Gómez-Romero, P., & Sanchez, C. (2005). Hybrid materials. Functional properties. From Maya Blue to 21st century materials. New J. Chem., 29(1), 57-58. doi:10.1039/b416075b
Shepard, A. O. (1962). Maya Blue: Alternative Hypotheses. American Antiquity, 27(4), 565-566. doi:10.2307/277680
Arnold, D. E. (1971). Ethnomineralogy of Ticul, Yucatan Potters: Etics and Emics. American Antiquity, 36(1), 20-40. doi:10.2307/278020
[+]
Gómez-Romero, P., & Sanchez, C. (2005). Hybrid materials. Functional properties. From Maya Blue to 21st century materials. New J. Chem., 29(1), 57-58. doi:10.1039/b416075b
Shepard, A. O. (1962). Maya Blue: Alternative Hypotheses. American Antiquity, 27(4), 565-566. doi:10.2307/277680
Arnold, D. E. (1971). Ethnomineralogy of Ticul, Yucatan Potters: Etics and Emics. American Antiquity, 36(1), 20-40. doi:10.2307/278020
Van Olphen, H. (1966). Maya Blue: A Clay-Organic Pigment? Science, 154(3749), 645-646. doi:10.1126/science.154.3749.645
Jose-Yacaman, M., Rendon, L., Arenas, J., & Serra Puche, M. C. (1996). Maya Blue Paint: An Ancient Nanostructured Material. Science, 273(5272), 223-225. doi:10.1126/science.273.5272.223
Hubbard, B., Kuang, W., Moser, A., Facey, G. A., & Detellier, C. (2003). Structural study of Maya Blue: textural, thermal and solidstate multinuclear magnetic resonance characterization of the palygorskite-indigo and sepiolite-indigo adducts. Clays and Clay Minerals, 51(3), 318-326. doi:10.1346/ccmn.2003.0510308
Fois, E., Gamba, A., & Tilocca, A. (2003). On the unusual stability of Maya blue paint: molecular dynamics simulations. Microporous and Mesoporous Materials, 57(3), 263-272. doi:10.1016/s1387-1811(02)00596-6
Reinen, D., Köhl, P., & Müller, C. (2004). The Nature of the Colour Centres in‘Maya Blue’— the Incorporation of Organic Pigment Molecules into the Palygorskite Lattice. Zeitschrift für anorganische und allgemeine Chemie, 630(1), 97-103. doi:10.1002/zaac.200300251
Sánchez del Río, M., Martinetto, P., Somogyi, A., Reyes-Valerio, C., Dooryhée, E., Peltier, N., … Dran, J.-C. (2004). Microanalysis study of archaeological mural samples containing Maya blue pigment. Spectrochimica Acta Part B: Atomic Spectroscopy, 59(10-11), 1619-1625. doi:10.1016/j.sab.2004.07.027
Giustetto, R., Llabrés i Xamena, F. X., Ricchiardi, G., Bordiga, S., Damin, A., Gobetto, R., & Chierotti, M. R. (2005). Maya Blue: A Computational and Spectroscopic Study. The Journal of Physical Chemistry B, 109(41), 19360-19368. doi:10.1021/jp048587h
SÁNCHEZ DEL RÍO, M., MARTINETTO, P., REYES-VALERIO, C., DOORYHÉE, E., & SUÁREZ, M. (2006). SYNTHESIS AND ACID RESISTANCE OF MAYA BLUE PIGMENT*. Archaeometry, 48(1), 115-130. doi:10.1111/j.1475-4754.2006.00246.x
Doménech, A., Doménech-Carbó, M. T., & Vázquez de Agredos Pascual, M. L. (2006). Dehydroindigo: A New Piece into the Maya Blue Puzzle from the Voltammetry of Microparticles Approach. The Journal of Physical Chemistry B, 110(12), 6027-6039. doi:10.1021/jp057301l
Doménech, A., Doménech-Carbó, M. T., & Vázquez de Agredos Pascual, M. L. (2007). Indigo/Dehydroindigo/Palygorskite Complex in Maya Blue: An Electrochemical Approach. The Journal of Physical Chemistry C, 111(12), 4585-4595. doi:10.1021/jp067369g
Doménech, A., Doménech-Carbó, M. T., & de Agredos Pascual, M. L. V. (2007). Electrochemical monitoring of indigo preparation using Maya’s ancient procedures. Journal of Solid State Electrochemistry, 11(9), 1335-1346. doi:10.1007/s10008-007-0296-2
