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Dec 30, 2023

EasyMax from METTLER TOLEDO : Quote, RFQ, Price and Buy

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Better chemical synthesis for more successful experiments. Replace the round bottom flask.

Chemical synthesis reactors are alternatives to ice baths, glass reactors, oil baths, and jacketed lab reactors. EasyMax and OptiMax chemical synthesis reactors are well established in almost all laboratories in the pharmaceutical and chemical industries.

Image Credit: METTLER TOLEDO

The advanced synthesis reactors permit accurate and precise management of reaction parameters, including dosing, stirring, sampling, and temperature control, allowing every chemist to carry out reproducible reactions. Experiments can be performed unattended 24/7, and all data are automatically saved and can be visualized and controlled either from the computer or touchscreen.

Chemical synthesis reactors reinvent the way the researchers work, thereby allowing them to produce more data per experiment to provide life-changing products quicker and more efficiently.

EasyMax 102 Basic and EasyMax 402 Basic chemical synthesis reactors from METTLER TOLEDO enable chemists to find new synthetic pathways and create elegant chemistry by investigating reaction conditions from −40 °C to 180 °C without an oil bath, ice bath, heating mantle, or cryostat. Reactions can be carried out from 1 to 400 mL, controlling reaction factors such as temperature, pH, or dosing accurately so that ideal conditions can be swiftly identified.

Image Credit: METTLER TOLEDO

EasyMax 102 Advanced and EasyMax 402 Advanced chemical synthesis reactors help researchers quickly investigate reaction parameters, even under challenging conditions. Simplification of the user interaction enables more successful experiments to be carried out and the design of experiment studies (DoE) to be finished quickly.

Image Credit: METTLER TOLEDO

Non-scalable reaction parameters and ideal conditions can then be identified confidently. Reactions can take place totally unattended, day or night, allowing researchers to synthesize new compounds, remove non-viable candidates early, and safely enhance the reaction in a short span of time.

OptiMax lab reactor systems are built to enhance process conditions in the liter scale and provide researchers with the chance to make knowledgeable and trusted decisions. The small footprint, robust heating/cooling system, and ability to safely carry out reactions unattended make OptiMax a suitable tool for process development.

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The optional upgrade to a Reaction Calorimeter delivers vital thermodynamic data, helping researchers recognize unsafe reaction conditions when scaling up.

EasyMax and OptiMax chemical synthesis reactors combine effortlessly with the real-time in situ Process Analytical Technology (PAT) probes, such as ReactIR, EasySampler, ParticleTrack, or ParticleView. All data and events are saved and reports are generated in a single click. Due to the complete understanding of any process scale-up problems, researchers can deliver grams or kilograms of materials quicker and safer.

Image Credit: METTLER TOLEDO

Listed below is a selection of publications about chemical synthesis reactors:

a1006XL Robotic Mass Comparator from METTLER TOLEDO

Advanced Portable Conductivity Meter from METTLER TOLEDO

Advanced Portable pH Meter from METTLER TOLEDO

Comparator XPR2004SC from METTLER TOLEDO

Comparator XPR64003LD5C from METTLER TOLEDO

CuvetteChanger from METTLER TOLEDO

Density2Go: Portable Density Meter from METTLER TOLEDO

DSC 3+ Thermal Analysis System from METTLER TOLEDO

e100 - Robotic Mass Comparator from METTLER TOLEDO

e5 Robotic Mass Comparator from METTLER TOLEDO

EasyPlus Benchtop Density Meters from METTLER TOLEDO

EasySampler from METTLER TOLEDO

Excellence Benchtop Conductivity Meter from METTLER TOLEDO

Excellence Benchtop Density Meter from METTLER TOLEDO

Excellence Benchtop pH Meter from METTLER TOLEDO

Excellence Benchtop Refractometers from METTLER TOLEDO

Excellence Melting Point Instruments from METTLER TOLEDO

Filter Weighing Solutions from METTLER TOLEDO

HC103 Halogen Moisture Analyzer from METTLER TOLEDO

HE73 Halogen Moisture Analyzer from METTLER TOLEDO

HP DSC 2+ — A High-Pressure Differential Scanning Calorimeter from Mettler-Toledo

HX204 Moisture Analyzer from METTLER TOLEDO

LabX Software from METTLER TOLEDO

LabX UV/VIS from METTLER TOLEDO

ME-T Analytical Balance from METTLER TOLEDO

ME-T Precision Balance from METTLER TOLEDO

ML-T Analytical Balance from METTLER TOLEDO

ML-T Precision Balances from METTLER TOLEDO

Moisture Analyzer Glass Fiber Filters from METTLER TOLEDO

Moisture Analyzer Sample Pans from METTLER TOLEDO

MP80 Melting Point System from METTLER TOLEDO

MS-TS Analytical Balance from METTLER TOLEDO

MS-TS Precision Balance from METTLER TOLEDO

OptiMax from METTLER TOLEDO

ParticleTrack from METTLER TOLEDO

Portable Refractometers from METTLER TOLEDO

Rainin BenchSmart™ 96 Semi-Automated Pipetting System from METTLER TOLEDO

Rainin BioClean Ultra Pipette Tips from METTLER TOLEDO

Rainin E4 XLS Electronic Adjustable Spacer Multichannel Pipette from METTLER TOLEDO

Rainin E4 XLS+ Electronic Multichannel Pipette from METTLER TOLEDO

Rainin Pipet-Lite XLS Multichannel Pipettes from METTLER TOLEDO

RC1mx from METTLER TOLEDO

ReactIR from METTLER TOLEDO

Softening Point with DP Excellence from METTLER TOLEDO

Spectrophotometer UV5Nano from METTLER TOLEDO

Spectrophotometer UV7 from METTLER TOLEDO

Standard Benchtop Conductivity Meter from METTLER TOLEDO

Standard Benchtop pH Meter from METTLER TOLEDO

STARe Thermal Analysis Software from Mettler-Toledo

Temperature Calibration Kit from METTLER TOLEDO

Thermal Analysis System DSC 3 from METTLER TOLEDO

Thermal Analysis System Flash DSC 2+ from METTLER TOLEDO

UV5 Spectrophotometer from METTLER TOLEDO

XPR Analytical Balances from METTLER TOLEDO

XPR Microbalances from METTLER TOLEDO

XPR Precision Balances from METTLER TOLEDO

XPR32003LD5C from METTLER TOLEDO

XSR Analytical Balances from METTLER TOLEDO

XSR Precision Balances from METTLER TOLEDO

Better chemical synthesis for more successful experiments. Replace the round bottom flask. Explore a Wide Range of Operating Conditions 24-Hour Unattended Experimentation Ensure Safe, Robust, and Scalable Processes Capture and Report all Chemistry Data Automated C hemical Synthesis Reactors in Journal Publications
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