{"title":"合成锂云母和锂白云母中的阳离子和阴离子有序性:OH的影响 ∕ F和李 ∕ 用NMR(核磁共振)光谱和X射线衍射研究云母形成中的Al比率","authors":"Lara Sulcek, B. Marler, M. Fechtelkord","doi":"10.5194/ejm-35-199-2023","DOIUrl":null,"url":null,"abstract":"Abstract. A large number of lepidolites\nK(LixAl3−x)[Si2xAl4−2xO10](OH)yF2−y\nand Li-muscovites K(LixAl2-x/3□1-2x/3)[Si3AlO10](OH)yF2−y were synthesised by a gelling method in combination with hydrothermal\nsyntheses at a pressure of 2 kbar and a temperature of 873 K. The nominal\ncomposition ranged between 0.0≤x≤2.0 and 0.0≤y≤2.0, i.e. from polylithionite\nK[Li2.0Al][Si4.0O10](OH)yF2−y over\ntrilithionite\nK[Li1.5Al1.5][AlSi3.0O10](OH)yF2−y to muscovite K[Al2.0□][AlSi3.0O10](OH)yF2−y. 1H, 19F,\n29Si and 27Al magic-angle spinning nuclear magnetic resonance (MAS\nNMR) and 27Al multiple-quantum magic-angle spinning (MQMAS) NMR\nspectroscopy has been performed to investigate the order and/or disorder state of\nSi and Al in the tetrahedral layers and of Li, Al, OH and F in the\noctahedral layer. The synthetic mica crystals are very small, ranging from\n0.1 to 5 µm. With increasing Al content, the crystal sizes\ndecrease. Rietveld structure analyses on 12 samples showed that nearly all\nsamples consist of two mica polytypes (1M and 2M1) of varying\nproportions. In the case of lepidolites, the 1M / 2M1 ratio depends on\nthe Li/Al ratio of the reaction mixture. The refinement of the occupancy\nfactors of octahedral sites shows that lepidolites (1.5≤x≤2.0)\nrepresent a solid solution series with polylithionite and trilithionite as\nthe endmembers. In the case of the Li-muscovites (0.0≤x≤1.5),\nthe 1M / 2M1 ratio depends on the number of impurity phases like\neucryptite or sanidine depleting the reaction mixture of Li or Al. There is\nno solid solution between trilithionite and muscovite; instead, the\nLi-muscovite crystals consist of domains differing in the relative\nproportions of muscovite and trilithionite. The overall composition of the synthesised micas which consist of two\npolytypes can be characterised by 29Si, 1H and 19F MAS NMR\nspectroscopy. The Si/Al ratio in the tetrahedral layers and thus the content\nof [4]Al were calculated by analysing the signal intensities of the\n29Si MAS NMR experiments. The Li content xest was calculated from\nthe measured tetrahedral Si/Al ratio of the 29Si MAS NMR signals. The\ncalculated Li contents xest of samples between polylithionite and\ntrilithionite agree with the expected values. The F-rich samples show slightly\nincreased values and the OH samples lower values. Lepidolites with only F\n(x = 1.5 to 2.0, y = 0.0), but not lepidolites with only OH (x = 1.5 to 2.0\nand y = 2.0), were observed after synthesis. With decreasing Li content, x≤1.2, Li-muscovites containing mostly hydroxyl (y>1.0) are\nformed. It was possible to synthesise fluorine containing micas with a\nLi content as low as 0.3 and y = 0.2 to 1.8. The 19F and 1H MAS NMR\nexperiments reveal that F and OH are not distributed statistically but local\nstructural preferences exist. F is attracted by Li-rich and OH by Al-rich\nenvironments. The quadrupolar coupling constant which represents the\nanisotropy of the Al coordination is low for polylithionite with CQ=1.5 MHz and increases to CQ=3.8 MHz for trilithionite. For\ntetrahedral Al a smaller increase of CQ from 1.7 to 2.8 MHz is\nobserved. Advancing from trilithionite to muscovite both quadrupolar\ncoupling constants decrease to 2.5 MHz for octahedral and 1.5 MHz for\ntetrahedral Al. In polylithionite there is the most isotropic environment\nfor octahedral Al; there are only Li2Al sites coordinated by F in the\noctahedral sheets and O from the tetrahedral sheets which are regular,\ncontaining only Si. The distortion and anisotropy for Al in tetrahedral\nas well as octahedral sheets increases with rising Al content. The most anisotropic\nenvironment can be found in trilithionite, especially for octahedral Al.