet developing a robust and scalable process often requires extensive experimentation, continuous monitoring, and precise control of multiple reaction parameters.

The new ChemSynt 301 Reaction Station is designed to help scientists develop, understand, and optimize chemical processes with greater confidence.

By integrating temperature control, stirring, reagent dosing, pH management, and real-time data acquisition into a single, easy-to-use platform, ChemSynt 301 simplifies complex workflows while providing complete visibility into reaction behavior.
From early process definition to optimization and scale-up studies, it helps laboratories improve reproducibility, reduce manual intervention, and generate deeper process knowledge.
 
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What if Every Experiment Could Teach You More?

Every second of an experiment contains valuable information.
Every parameter can reveal new opportunities for optimization.

By continuously capturing critical process data, ChemSynt 301 enables scientists to move beyond simply running experiments and toward a deeper understanding of chemical processes.

Because the future of process development is not just about automation.
It's about making better decisions through better understanding.

A Dynamic Platform for Process Development and Optimization

A Dynamic Platform for Process Development and Optimization
ChemSynt 301 integrates all critical synthesis parameters into a modular, scalable station designed to evolve with laboratory needs.

The system combines programmable temperature control, automated reagent dosing, continuous pH monitoring, and both magnetic and mechanical stirring configurations. Data logging with up to 1-second resolution enables full visibility of reaction evolution while maintaining complete traceability of experimental conditions.

Real-time acquisition of temperature, pH, dosing events, and stirring conditions provides the insights needed to identify trends, understand reaction behavior, and support informed development decisions.

The modular architecture allows laboratories to start with a single reaction station and expand up to four independent units. Each unit operates independently while remaining fully integrated within the system, supporting efficient reaction screening, process development, and optimization.

Why ChemSynt 301 is Different

Why ChemSynt 301 is Different
  • Full control of synthesis parameters: temperature, stirring, dosing, and pH
  • Continuous data logging with up to one-second resolution for complete process understanding
  • Integrated heating and cooling from -40 °C to +150 °C
  • Flexible reactor configurations ranging from parallel screening vials to 100 mL and 400 mL process-development glass reactors
  • Magnetic and mechanical stirring with multiple PTFE impeller geometries
  • Single or dual automated dosing units for reagent addition and pH control
  • Expandable architecture supporting up to four independent reaction stations
  • User-friendly Control Pad and software for real-time monitoring and data management
From early route exploration to scale-up studies, ChemSynt 301 delivers the control and flexibility needed to accelerate development and improve reproducibility.

Watch the exclusive premiere presentation

Join our webinar to discover how ChemSynt 301 can simplify complex chemistry, improve process understanding, and support faster development from laboratory experimentation to industrial scale-up.
 
Register to the webinar
09/07/2026
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