Synthesis, properties, and mineralogy of important inorganic materials
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Sprache: | English |
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Wiley
2011
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100 | 1 | |a Warner, Terence E. |d 1960- |e Verfasser |4 aut | |
245 | 1 | 0 | |a Synthesis, properties, and mineralogy of important inorganic materials |c Terence E. Warner |
264 | 1 | |a Chichester, West Sussex |b Wiley |c 2011 | |
300 | |a xvi, 271 p. | ||
336 | |b txt |2 rdacontent | ||
337 | |b c |2 rdamedia | ||
338 | |b cr |2 rdacarrier | ||
500 | |a Includes bibliographical references and index | ||
505 | 8 | 0 | |g 1 |t Introduction |g 2 |t Practical Equipment |g 2.1 |t Containers |g 2.2 |t Milling |g 2.3 |t Fabrication of Ceramic Monoliths |g 2.4 |t Furnaces |g 2.5 |t Powder X-ray Diffractometry |g 3 |t Artificial Cuprorivaite CaCuSi4O10 (Egyptian Blue) by a Salt-Flux Method |g 4 |t Artificial Covellite CuS by a Solid-Vapour Reaction |g 5 |t Turbostratic Boron Nitride t-BN by a Solid-Gas Reaction Using Ammonia as the Nitriding Reagent |g 6 |t Rubidium Copper Iodide Chloride Rb4Cu16I7Cl13 by a Solid-State Reaction |g 7 |t Copper Titanium Zirconium Phosphate CuTiZr(PO4)3 by a Solid-State Reaction Using Ammonium Dihydrogenphosphate as the Phosphating Reagent |g 8 |t Cobalt Ferrite CoFe2O4 by a Coprecipitation Method |g 9 |t Lead Zirconate Titanate PbZr0.52Ti0.48O3 by a Coprecipitation Method Followed by Calcination |g 10 |t Yttrium Barium Cuprate YBa2Cu3O7-δ(δ ~ 0) by a Solid-State Reaction Followed by Oxygen Intercalation |g 11 |t Single Crystals of Ordered Zinc-Tin Phosphide ZnSnP2 by a Solution-Growth Technique Using Molten Tin as the Solvent |g 12 |t Artificial Kieftite CoSb3 by an Antimony Self-Flux Method |g 13 |t Artificial Violarite FeNi2S4 by a Hydrothermal Method Using DL-Penicillamine as the Sulfiding Reagent |g 14 |t Artificial Willemite Zn1.96Mn0.04SiO4 by a Hybrid Coprecipitation and Sol-Gel Method |g 15 |t Artificial Scheelite CaWO4 by a Microwave-Assisted Solid-State Metathetic Reaction |g 16 |t Artificial Hackmanite Na8[Al6Si6O24]Cl1.8S0.1 by a Structure-Conversion Method with Annealing Under a Reducing Atmosphere |
505 | 8 | 0 | |g 17 |t Gold-Ruby Glass from a Potassium-Antimony-Borosilicate Melt with a Controlled Annealing |
650 | 4 | |a Inorganic compounds |x Synthesis | |
650 | 4 | |a Inorganic compounds |x Properties | |
650 | 0 | 7 | |a Anorganischer Werkstoff |0 (DE-588)4142570-4 |2 gnd |9 rswk-swf |
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Datensatz im Suchindex
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any_adam_object | |
author | Warner, Terence E. 1960- |
author_facet | Warner, Terence E. 1960- |
author_role | aut |
author_sort | Warner, Terence E. 1960- |
author_variant | t e w te tew |
building | Verbundindex |
bvnumber | BV044150540 |
classification_rvk | VE 9300 VE 9301 VE 9670 VH 5500 VN 6020 |
collection | ZDB-30-PAD |
contents | Introduction Practical Equipment Containers Milling Fabrication of Ceramic Monoliths Furnaces Powder X-ray Diffractometry Artificial Cuprorivaite CaCuSi4O10 (Egyptian Blue) by a Salt-Flux Method Artificial Covellite CuS by a Solid-Vapour Reaction Turbostratic Boron Nitride t-BN by a Solid-Gas Reaction Using Ammonia as the Nitriding Reagent Rubidium Copper Iodide Chloride Rb4Cu16I7Cl13 by a Solid-State Reaction Copper Titanium Zirconium Phosphate CuTiZr(PO4)3 by a Solid-State Reaction Using Ammonium Dihydrogenphosphate as the Phosphating Reagent Cobalt Ferrite CoFe2O4 by a Coprecipitation Method Lead Zirconate Titanate PbZr0.52Ti0.48O3 by a Coprecipitation Method Followed by Calcination Yttrium Barium Cuprate YBa2Cu3O7-δ(δ ~ 0) by a Solid-State Reaction Followed by Oxygen Intercalation Single Crystals of Ordered Zinc-Tin Phosphide ZnSnP2 by a Solution-Growth Technique Using Molten Tin as the Solvent Artificial Kieftite CoSb3 by an Antimony Self-Flux Method Artificial Violarite FeNi2S4 by a Hydrothermal Method Using DL-Penicillamine as the Sulfiding Reagent Artificial Willemite Zn1.96Mn0.04SiO4 by a Hybrid Coprecipitation and Sol-Gel Method Artificial Scheelite CaWO4 by a Microwave-Assisted Solid-State Metathetic Reaction Artificial Hackmanite Na8[Al6Si6O24]Cl1.8S0.1 by a Structure-Conversion Method with Annealing Under a Reducing Atmosphere Gold-Ruby Glass from a Potassium-Antimony-Borosilicate Melt with a Controlled Annealing |