\n","PeriodicalId":11971,"journal":{"name":"European Journal of Mineralogy","volume":" ","pages":""},"PeriodicalIF":1.8000,"publicationDate":"2023-03-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Cation and anion ordering in synthetic lepidolites and lithian muscovites: influence of the OH ∕ F and Li ∕ Al ratios on the mica formation studied by NMR (nuclear magnetic resonance) spectroscopy and X-ray diffraction\",\"authors\":\"Lara Sulcek, B. Marler, M. Fechtelkord\",\"doi\":\"10.5194/ejm-35-199-2023\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Abstract. A large number of lepidolites\\nK(LixAl3−x)[Si2xAl4−2xO10](OH)yF2−y\\nand Li-muscovites K(LixAl2-x/3□1-2x/3)[Si3AlO10](OH)yF2−y were synthesised by a gelling method in combination with hydrothermal\\nsyntheses at a pressure of 2 kbar and a temperature of 873 K. The nominal\\ncomposition ranged between 0.0≤x≤2.0 and 0.0≤y≤2.0, i.e. from polylithionite\\nK[Li2.0Al][Si4.0O10](OH)yF2−y over\\ntrilithionite\\nK[Li1.5Al1.5][AlSi3.0O10](OH)yF2−y to muscovite K[Al2.0□][AlSi3.0O10](OH)yF2−y. 1H, 19F,\\n29Si and 27Al magic-angle spinning nuclear magnetic resonance (MAS\\nNMR) and 27Al multiple-quantum magic-angle spinning (MQMAS) NMR\\nspectroscopy has been performed to investigate the order and/or disorder state of\\nSi and Al in the tetrahedral layers and of Li, Al, OH and F in the\\noctahedral layer. The synthetic mica crystals are very small, ranging from\\n0.1 to 5 µm. With increasing Al content, the crystal sizes\\ndecrease. Rietveld structure analyses on 12 samples showed that nearly all\\nsamples consist of two mica polytypes (1M and 2M1) of varying\\nproportions. In the case of lepidolites, the 1M / 2M1 ratio depends on\\nthe Li/Al ratio of the reaction mixture. The refinement of the occupancy\\nfactors of octahedral sites shows that lepidolites (1.5≤x≤2.0)\\nrepresent a solid solution series with polylithionite and trilithionite as\\nthe endmembers. In the case of the Li-muscovites (0.0≤x≤1.5),\\nthe 1M / 2M1 ratio depends on the number of impurity phases like\\neucryptite or sanidine depleting the reaction mixture of Li or Al. There is\\nno solid solution between trilithionite and muscovite; instead, the\\nLi-muscovite crystals consist of domains differing in the relative\\nproportions of muscovite and trilithionite. The overall composition of the synthesised micas which consist of two\\npolytypes can be characterised by 29Si, 1H and 19F MAS NMR\\nspectroscopy. The Si/Al ratio in the tetrahedral layers and thus the content\\nof [4]Al were calculated by analysing the signal intensities of the\\n29Si MAS NMR experiments. The Li content xest was calculated from\\nthe measured tetrahedral Si/Al ratio of the 29Si MAS NMR signals. The\\ncalculated Li contents xest of samples between polylithionite and\\ntrilithionite agree with the expected values. The F-rich samples show slightly\\nincreased values and the OH samples lower values. Lepidolites with only F\\n(x = 1.5 to 2.0, y = 0.0), but not lepidolites with only OH (x = 1.5 to 2.0\\nand y = 2.0), were observed after synthesis. With decreasing Li content, x≤1.2, Li-muscovites containing mostly hydroxyl (y>1.0) are\\nformed. It was possible to synthesise fluorine containing micas with a\\nLi content as low as 0.3 and y = 0.2 to 1.8. The 19F and 1H MAS NMR\\nexperiments reveal that F and OH are not distributed statistically but local\\nstructural preferences exist. F is attracted by Li-rich and OH by Al-rich\\nenvironments. The quadrupolar coupling constant which represents the\\nanisotropy of the Al coordination is low for polylithionite with CQ=1.5 MHz and increases to CQ=3.8 MHz for trilithionite. For\\ntetrahedral Al a smaller increase of CQ from 1.7 to 2.8 MHz is\\nobserved. Advancing from trilithionite to muscovite both quadrupolar\\ncoupling constants decrease to 2.5 MHz for octahedral and 1.5 MHz for\\ntetrahedral Al. In polylithionite there is the most isotropic environment\\nfor octahedral Al; there are only Li2Al sites coordinated by F in the\\noctahedral sheets and O from the tetrahedral sheets which are regular,\\ncontaining only Si. The distortion and anisotropy for Al in tetrahedral\\nas well as octahedral sheets increases with rising Al content. The most anisotropic\\nenvironment can be found in trilithionite, especially for octahedral Al.\\n\",\"PeriodicalId\":11971,\"journal\":{\"name\":\"European Journal of Mineralogy\",\"volume\":\" \",\"pages\":\"\"},\"PeriodicalIF\":1.8000,\"publicationDate\":\"2023-03-30\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"1\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"European Journal of Mineralogy\",\"FirstCategoryId\":\"89\",\"ListUrlMain\":\"https://doi.org/10.5194/ejm-35-199-2023\",\"RegionNum\":3,\"RegionCategory\":\"地球科学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q2\",\"JCRName\":\"MINERALOGY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"European Journal of Mineralogy","FirstCategoryId":"89","ListUrlMain":"https://doi.org/10.5194/ejm-35-199-2023","RegionNum":3,"RegionCategory":"地球科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"MINERALOGY","Score":null,"Total":0}
