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9Ensanya A. Abou Neel, David M. Pickup, Sabeel P. Valappil, Robert J. Newport and Jonathan C. Knowles.
Bioactive functional materials: a perspective on phosphate-based glasses, J. Mater. Chem., 2009, 19, 690. Stéphane Hamelet, Pierre Gibot, Montse Casas-Cabanas, Dominique Bonnin, Clare P. Grey, Jordi Cabana, Jean-Bernard Leriche, Juan Rodriguez-Carvajal, Matthieu Courty, Stéphane Levasseur, Philippe Carlach, Michèle Van Thournout, Jean-Marie Tarascon and Christian Masquelier.
The effects of moderate thermal treatments under air on LiFePO-based nano powders, J. Mater. Chem., 2009, 19, 3979. Yun Jung Lee and Angela M. Belcher.
Nanostructure design of amorphous FePO4 facilitated by a virus for 3 V lithium ion battery cathodes, J. Mater. Chem., 2011, 21, 1033. Xiao-Xing Zhang, Shi-Song Tang, Ming-Li Chen and Jian-Hua Wang.
Iron phosphate as a novel sorbent for selective adsorption of chromium(iii) and chromium speciation with detection by ETAAS, J. Anal. Atom. Spectrosc., 2012, 27, 466. Xuefeng Guo, Weiping Ding, Xueguang Wang and Qijie Yan.
, Chem. Commun., 2001, 0, 709. Megumu Inaba, Kazuhisa Murata, Masahiro Saito and Isao Takahara.
Production of olefins from ethanol by Fe-supported zeolite catalysts, Green Chem., 2007, 9, 638. Khalid Abu-Shandi, Heiner Winkler, Michael Gerdan, Franziska Emmerling, Biao Wu and Christoph Janiak.
Mixed-valence phosphato–hydrogenphosphato–iron network compounds {[CNH][FeFe(PO)(HPO)]·HO} and [FeFe(PO)(HPO)]: structure elucidation with the help of Mössbauer spectroscopy and a caveat on X-ra
y diffraction, Dalton Trans., 2003, 0, 2815. Unnikrishnan R. Pillai and Endalkachew Sahle-Demessie.
Mesoporous iron phosphate as an active, selective and recyclable catalyst for the synthesis of nopol by Prins condensation, Chem. Commun., 2004, 0, 826. Knut Bjarne Gandrud, Anders Pettersen, Ola Nilsen and Helmer Fjellvåg.
High-performing iron phosphate for enhanced lithium ion solid state batteries as grown by atomic layer deposition, J. Mater. Chem. A, 2013, 1, 9054.