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Home
Expertise Library
Automated Reactors
Automated Reactors
Importance of Mixing
Calibration Free Supersaturation Assessment
Reaction Progress Kinetic Analysis (RPKA)
DoE to Peptide Synthesis
Avoiding Incidents at Scale-up
Teaching Chemical Kinetic Experimentation
Selective Flow Chemistry
Impact of FTIR Studies on the Understanding of Asymmetric Rhodium Catalyzed Carbenoid Reactions
Nitroalkane Chemistry by WeylChem
Improving Crystallization and Precipitation
In Situ Flow Technology to Continuous Processing - Part II
Optimize Separations in Dark Crude Oil
Energetic Material Process Development
Eliminating Micronization Using Fine Particle Crystallization
Mixing for Heterogeneous, Continuous Processes
Polymerization Process Monitoring
Improve Purification of Biological Systems
Hydrogenation and High Pressure Reaction Monitoring
Calorimetry in Chemical Development
De-Emulsification and Emulsification of Petroleum-Water
Online Monitoring of MicroEncapsulation
Emulsion Formulation in Consumer Products
Implementing In-Situ Process FTIR in a Plant Environment
Flocculation in Bioseparations
Rationalizing Unusual Kinetics in C-H Activations
4 Guidelines For FTIR PAT
Infrared Monitoring of Carbocationic Polymerization of Olefins
Real Time Microscopy For Particles, Crystals and Droplets
Understanding Scale-up Risks in Early-Stage Process Development
Sampling of Chemical Reactions at Pfizer
Lubrizol's Efficient Scale-Up & Process Control
Using Data-Rich Experimentation to Enable the Development of Continuous Processes
Reaction Calorimetry in the Chemical Industry
Modeling Batch Crystallization
Accelerated Process Development
Development of Continuous Flow Chemistry Using Online PAT Analysis
Pharmaceutical Drug Substance Crystallization
Wet Milling Impact on Particle Size
Liquid-Liquid Phase Separation in Crystallization
Flow and Batch Chemistry Monitoring
Development of an Alkylation Reaction
Reaction Discovery and Development with Kinetics
Determine Crystal Growth Kinetic Parameters From Experimental Data
Reactive Crystallization and Recrystallization for Energetic Material
Optimization of a Crystallization Process at Roche
Safe Handling of Hydrogen Peroxide
Process Safety for 1M BTHF in the Plant
Process Development of Organosilicon Flame Retardants
Continuous Flow Chemistry for API Manufacturing
Process Development and Kinetic Understanding
New Radical Reactions Enabled by In Situ Reaction Monitoring
Ensure Uninterrupted Pipe Flow
Modeling & Feedback Control of Batch & Continuous Crystallization Systems
Monitor a Single Vessel Batch Protein Crystallization Process
Nucleation & Growth Kinetics for Combined Cooling & Antisolvent Crystallization in an MSMPR System
Reaction Engineering for Robust & Scalable Process Design
Isothermal Calorimetry for Safe Reactor Design
Small Molecule Drug Development with Multi-Scale PAT
Aluminum Phosphate Vaccine Adjuvants
Process Characterization for Low pH Virus Inactivation
Real-Time Monitoring of Downstream Biologics Operations
Challenges in Process Safety Assurance of a Hazardous Epoxidation
Impact of Process Intensification on Process Safety
Aluminum Adjuvant Process Understanding and Control
Automation at AbbVie
Viral Inactivation in Bioprocess Development
Investigating a Complex Polymorph and Pseudo-Polymorph Landscape
Monitoring and Detection of Byproduct Crystallization
Implementation of Continuous Crystallization to Circumvent Metastable Liquid-Liquid Separation
Accelerate Process Development with Flow Technologies
Oligonucleotide and Nucleic Acid Synthesis
End Game: Technology Development for Continuous Isolation
Journey to the New Normal
Rapid Process Design of Agrochemical Crystallization
Phase Separation in Polymer Solutions and Gels
In-situ Monitoring of Acrylonitrile Addition
Automation and Information Management Impact at AbbVie
Leveraging Automation and PAT in the Next Normal
Two Approaches to Effective Particle Size and Impurity Control
Incorporating Computer Vision Into Crystallization Workflows
Mapping Solvate Behavior of an API Intermediate
Continuous Safety Improvements to Avoid Runaway Reactions
Data-Rich Experimentation Across Scale
Development of a Semi-Continuous Manufacturing Process
Real-Time Oligonucleotide Sequence Confirmation
PAT for the Future of Oligonucleotide Manufacturing
