Suppr超能文献

使用差示扫描量热法加速聚合催化:用于小型化和自动化动力学测量的工具包。

Using Differential Scanning Calorimetry to Accelerate Polymerization Catalysis: A Toolkit for Miniaturized and Automated Kinetics Measurements.

作者信息

McGuire Thomas M, Ning David, Williams Charlotte K

机构信息

Department of Chemistry, University of Oxford, Oxford OX1 3TA, U.K.

出版信息

ACS Catal. 2025 Apr 11;15(9):6760-6771. doi: 10.1021/acscatal.5c01758. eCollection 2025 May 2.

Abstract

Understanding catalysts, and improving their future performances, requires quantification of their kinetic and thermodynamic parameters, including measurement of rate constants ( ), transition state enthalpy barriers (Δ ) and polymerization enthalpy and entropy (Δ , Δ ). This work presents miniaturized and automated methods, conducted using common differential scanning calorimetry (DSC) instruments using <10 mg sample (polymer, solvent, initiator and catalyst), to reliably, accurately, and rapidly measure all these key catalyst performance parameters. The methods are tested using known and highly successful catalyst/alcohol systems (tin(II)bis(2-ethyl hexanoate), Sn(Oct), and benzyl alcohol, BnOH) for cyclic ester or carbonate ring-opening polymerizations, and a catalyst/ionic cocatalyst ((salcy)CrCl and BuNCl) system for epoxide/cyclic anhydride ring-opening copolymerizations-two growth fields in polymerization catalysis. The DSC-measured kinetic parameters are identical and less error prone than those determined using conventional lab-scale experiments by aliquot removal. The DSC kinetics are measured using significantly smaller amounts of materials, 600x less sample, while being significantly more time-efficient. The methods are successfully demonstrated in both neat monomer (bulk) and in solution phase reactions, both of which are common in catalyst testing and application to yield highly reproducible and accurate quantification of catalyst turn over frequency values, rate constants, activation parameters, and rate-determining transition-state enthalpies. In addition to quantifying kinetic parameters, a second methodology is exemplified for two cyclic carbonates, enabling measurement of polymerization enthalpy and entropy change. The paper outlines key recommendations that should enable researchers to apply the DSC method in polymerization catalysis.

摘要

要理解催化剂并改善其未来性能,需要对其动力学和热力学参数进行量化,包括速率常数( )、过渡态焓垒(Δ )以及聚合焓和熵(Δ ,Δ )的测量。本文介绍了一种小型化的自动化方法,该方法使用常见的差示扫描量热法(DSC)仪器,样品量小于10 mg(聚合物、溶剂、引发剂和催化剂),能够可靠、准确且快速地测量所有这些关键的催化剂性能参数。这些方法通过用于环状酯或碳酸酯开环聚合的已知且非常成功的催化剂/醇体系(二(2-乙基己酸)锡(II),Sn(Oct),和苄醇,BnOH)以及用于环氧化物/环状酸酐开环共聚的催化剂/离子助催化剂((水杨醛)CrCl和BuNCl)体系进行测试,这是聚合催化中的两个发展领域。通过DSC测量得到的动力学参数与使用传统实验室规模实验通过等分取样测定的参数相同,且误差更小。DSC动力学测量使用的材料量显著更少,样品量减少了600倍,同时效率显著更高。这些方法在纯单体(本体)和溶液相反应中均成功得到验证,这两种反应在催化剂测试和应用中都很常见,能够高度可重复且准确地量化催化剂的周转频率值、速率常数、活化参数以及速率决定过渡态焓。除了量化动力学参数外,还举例说明了一种用于两种环状碳酸酯的第二种方法,能够测量聚合焓和熵变。本文概述了一些关键建议,应能使研究人员在聚合催化中应用DSC方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d386/12053833/7133e96abfb8/cs5c01758_0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验