A selenite fluoride compound may also be called a fluoride oxoselenate(IV) using IUPAC naming for inorganic compounds.
Production
Rare earth selenite fluorides can be produced by dissolving the rare earth selenate into molten lithium fluoride at over 800°C, whereupon the selenate loses oxygen to become selenite, and crystals of the selenite fluoride can form.[1] Another similar method involves heating the rare earth oxide, with a rare earth fluoride and selenium dioxide with a caesium bromide flux. If glass or silica containers are used, they are eaten away by the molten flux and silicates are formed some of which may be fluoride selenite silicate compounds.[2]
^ abcdKrügermann, Ina; Wickleder, Mathias S. (August 2002). "Syntheses and Crystal Structures of Er2(SeO3)3 and Dy3(SeO3)4F". Journal of Solid State Chemistry. 167 (1): 113–118. Bibcode:2002JSSCh.167..113K. doi:10.1006/jssc.2002.9629.
^ abGreiner, Stefan; Chou, Sheng-Chun; Schleid, Thomas (February 2017). "Two anionically derivatized scandium oxoselenates(IV): ScF[SeO3] and Sc2O2[SeO3]". Journal of Solid State Chemistry. 246: 160–166. Bibcode:2017JSSCh.246..160G. doi:10.1016/j.jssc.2016.11.011.
^ abcChou, Sheng-Chun; Greiner, Stefan; Magdysyuk, Oxana V.; Dinnebier, Robert E.; Schleid, Thomas (December 2014). "Theoretical and Experimental Analysis of Structural Phase Transitions for ScF[SeO 3 ] and YF[SeO 3 ]: Structural Phase Transitions for ScF[SeO 3 ] and YF[SeO 3 ]". Zeitschrift für anorganische und allgemeine Chemie. 640 (15): 3203–3211. doi:10.1002/zaac.201400287.
^Hu, Shichao; Johnsson, Mats; Law, Joseph M.; Bettis, Jerry L.; Whangbo, Myung-Hwan; Kremer, Reinhard K. (2014-04-21). "Crystal Structure and Magnetic Properties of FeSeO 3 F—Alternating Antiferromagnetic S = 5/2 chains". Inorganic Chemistry. 53 (8): 4250–4256. doi:10.1021/ic5003995. ISSN0020-1669. PMID24684563.
^Lipp, Christian; Schleid, Thomas (June 2008). "Er3F[SiO4][SeO3]2: An ErF3-Derivative with Two Different Kinds of Complex Oxoanions". Zeitschrift für anorganische und allgemeine Chemie (in German). 634 (6–7): 1025–1029. doi:10.1002/zaac.200700583.
^Greiner, Stefan; Schleid, Thomas (2017-09-04). "CsSc 3 F 6 [SeO 3 ] 2 : A New Rare-Earth Metal(III) Fluoride Oxoselenate(IV) With Sections Of The ReO 3 -Type Structure: CsSc 3 F 6 [SeO 3 ] 2 : A New Rare-Earth Metal(III) Fluoride Oxoselenate(IV) With Sections Of The ReO 3 -Type Structure". Zeitschrift für anorganische und allgemeine Chemie. 643 (16): 1057–1062. doi:10.1002/zaac.201700158.
^Cao, Xue-Li; Hu, Chun-Li; Kong, Fang; Mao, Jiang-Gao (2015-04-20). "Cs(TaO 2 ) 3 (SeO 3 ) 2 and Cs(TiOF) 3 (SeO 3 ) 2 : Structural and Second Harmonic Generation Changes Induced by the Different d 0 -TM Coordination Octahedra". Inorganic Chemistry. 54 (8): 3875–3882. doi:10.1021/acs.inorgchem.5b00052. ISSN0020-1669. PMID25835387.
^Lipp, Christian; Schleid, Thomas (August 2008). "HoF[SeO 3 ] und Ho 3 F[SeO 3 ] 4 : Zwei fluorid-derivatisierte Oxoselenate(IV) des Holmiums". Zeitschrift für anorganische und allgemeine Chemie. 634 (10): 1662–1668. doi:10.1002/zaac.200800099.
^Lipp, Christian; Schleid, Thomas (June 2008). "Er3F[SiO4][SeO3]2: An ErF3-Derivative with Two Different Kinds of Complex Oxoanions". Zeitschrift für anorganische und allgemeine Chemie (in German). 634 (6–7): 1025–1029. doi:10.1002/zaac.200700583.
^Wu, Chao; Li, Longhua; Lin, Lin; Huang, Zhipeng; Humphrey, Mark G.; Zhang, Chi (2020-04-14). "Enhancement of Second-Order Optical Nonlinearity in a Lutetium Selenite by Monodentate Anion Partial Substitution". Chemistry of Materials. 32 (7): 3043–3053. doi:10.1021/acs.chemmater.0c00034. hdl:1885/251600. ISSN0897-4756. S2CID216215995.
^Ma, Yun-Xiang; Hu, Chun-Li; Li, Bing-Xuan; Kong, Fang; Mao, Jiang-Gao (2018-09-17). "PbCdF(SeO 3 )(NO 3 ): A Nonlinear Optical Material Produced by Synergistic Effect of Four Functional Units". Inorganic Chemistry. 57 (18): 11839–11846. doi:10.1021/acs.inorgchem.8b02044. ISSN0020-1669. PMID30160946. S2CID52136440.
^Liang, Ming-Li; Hu, Chun-Li; Kong, Fang; Mao, Jiang-Gao (2016-08-03). "BiFSeO 3 : An Excellent SHG Material Designed by Aliovalent Substitution". Journal of the American Chemical Society. 138 (30): 9433–9436. doi:10.1021/jacs.6b06680. ISSN0002-7863. PMID27428359.
^Shang, Meng; Halasyamani, P. Shiv (February 2020). "Mixed lone-pair and mixed anion compounds: Pb3(SeO3)(HSeO3)Br3, Pb3(SeO3)(OH)Br3, CdPb8(SeO3)4Cl4Br6 and RbBi(SeO3)F2". Journal of Solid State Chemistry. 282: 121121. Bibcode:2020JSSCh.28221121S. doi:10.1016/j.jssc.2019.121121. S2CID214467836.
^ abcdeGong, Ya-Ping; Hu, Chun-Li; Kong, Fang; Mao, Jiang-Gao (2019-03-07). "Exploration of New Birefringent Crystals in Bismuth d 0 Transition Metal Selenites". Chemistry – A European Journal. 25 (14): 3685–3694. doi:10.1002/chem.201806328. ISSN0947-6539. PMID30637825. S2CID58575389.