Webinar: Enhance Process Development in Flow Leveraging Inline DRE and Automation
Webinar: Organolithium Compounds in Organic Synthesis
Monitoring Virus Aggregates and Drug Substance Concentrations in a TFF Process
Developing Robust and Scale-able Peptide Isolation Processes
Measurement of Surfactant Concentration in Viral Vaccine Downstream Processing
The Power of PAT at Scale in an API Pilot Plant
Use of a Semi-Automated Crystallizer to Study Oiling-Out and Agglomeration
Insights into Reaction Pathways of Taurine Synthesis from Ethanolamine
In-situ IR Study of Thermoplastic Polyurethane (TPU) Reactions
Democratizing PAT to Enable Kinetic Analysis and Modeling
Kinetic Modeling of Chemical Reactions
Crystallization Design to Avoid Liquid-Liquid Phase Separation
Investigating a Serious Runaway Reaction Incident using Reaction Calorimetry
Estimate Stoessel Classification for Reaction Hazards
High Throughput Auto-Sampling
Development of a Transfer Hydrogenation Controlled by Nitrogen Flow
Conductivity: Simple Tool for Reaction Monitoring
Mechanistic Understanding Guides Impurity Control Strategy for CELMoD API Reaction
Chemical Kinetics Simulation
Continuous Manufacturing of Beta-Lactam Antibiotics
Development and Scale up of Cryogenic Lithiation in Continuous Flow Reactors
Cell Culture Media Solution Preparation
Efficient Ultrafiltration/Diafiltration Process Development
Centrifugation and Depth Filtration Process Development
Digitalization of Lab Data
AstraZeneca's Journey to Lab Digitalization
Bringing Structure to an Unstructured Lab
Accelerated Development of Complex Chemical Processes Using Hybrid Modeling
Practical Application of Mechanism & Kinetics in the Development Pipeline
Bayer’s Approach to Bring Spectroscopy from the Lab into the Process
Application of Computer Vision in Pharmaceutical Crystallization Processes
Control Polymorph Particle Size and Purity Through Crystal Engineering
Effect of Low-Level Organic Impurities on Pharmaceutical Crystallization Kinetics and Impact on Physical Properties
Development of Modeling Enhanced Work Streams to Optimize the Scale-up of Solvent Switches
Automated Alternative to Manual Solution Sampling in Solid-Liquid Systems
Applications of Data Rich Experimentation
Automated Sampling and Analysis of Process Solution
Continuous Primary Processing Facilitated by PAT
Scaling-up Potentially Runaway Systems Using Calorimetry
Continuous Crystallization of Paracetamol Using NiTech COBC
Crystallization Modeling with Dynochem
Automated Metabolite Control for Bioprocesses in Vaccine Manufacturing
Mechanistic Modeling of Tangential Flow Filtration to Guide Process Development
Process Analytical Technology Controlled, and Improved Crystallization Processes
Webinar: Sustainable Chemistry with In-Situ FTIR
High-Purity Lithium Carbonate via Controlled Crystallization
Flow Chemistry as a Tool in Reaction Mechanism Elucidation
Webinar: Demonstration of Inline Particle Analysis PAT for Bioprocess Harvesting
Webinar: Flow Chemistry as a Powerful Tool to Enable the Scale-up of APIs
Webinar: Continuous Flow Process Optimization and Control Using Multiple Orthogonal PAT
Webinar: Continuous Grignard Reagent Generation and Use for a Highly Potent API
Webinar: Green Solvent Swap Distillation
Webinar: Modern Chemical Reaction Engineering and Technology
pDADMAC Flocculation Reagent Studies
Webinar: Expedite Crystallization Processes
Webinar: In-Situ FTIR Spectroscopy to Study Reaction Kinetics
Webinar: Late-Stage Pharmaceutical Development of Nemtabrutinib (MK-1026) at MSD
Webinar: Inline Monitoring of Protein Concentration with FTIR Spectroscopy during UF/DF
PAT and Model-Based Approach to Accelerate Biopharma Process Development
Webinar: Batch to Flow Chemistry
Webinar: Process Safety in the Pharmaceutical Industry
Webinar: Hydrogenation Process Safety and Process Performance
Webinar: Calorimetric and Modeling Techniques for Amidation Reactions
PAT-Guided Development of a Mixing-Dependent, Slow-Filtering Crystallization System
Crystallization Process to Yield Battery Grade Lithium
Automated Crystallization Platforms for Accelerated Process Development
Edge I/O for Connecting Data to iC & Automated EasyMax Distillation
Accessing Cycloparaphenylenes and Azobenzenes via Flow Chemistry
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