High-Throughput Electrochemical Synthesis and Real-Time Monitoring Platform
High-Throughput Electrochemical Synthesis and Real-Time Monitoring Platform
This platform essentially combines high-throughput photoelectrochemical synthesis with real-time reaction calorimetry and telemetry in a parallelized reaction workflow. Miniaturized photoelectrochemical devices transform standard well plates into multiple
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详细介绍
Product Overview
This platform essentially combines high-throughput photoelectrochemical synthesis with real-time reaction calorimetry and telemetry in a parallelized reaction workflow. Miniaturized photoelectrochemical devices transform standard well plates into multiple independent electrochemical reaction units, enabling dozens to hundreds of reactions to be performed in parallel, while real-time calorimetric monitoring continuously tracks reaction progress, kinetics, and endpoints. It is particularly suited for high-throughput organic electrosynthesis, reaction-condition screening, and drug discovery, where both reaction scale and real-time process information are important.
Product Advantages
High-throughput parallel reactions: Enables a large number of independent electrochemical reactions to be performed simultaneously in a standard microplate format, significantly increasing screening efficiency.
Reduced sample and reagent consumption: Miniaturized reaction volumes help reduce the amount and cost of substrates, reagents, and other experimental materials required for screening.
Highly parallelized reaction optimization: Different substrates, catalysts, electrolytes, potentials, and reaction conditions can be evaluated simultaneously to accelerate condition screening.
Real-time reaction information: Provides continuous process data rather than relying only on final product analysis, helping researchers evaluate reaction kinetics and endpoints.
Automation-friendly workflow: The standard microplate format can be readily integrated into automated liquid handling and high-throughput experimental workflows.
Data-driven reaction optimization: Combines high-throughput experimentation with real-time process information to establish clearer relationships between reaction conditions and performance.
Main Product Features
Standard 96-well plate compatibility: Uses a conventional microplate format, allowing the system to fit naturally into existing laboratory workflows.
Miniaturized photoelectrochemical reaction units: Integrates photo-driven electrochemistry into compact individual reaction units for electrosynthesis.
No conventional large electrochemical reactor required: Replaces traditional setups such as beakers and H-type electrochemical cells with miniaturized reaction architecture.
Individually addressable reactions: Each well can function as an independent electrochemical reaction environment, allowing different experimental conditions to be configured.
Single-use SPECS reaction components: Designed for single-use operation, enabling rapid replacement between experiments.
Real-time SENSE telemetry: Uses non-invasive sensing to continuously capture signals associated with the reaction process.
Low-volume reaction format: Designed for microscale samples and small-volume electrosynthesis experiments.
Modular configuration: The high-throughput electrosynthesis and real-time monitoring functions can be combined according to experimental requirements.
Application Areas
Organic Electrosynthesis: Development and optimization of electrochemical organic reactions by screening substrates, electrolytes, electrodes, and reaction conditions.
Medicinal Chemistry: Development of synthetic methods and reaction conditions for pharmaceutical molecules and intermediates.
High-Throughput Reaction Screening: Rapid evaluation of large numbers of electrochemical reaction parameters to identify optimal reaction windows and conditions.
Reaction Mechanism Studies: Investigation of reaction kinetics, reaction rates, and endpoints using real-time reaction signals.
Synthetic Chemistry & Method Development: Exploration of new electrochemical synthetic routes, catalytic systems, and reaction methodologies.
Drug Discovery & Lead Development: Early-stage screening of large numbers of candidate reactions and molecular synthesis strategies.
Electrochemical Catalysis: Evaluation of how different catalysts, electrode materials, and electrochemical conditions affect reaction performance.
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详细参数
Product Specifications
1. High-Throughput Photoelectrochemical Synthesizer
Product Type: Miniaturized photoelectrochemical synthesis platform
Throughput: Supports hundreds of parallel reactions
Reaction Volume: 1 mL or 4 mL
Reaction Vessels: 1 mL inserts or 4 mL vials
Driving Method: Light-powered electrochemistry
Reaction Format: Multiple independent reaction units operated in parallel
Experimental Format: Microscale, high-throughput parallel reactions
Platform Format: Compatible with standard well-plate and high-throughput workflows
Main Applications: Organic electrosynthesis, reaction-condition screening, medicinal chemistry, drug discovery, and synthetic-method development
2. Real-Time Reaction Calorimetry and Telemetry System — 4-Channel
Product Type: Multi-channel real-time reaction calorimetry and telemetry system
Monitoring Channels: 4 independent reaction channels
Dimensions: 60 × 60 × 67 mm
Calorimetric Sensitivity: 20 mK
Operating Temperature: 10–80°C
Connectivity: USB-C / Bluetooth
Continuous Monitoring: Up to approximately one week
Data Output: CSV
Software Compatibility: Windows / Mac
Main Function: Real-time monitoring of reaction heat signals and reaction dynamics
3. Real-Time Reaction Calorimetry and Telemetry System — 24-Channel
Product Type: Multi-channel real-time reaction calorimetry and telemetry system
Monitoring Channels: 24 independent reaction channels
Dimensions: 127.76 × 85.48 × 72.00 mm
Calorimetric Sensitivity: 20 mK
Operating Temperature: 10–80°C
Connectivity: USB-C / Bluetooth
Continuous Monitoring: Up to approximately one week
Data Output: CSV
Software Compatibility: Windows / Mac
Main Function: Parallel real-time monitoring, reaction calorimetry, and reaction-progress tracking
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产品特色
因用于机器人各方面应用且与大多数机器人类型兼容,AutoCal系统可以检测出机器人自身构造和工具中心点(TCP)的 突然改变或偏离,并且该系统无需人为干涉就自动地更正这些误差。
AutoCal系统-Dynalog的先进水平校准技术,Dynalog是机器人单元标定技术的世界领导者。它的主流产品DynaCal 系统,被应用于离线的机器人单元校准,并作为最精确的和技术先进的机器人校准程序为许多机器人制造商和终端使用者所接受。AutoCal 系统将已证实的DynaCal校准技术结合到一个在线的全自动系统中,该系统专为程序控制和复原而设计的,价格低廉。
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详细介绍
AutoCal系统提供在线的机器人校准方案,旨在快速和自动地保证机械设备的工作性能。因用于机器人各方面应用且与大多数机器人类型兼容,AutoCal系统可以检测出机器人自身构造和工具中心点(TCP)的 突然改变或偏离,并且该系统无需人为干涉就自动地更正这些误差。这意味着不用猜测哪里会出错,不用浪费宝贵时间在机器人程序重复校准上,产品品质无任何损失。
AutoCal系统-Dynalog的先进水平校准技术,Dynalog是机器人单元标定技术的世界领导者。它的主流产品DynaCal 系统,被应用于离线的机器人单元校准,并作为最精确的和技术先进的机器人校准程序为许多机器人制造商和终端使用者所接受。AutoCal 系统将已证实的DynaCal校准技术结合到一个在线的全自动系统中,该系统专为程序控制和复原而设计的,价格低廉。