Doménech, A., Doménech-Carbó, M. T., del Río, M. S., & de Agredos Pascual, M. L. V. (2008). Comparative study of different indigo-clay Maya Blue-like systems using the voltammetry of microparticles approach. Journal of Solid State Electrochemistry, 13(6), 869-878. doi:10.1007/s10008-008-0616-1
Doménech, A., Doménech-Carbó, M. T., Sánchez del Río, M., Vázquez de Agredos Pascual, M. L., & Lima, E. (2009). Maya Blue as a nanostructured polyfunctional hybrid organic–inorganic material: the need to change paradigms. New Journal of Chemistry, 33(12), 2371. doi:10.1039/b901942a
Doménech, A., Doménech-Carbó, M. T., Sánchez del Río, M., Goberna, S., & Lima, E. (2009). Evidence of Topological Indigo/Dehydroindigo Isomers in Maya Blue-Like Complexes Prepared from Palygorskite and Sepiolite. The Journal of Physical Chemistry C, 113(28), 12118-12131. doi:10.1021/jp900711k
Doménech, A., Doménech-Carbó, M. T., & de Agredos Pascual, M. L. V. (2007). Chemometric Study of Maya Blue from the Voltammetry of Microparticles Approach. Analytical Chemistry, 79(7), 2812-2821. doi:10.1021/ac0623686
DOMÉNECH, A., DOMÉNECH-CARBÓ, M. T., & VÁZQUEZ DE AGREDOS PASCUAL, M. L. (2009). CORRELATION BETWEEN SPECTRAL, SEM/EDX AND ELECTROCHEMICAL PROPERTIES OF MAYA BLUE: A CHEMOMETRIC STUDY*. Archaeometry, 51(6), 1015-1034. doi:10.1111/j.1475-4754.2009.00453.x
Torres, L. M. (1988). Maya Blue: How the Mayas Could Have Made the Pigment. MRS Proceedings, 123. doi:10.1557/proc-123-123
Vandenabeele, P., Bodé, S., Alonso, A., & Moens, L. (2005). Raman spectroscopic analysis of the Maya wall paintings in Ek’Balam, Mexico. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 61(10), 2349-2356. doi:10.1016/j.saa.2005.02.034
Florentine Codex: General History of the Things of New Spain Books 1-12 1950 1982
Identification and Classification of Colorants Used During Mexico’s Early Colonial Period 1997 60
Wallert, A. (1995). On Some Natural Organic Yellow Colorants in Aztec Codices: the Florentine Codex. MRS Proceedings, 352. doi:10.1557/proc-352-653
Materiales y técnicas de La pintura mural maya Pintural mural Prehispánica en México: área maya 2001
Doménech-Carbó, A., Doménech-Carbó, M. T., & Costa, V. (Eds.). (2009). Electrochemical Methods in Archaeometry, Conservation and Restoration. Monographs in Electrochemistry. doi:10.1007/978-3-540-92868-3
J. Solid State Electrochem. 2010 14
Farnia, G., Capobianco, G., & Romanin, A. (1973). Polarographic behaviour of isatin and some of its derivatives in DMF. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry, 45(3), 397-404. doi:10.1016/s0022-0728(73)80049-x
Chi, Y., Chen, H., & Chen, G. (1997). Electrochemical reduction of isatic acid at mercury electrodes in aqueous media. Analytica Chimica Acta, 354(1-3), 365-373. doi:10.1016/s0003-2670(97)00460-1
Diculescu, V. C., Kumbhat, S., & Oliveira-Brett, A. M. (2006). Electrochemical behaviour of isatin at a glassy carbon electrode. Analytica Chimica Acta, 575(2), 190-197. doi:10.1016/j.aca.2006.05.091
Rondão, R., Seixas de Melo, J. S., Bonifácio, V. D. B., & Melo, M. J. (2010). Dehydroindigo, the Forgotten Indigo and Its Contribution to the Color of Maya Blue. The Journal of Physical Chemistry A, 114(4), 1699-1708. doi:10.1021/jp907718k
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