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bi5o7no3 (10) 10
degradation (5) 5
chemistry, physical (4) 4
hydrothermal synthesis (4) 4
bismuth (3) 3
growth-mechanism (3) 3
alpha (2) 2
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Inorganic Chemistry, ISSN 0020-1669, 02/2019, Volume 58, Issue 3, pp. 2183 - 2190
Two novel bismuth oxyfluoride nitrates, Bi2OF3(NO3) and Bi6O6F5(NO3), have been synthesized via hydrothermal reactions. Whereas Bi2OF3(NO3) crystallizes in the... 
BASIC NITRATE | DESIGN | BI5O7NO3 | POLARITY | CRYSTAL-STRUCTURE | SIZE | HYDROLYSIS | NONCENTROSYMMETRIC MATERIALS | BOND-VALENCE PARAMETERS | BI2O2(OH)(NO3) | CHEMISTRY, INORGANIC & NUCLEAR
Journal Article
Chemical Physics Letters, ISSN 0009-2614, 04/2020, Volume 745, p. 137178
[Display omitted] •A series of Bi5O7NO3 is successfully synthesized through melt salt strategy.•Lowering the reaction temperature facilitates the formation of... 
Bi5O7NO3 | Photocatalytic activity | Molten salt synthesis
Journal Article
Journal of Molecular Catalysis. A, Chemical, ISSN 1381-1169, 07/2013, Volume 373, pp. 114 - 120
•The visible light responsive bismuth-modified rectorite was prepared by ultrasonic-assisted method.•Bismuth-modified rectorite showed strong adsorbility and... 
Visible-light | Bi5O7NO3 | Bi2O3 | Rectorite | Photocatalysis | CDS/RECTORITE NANOCOMPOSITES | EFFICIENT DEGRADATION | PHOTOACTIVITY | DECOMPOSITION | CHEMISTRY, PHYSICAL | CATALYST | COMPOSITE | HYDROTHERMAL SYNTHESIS | IRRADIATION | ORGANIC CONTAMINANTS | Bismuth
Journal Article
Journal of Colloid and Interface Science, ISSN 0021-9797, 02/2011, Volume 354, Issue 1, pp. 322 - 330
A new photocatalyst, namely single-crystalline Bi O NO nanofibers, was prepared by a facile hydrothermal method in the presence of Triton X-100 and ammonia. Bi... 
Bismuth | Photocatalytic | Visible light | Hydrothermal synthesis | BIOX X | OPTICAL-PROPERTIES | CHEMISTRY, PHYSICAL | NANORODS | CATALYST | LOW-TEMPERATURE | VISIBLE-LIGHT | METHYL-ORANGE | NITROGEN | DEGRADATION | Bi5O7NO3 | EFFICIENT
Journal Article
Materials Science in Semiconductor Processing, ISSN 1369-8001, 10/2019, Volume 101, pp. 183 - 190
Basic bismuth nitrates, Bi6O6(OH)2(NO3)4·2H2O and Bi6O5(OH)3(NO3)5·3H2O (respectively denoted as BiON-4N and BiON-5N), were easily synthesized by a... 
Basic bismuth nitrate | Active facet exposure | Grinding | Photocatalysis | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | BI5O7NO3 | MATERIALS SCIENCE, MULTIDISCIPLINARY | Z-SCHEME PHOTOCATALYST | BI6O6(OH)(NO3)CENTER-DOT-1.5HO | HYDROTHERMAL SYNTHESIS | ENGINEERING, ELECTRICAL & ELECTRONIC | GROWTH | DEGRADATION | FACETS
Journal Article
Wuli Huaxue Xuebao/ Acta Physico - Chimica Sinica, ISSN 1000-6818, 05/2016, Volume 32, Issue 5, pp. 1247 - 1256
A Bi(OH)(3) precursor was prepared using a precipitation method using bismuth nitrate as a starting material and ammonia as the precipitation agent. Bi(OH)(3)... 
Phase transformation | Precipitation method | β-Bi | Bismuth oxide | α-Bi | CRYSTALLIZATION | MICROSPHERES | PERFORMANCE | alpha-Bi2O3 | CHEMISTRY, PHYSICAL | beta-Bi2O3 | NANOPARTICLES | GROWTH | DEGRADATION | Bi5O7NO3 | HEPTA-OXIDE NITRATE | ARCHITECTURES | TITANIA
Journal Article
CERAMICS INTERNATIONAL, ISSN 0272-8842, 12/2018, Volume 44, Issue 18, pp. 22329 - 22338
Stabilized tetragonal Bi2O3 nanoparticles (beta-Bi2O3) were obtained by annealing treatments of amorphous Bi-based precursors, obtained by chemical... 
GROWTH-MECHANISM | RHODAMINE-B | BI5O7NO3 | Stabilization | Pure beta-Bi2O3 | Blue-photodegradation | ALPHA | BI2O3 | MATERIALS SCIENCE, CERAMICS | PHOTODEGRADATION | DEGRADATION | TEMPLATE-FREE FABRICATION | Amorphous precursor | INDIGO CARMINE | HIERARCHICAL HOLLOW MICROSPHERES
Journal Article
RUSSIAN JOURNAL OF INORGANIC CHEMISTRY, ISSN 0036-0236, 01/2019, Volume 64, Issue 1, pp. 13 - 17
Anhydrous basic bismuth nitrate Bi-6(NO3)(2)O-7(OH)(2) was shown to be produced by reacting bismuth nitrate with aqueous ammonia under microwave- assisted... 
BISMUTH BASIC NITRATE | GROWTH-MECHANISM | BI5O7NO3 | CRYSTAL-STRUCTURE | CHEMISTRY | DEGRADATION | basic bismuth nitrate | microwave-assisted hydrothermal synthesis | BI6O6(OH)(NO3)CENTER-DOT-1.5HO | CHEMISTRY, INORGANIC & NUCLEAR
Journal Article
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