化学
替代(逻辑)
纤维素
固态核磁共振
固态
增稠
羟乙基纤维素
化学工程
有机化学
组合化学
高分子科学
核磁共振
物理化学
工程类
程序设计语言
计算机科学
物理
作者
Chloé Gioiosa,Kshama Sharma,Thomas C. Robinson,David Gajan,Sami Jannin,Ségolène Laage,Anne Lesage
标识
DOI:10.1021/acs.analchem.5c00487
摘要
Hydroxyethyl cellulose (HEC) is a widely used industrial thickening agent added to formulations such as water-based lubricants. The nature and location of the substituents on the cellulose backbone impact its physicochemical properties. In this study, we investigated the functionalization pattern of a commercially available HEC sample using a multifaceted solid-state NMR study. First, leveraging the substantial signal amplification provided by Dynamic Nuclear Polarization (DNP), we performed a 13 C– 13 C DNP-enhanced refocused INADEQUATE experiment on natural abundance HEC. This enabled the identification of the substitution sites within the cellulose backbone. Then, we acquired a room-temperature quantitative single-pulse 13 C spectrum to quantify the length and distribution of the functionalized groups. This approach comprehensively describes the HEC substitution scheme, yielding crucial structural information. We unambiguously identified two substitution sites C2 and C6, and determined their degree of substitution (respectively 75 and 60%), as well as the ratio between single and multiple hydroxyethyl groups (33%). The proposed methodology opens the way to the development of new industrial analytical tools to ensure the quality and consistency of hydroxyethyl cellulose in its solid state or in complex formulations.
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