4.7 Article

First report on the kinetics of the uncatalyzed esterification of cellulose under homogeneous reaction conditions: a rationale for the effect of carboxylic acid anhydride chain-length on the degree of biopolymer substitution

Journal

CELLULOSE
Volume 19, Issue 1, Pages 199-207

Publisher

SPRINGER
DOI: 10.1007/s10570-011-9622-z

Keywords

Kinetics of the homogeneous acylation of cellulose; Activation parameters of the acylation of cellulose in LiCl/DMAc; Acylation of cyclohexylmethanol; Acylation of trans-1,2-cyclohexanediol

Funding

  1. FAPESP (State of Sao Paulo Research Foundation)
  2. CNPq (National Council for Scientific and Technological Research)
  3. TWAS (The Academy of Sciences for the Developing World)

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The kinetics of the homogeneous acylation of microcrystalline cellulose, MCC, with carboxylic acid anhydrides with different acyl chain-length (Nc; ethanoic to hexanoic) in LiCl/N,N-dimethylacetamide have been studied by conductivity measurements from 65 to 85 A degrees C. We have employed cyclohexylmethanol, CHM, and trans-1,2-cyclohexanediol, CHD, as model compounds for the hydroxyl groups of the anhydroglucose unit of cellulose. The ratios of rate constants of acylation of primary (CHM; Prim-OH) and secondary (CHD; Sec-OH) groups have been employed, after correction, in order to split the overall rate constants of the reaction of MCC into contributions from the discrete OH groups. For the model compounds, we have found that k((Prim-OH))/k((Sec-OH)) > 1, akin to reactions of cellulose under heterogeneous conditions; this ratio increases as a function of increasing Nc. The overall, and partial rate constants of the acylation of MCC decrease from ethanoic- to butanoic-anhydride and then increase for pentanoic- and hexanoic anhydride, due to subtle changes in- and compensations of the enthalpy and entropy of activation.

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