Atencio, D. (2000): Type mineralogy of Brazil. Universidade de São Paulo, Brazil, 114 P.
-(2008): 21st-century Brazilian minerals. in "Mineralogy and Museums 6th Conf., Abstract Book", 12.
-(2015): The discovery of new mineral species and type minerals from Brazil. Braz. J. Geol., 45, 143-158.
Burnham, C.W. (1991): LCLSQ version 8.4, least-squares refinement of crystallographic lattice parameters. Department of Earth & Planetary Sciences, Harvard University, Cambridge, MA, 24 P.
Cassedanne, J. & Philippo, S. (2015): Minerals and gems deposits of the easternBrazilian pegmatites. Ed.MnhnL, Luxembourg, 674 P.
Chukanov, N.V., Atencio, D., Zadov, A.E., Menezes Filho, L.A.D., Coutinho, J.M.V. (2008): Guimarãesite, a new Zn-dominant monoclinic roscherite-group mineral from Itinga Minas Gerais, Brazil. New Data Miner., 42, 11-15.
Clifford, J. (1997):William R. Cook Jr. (1927-2006). Rocks Miner., 82, 257-258.
Correia Nevez, J.M., Pedrosa Soares, A.C., Marciano, V.R.P.d.R.O. (1986): A provincial pegmatítica oriental do Brazil à luz dos conhecimentos atuais. Rev. Bras. Geociênc., 16, 106-118.
Dal Bo, F., Hatert, F., Baijot, M. (2014): Crystal chemistry of synthetic M2+Be2P2O8 (M2+ = Ca, Sr, Pb, Ba) beryllophosphates. Can. Mineral., 52, 337-350.
de Paiva, G. (1946): Província pegmatíticas do Brazil. Boletim DNPM-DFMP, 78, 13-21.
Gier, T.E. & Stucky, G.D. (1991): Low-temperature synthesis of hydrated zinco(beryllo)-phosphate and arsenate molecular sieves. Nature, 349, 508-510.
Harrison, W.T.A., Gier, T.E., Stucky, G.D. (1991): Synthesis and crystal structure of a novel beryllium phosphate openframework structure. J. Mater. Chem., 1, 153-154.
Harvey, G. (1988): The synthesis and structure of beryllophosphate- H: a new open-framework zeolite. Z. Krist., 182, 123-124.
Harvey, G. & Meier, W. (1989): The synthesis of beryllophosphate zeolites. in "Zeolites: facts, figures, future. Studies in surface science & catalysis", P.A. Jacobs & R.A. van Santen, eds. Elsevier, Amsterdam, 49, 411-420.
Hatert, F. (2004): The crystal chemistry of lithium in the alluaudite structure: a study of the (Na1-xLix)1.5Mn1.5Fe3+ 1.5(PO4)3 solid solution (x = 0 to 1). Mineral. Petrol., 81, 205-217.
Hatert, F., Keller, P., Lissner, F., Antenucci, D., Fransolet, A.-M. (2000): First experimental evidence of alluaudite-like phosphates with high Li-content: the (Na1-xLix)MnFe2(PO4)3 series (x = 0 to 1). Eur. J. Mineral., 12, 847-857.
Hatert, F., Antenucci, D., Fransolet, A.-M., Liegeois-Duyckaerts, M. (2002): The crystal chemistry of lithium in the alluaudite structure: a study of the (Na1-xLix)CdIn2(PO4)3 solid solution (x = 0 to 1). J. Solid State Chem., 163, 194-201.
Hatert, F., Ottolini, L., Schmid-Beurmann, P. (2011): Experimental investigation of the alluaudite+triphylite assemblage, and development of the Na-in-triphylite geothermometer: applications to natural pegmatite phosphates. Contrib. Mineral. Petrol., 161, 531-546.
Krauz, W. & Nolze, G. (1996): POWDER CELL-a program for the representation and manipulation of crystal structures and calculation of the resulting X-ray powder patterns. J. Appl. Crystallogr., 29, 301-303.
Lengauer, C.L., Giester, G., Tillmanns, E. (1997): Mineralogical characterization of paulingite from Vinaricka Hora, Czech Republic. Mineral. Mag., 61, 591-606.
