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二氧化钛纳米颗粒上膦酸、羧酸和儿茶酚配体表面结合的定量测定与比较

Quantitative Determination and Comparison of the Surface Binding of Phosphonic Acid, Carboxylic Acid, and Catechol Ligands on TiO2 Nanoparticles.

作者信息

Zeininger Lukas, Portilla Luis, Halik Marcus, Hirsch Andreas

机构信息

Department of Chemistry and Pharmacy, Institute of Organic Chemistry, Henkestrasse 42, 91054, Erlangen, Germany.

Department of Materials Science, Organic Materials and Devices (OMD), Martensstrasse 7, 91058, Erlangen, Germany.

出版信息

Chemistry. 2016 Sep 12;22(38):13506-12. doi: 10.1002/chem.201601920. Epub 2016 Jul 21.

Abstract

The adsorption, desorption, co-adsorption, and exchange behavior of phosphonic acid, carboxylic acid, and catechol derivatives on the surface of titanium oxide (anatase) nanoparticles are investigated. Thermogravimetric analysis provides a facile and fast-track quantitative determination of the wet-chemical monolayer adsorption constants and grafting densities of ten adsorbates, all under neutral pH conditions. This characterization protocol allows straightforward quantification of the relevant thermodynamic data of ligand adsorption and a comparison of ligand adsorption strengths. The reported procedure is proposed as a universal tool and it should be applicable to many other colloidal metal oxide materials. Moreover, the determined values for the adsorption constants and the monolayer grafting densities provide a toolbox for the assessment of the adsorbates' behavior in desorption, exchange, and co-adsorption equilibria. This versatile evaluation procedure will help to identify optimal monolayer-surface combinations and to evaluate critical parameters, such as monolayer robustness, ligand exchange rates, or targeted mixed assembly of functionalities.

摘要

研究了膦酸、羧酸和儿茶酚衍生物在二氧化钛(锐钛矿)纳米颗粒表面的吸附、解吸、共吸附和交换行为。热重分析提供了一种简便快捷的定量测定方法,可在中性pH条件下测定十种吸附质的湿化学单层吸附常数和接枝密度。该表征方案能够直接量化配体吸附的相关热力学数据,并比较配体的吸附强度。所报道的方法被提议作为一种通用工具,应适用于许多其他胶体金属氧化物材料。此外,测定的吸附常数和单层接枝密度值为评估吸附质在解吸、交换和共吸附平衡中的行为提供了一个工具箱。这种通用的评估程序将有助于确定最佳的单层-表面组合,并评估关键参数,如单层稳定性、配体交换率或功能基团的靶向混合组装。

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