Discrimination of papers used in conservation and restoration by the means of the voltammetry of immobilized microparticles technique

Literature Information

Publication Date 2019-08-06
DOI 10.1039/C9AY00998A
Impact Factor 2.896
Authors

Carolina Mai, Andrea Haba-Martínez, Antonio Doménech-Carbó


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Abstract

Herein, voltammetry of immobilized microparticles (VIMP) is employed for the discrimination of papers used in the conservation and restoration field. The electrochemical parameters are used for the discrimination of different samples coming from China, Japan and Korea. The method is based on the recording of the voltammetric response of microparticulate deposits from acetone extracts of paper samples deposited on a glassy carbon electrode in contact with 1.0 M H2SO4. The voltammetric responses attributed to the lignin and the oxidation products of the cellulose were collected and are discussed. The grouping of samples was obtained upon the application of the chemometric methods, as well as the ratio between the prominent voltammetric peaks. In the first case, chemometrics allows identification of the different papermaker production techniques amongst the samples, while the experimental data permits the grouping of the papers according to their internal chemical differences. The proposed method aims at help the archaeometric study of papers using a micro-invasive method, which allows the chemistry and the manufacturing methods of ancient papers to be distinguished.

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Analytical Methods

Analytical Methods
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Analytical Methods welcomes early applications of new analytical and bioanalytical methods and technology demonstrating the potential for societal impact. We require that methods and technology reported in the journal are sufficiently innovative, robust, accurate, and compared to other available methods for the intended application. Developments with interdisciplinary approaches are particularly welcome. Systems should be proven with suitably complex and analytically challenging samples. We encourage developments within, but not limited to, the following technologies and applications: global health, point-of-care and molecular diagnostics biosensors and bioengineering drug development and pharmaceutical analysis applied microfluidics and nanotechnology omics studies, such as proteomics, metabolomics or glycomics environmental, agricultural and food science neuroscience biochemical and clinical analysis forensic analysis industrial process and method development

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