Cation and anion ordering in synthetic lepidolites and lithian muscovites: influence of the OH ∕ F and Li ∕ Al ratios on the mica formation studied by NMR (nuclear magnetic resonance) spectroscopy and X-ray diffraction
Abstract. A large number of lepidolites
K(LixAl3−x)[Si2xAl4−2xO10](OH)yF2−y
and Li-muscovites K(LixAl2-x/3□1-2x/3)[Si3AlO10](OH)yF2−y were synthesised by a gelling method in combination with hydrothermal
syntheses at a pressure of 2 kbar and a temperature of 873 K. The nominal
composition ranged between 0.0≤x≤2.0 and 0.0≤y≤2.0, i.e. from polylithionite
K[Li2.0Al][Si4.0O10](OH)yF2−y over
trilithionite
K[Li1.5Al1.5][AlSi3.0O10](OH)yF2−y to muscovite K[Al2.0□][AlSi3.0O10](OH)yF2−y. 1H, 19F,
29Si and 27Al magic-angle spinning nuclear magnetic resonance (MAS
NMR) and 27Al multiple-quantum magic-angle spinning (MQMAS) NMR
spectroscopy has been performed to investigate the order and/or disorder state of
Si and Al in the tetrahedral layers and of Li, Al, OH and F in the
octahedral layer. The synthetic mica crystals are very small, ranging from
0.1 to 5 µm. With increasing Al content, the crystal sizes
decrease. Rietveld structure analyses on 12 samples showed that nearly all
samples consist of two mica polytypes (1M and 2M1) of varying
proportions. In the case of lepidolites, the 1M / 2M1 ratio depends on
the Li/Al ratio of the reaction mixture. The refinement of the occupancy
factors of octahedral sites shows that lepidolites (1.5≤x≤2.0)
represent a solid solution series with polylithionite and trilithionite as
the endmembers. In the case of the Li-muscovites (0.0≤x≤1.5),
the 1M / 2M1 ratio depends on the number of impurity phases like
eucryptite or sanidine depleting the reaction mixture of Li or Al. There is
no solid solution between trilithionite and muscovite; instead, the
Li-muscovite crystals consist of domains differing in the relative
proportions of muscovite and trilithionite. The overall composition of the synthesised micas which consist of two
polytypes can be characterised by 29Si, 1H and 19F MAS NMR
spectroscopy. The Si/Al ratio in the tetrahedral layers and thus the content
of [4]Al were calculated by analysing the signal intensities of the
29Si MAS NMR experiments. The Li content xest was calculated from
the measured tetrahedral Si/Al ratio of the 29Si MAS NMR signals. The
calculated Li contents xest of samples between polylithionite and
trilithionite agree with the expected values. The F-rich samples show slightly
increased values and the OH samples lower values. Lepidolites with only F
(x = 1.5 to 2.0, y = 0.0), but not lepidolites with only OH (x = 1.5 to 2.0
and y = 2.0), were observed after synthesis. With decreasing Li content, x≤1.2, Li-muscovites containing mostly hydroxyl (y>1.0) are
formed. It was possible to synthesise fluorine containing micas with a
Li content as low as 0.3 and y = 0.2 to 1.8. The 19F and 1H MAS NMR
experiments reveal that F and OH are not distributed statistically but local
structural preferences exist. F is attracted by Li-rich and OH by Al-rich
environments. The quadrupolar coupling constant which represents the
anisotropy of the Al coordination is low for polylithionite with CQ=1.5 MHz and increases to CQ=3.8 MHz for trilithionite. For
tetrahedral Al a smaller increase of CQ from 1.7 to 2.8 MHz is
observed. Advancing from trilithionite to muscovite both quadrupolar
coupling constants decrease to 2.5 MHz for octahedral and 1.5 MHz for
tetrahedral Al. In polylithionite there is the most isotropic environment
for octahedral Al; there are only Li2Al sites coordinated by F in the
octahedral sheets and O from the tetrahedral sheets which are regular,
containing only Si. The distortion and anisotropy for Al in tetrahedral
as well as octahedral sheets increases with rising Al content. The most anisotropic
environment can be found in trilithionite, especially for octahedral Al.
期刊介绍:
EJM was founded to reach a large audience on an international scale and also for achieving closer cooperation of European countries in the publication of scientific results. The founding societies have set themselves the task of publishing a journal of the highest standard open to all scientists performing mineralogical research in the widest sense of the term, all over the world. Contributions will therefore be published primarily in English.
EJM publishes original papers, review articles and letters dealing with the mineralogical sciences s.l., primarily mineralogy, petrology, geochemistry, crystallography and ore deposits, but also biomineralogy, environmental, applied and technical mineralogy. Nevertheless, papers in any related field, including cultural heritage, will be considered.