Mandarino, J.A. (1981): The Gladstone-Dale relationship: part IV. The compatibility concept and its application. Can. Mineral., 19, 441-450.
McCusker, L.B. (1984): Crystal structures of the ammonium and hydrogen forms of zeolite RHO. Zeolites, 4, 51-55.
Moore, P.B., Sen Gupta, P.K., Schlemper, E.O., Merlino, S. (1987): Ashcroftine, Na10(Y, Ca)24(OH)4(CO3)16(Si56O140) 16H2O, a structure with enormous polyanions. Am. Mineral., 72, 1176-1189.
Nenoff, T.M., Parise, J.B., Jones, G.A., Galya, L.G., Corbin, D.R., Stucky, G.D. (1996): Flexibility of the zeolite-RHO framework. In situ X-ray and neutron powder structural characterization of cation-exchanged BePO and BeAsO RHO analogs. J. Phys. Chem., 100, 14256-14264.
Ottolini, L., Bottazzi, P., Vannucci, R. (1993): Quantification of lithium, beryllium and boron in silicates by secondary ion Mass spectrometry using conventional energy filtering. Anal. Chem., 65, 1960-1968.
Ottolini, L., Camara, F., Hawthorne, F.C., Stirling, J. (2002): SIMS matrix effects in the analysis of light elements in silicate minerals: comparison with SREF and EMPA data. Am. Mineral., 87, 1477-1485.
Pedrosa-Soares, A.C., De Campos, C.M., Noce, C.M., da Silva, L.C., Novo, T.A., Roncato, J., Medeiros, S.M., Castañeda, C., Queiroga, G.N., Dantas, E., Dussin, I.A., Alkmim, F. (2011): Late Neoproterozoic-Cambrian granitic magmatism in Araçuaí orogen (Brazil), the Eastern Brazilian Pegmatite Province and related mineral resources. Geol. Soc. Spec. Publ., 350, 25-51.
Putzer, H. (1976): Metallogenetische Provinzen in Südamerika. Schweizerbart'sche Verlagsbuchhandlung, Stuttgart, 316 P.
Rao, C., Wang, R., Hatert, F., Gu, X., Ottolini, L., Hu, H., Dong, C., Dal Bo, F., Baijot, M. (2014): Strontiohurlbutite, SrBe2(PO4)2, a new mineral from Nanping no. 31 pegmatite, Fujian Province, Southeastern China. Am. Mineral., 99, 494-499.
Rao, C., Hatert, F., Wang, R.C., Gu, X.P., Dal Bo, F., Dong, C.W. (2015): Minjiangite, BaBe2(PO4)2, a new mineral from Nanping No. 31 pegmatite, Fujian province, Southeastern China. Mineral. Mag., 79, 1195-1202.
Rouse, R.C., Peacor, D.R., Dunn, P.J., Campbell, T.J., Roberts, W.L., Wicks, F.J., Newbury, D. (1987): Pahasapaite, a beryllophosphate zeolite related to synthetic zeolite RHO, from the Tip Top pegmatite of South Dakota. N. Jb. Mineral. Mh., 1987, 433-440.
Rouse, R.C., Peacor, D.R., Merlino, S. (1989): Crystal structure of pahasapaite, a beryllophosphate mineral with a distorted zeolite RHO framework. Am. Mineral., 74, 1195-1202.
Sheldrick, G.M. (2008): A short history of SHELX. Acta Crystallogr., A64, 112-122.
Trad, K., Carlier, D., Croguennec, L., Wattiaux, A., Ben Amara, M., DelMas, C. (2010): Structural study of the Li0.5Na0.5Mn Fe2(PO4)3 and Li0.75Na0.25MnFe2(PO4)3 alluaudite phases and their electrochemical properties as positive electrodes in lithium batteries. Inorg. Chem., 49, 10378-10389.
Wenger, M. & Armbruster, T. (1991): Crystal chemistry of lithium: oxygen coordination and bonding. Eur. J. Mineral., 3, 387-399.
Wilson, A.J.C. (1992): International Tables for X-ray Crystallography, Vol. C. Kluwer Academic Press, London, 883 P.