ctrlnum | (ZDB-30-PAD)EBC645013 (ZDB-89-EBL)EBL645013 (OCoLC)727648066 (DE-599)BVBBV044150540 |
dewey-full | 541/.39 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 541 - Physical chemistry |
dewey-raw | 541/.39 |
dewey-search | 541/.39 |
dewey-sort | 3541 239 |
dewey-tens | 540 - Chemistry and allied sciences |
discipline | Chemie / Pharmazie |
format | Electronic eBook |
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id | DE-604.BV044150540 |
illustrated | Not Illustrated |
indexdate | 2024-07-10T07:45:08Z |
institution | BVB |
isbn | 9780470976029 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029557385 |
oclc_num | 727648066 |
open_access_boolean | |
physical | xvi, 271 p. |
psigel | ZDB-30-PAD |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Wiley |
record_format | marc |
spelling | Warner, Terence E. 1960- Verfasser aut Synthesis, properties, and mineralogy of important inorganic materials Terence E. Warner Chichester, West Sussex Wiley 2011 xvi, 271 p. txt rdacontent c rdamedia cr rdacarrier Includes bibliographical references and index 1 Introduction 2 Practical Equipment 2.1 Containers 2.2 Milling 2.3 Fabrication of Ceramic Monoliths 2.4 Furnaces 2.5 Powder X-ray Diffractometry 3 Artificial Cuprorivaite CaCuSi4O10 (Egyptian Blue) by a Salt-Flux Method 4 Artificial Covellite CuS by a Solid-Vapour Reaction 5 Turbostratic Boron Nitride t-BN by a Solid-Gas Reaction Using Ammonia as the Nitriding Reagent 6 Rubidium Copper Iodide Chloride Rb4Cu16I7Cl13 by a Solid-State Reaction 7 Copper Titanium Zirconium Phosphate CuTiZr(PO4)3 by a Solid-State Reaction Using Ammonium Dihydrogenphosphate as the Phosphating Reagent 8 Cobalt Ferrite CoFe2O4 by a Coprecipitation Method 9 Lead Zirconate Titanate PbZr0.52Ti0.48O3 by a Coprecipitation Method Followed by Calcination 10 Yttrium Barium Cuprate YBa2Cu3O7-δ(δ ~ 0) by a Solid-State Reaction Followed by Oxygen Intercalation 11 Single Crystals of Ordered Zinc-Tin Phosphide ZnSnP2 by a Solution-Growth Technique Using Molten Tin as the Solvent 12 Artificial Kieftite CoSb3 by an Antimony Self-Flux Method 13 Artificial Violarite FeNi2S4 by a Hydrothermal Method Using DL-Penicillamine as the Sulfiding Reagent 14 Artificial Willemite Zn1.96Mn0.04SiO4 by a Hybrid Coprecipitation and Sol-Gel Method 15 Artificial Scheelite CaWO4 by a Microwave-Assisted Solid-State Metathetic Reaction 16 Artificial Hackmanite Na8[Al6Si6O24]Cl1.8S0.1 by a Structure-Conversion Method with Annealing Under a Reducing Atmosphere 17 Gold-Ruby Glass from a Potassium-Antimony-Borosilicate Melt with a Controlled Annealing Inorganic compounds Synthesis Inorganic compounds Properties Anorganischer Werkstoff (DE-588)4142570-4 gnd rswk-swf Festkörperchemie (DE-588)4129288-1 gnd rswk-swf Anorganische Synthese (DE-588)4068736-3 gnd rswk-swf Anorganischer Werkstoff (DE-588)4142570-4 s Festkörperchemie (DE-588)4129288-1 s Anorganische Synthese (DE-588)4068736-3 s 1\p DE-604 Erscheint auch als Druck-Ausgabe, Hardcover 978-0-470-74612-7 Erscheint auch als Druck-Ausgabe, Hardcover 0-470-74612-2 Erscheint auch als Druck-Ausgabe, Paperback 978-0-470-74611-0 Erscheint auch als Druck-Ausgabe, Paperback 0-470-74611-4 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Warner, Terence E. 1960- Synthesis, properties, and mineralogy of important inorganic materials Introduction Practical Equipment Containers Milling Fabrication of Ceramic Monoliths Furnaces Powder X-ray Diffractometry Artificial Cuprorivaite CaCuSi4O10 (Egyptian Blue) by a Salt-Flux Method Artificial Covellite CuS by a Solid-Vapour Reaction Turbostratic Boron Nitride t-BN by a Solid-Gas Reaction Using Ammonia as the Nitriding Reagent Rubidium Copper Iodide Chloride Rb4Cu16I7Cl13 by a Solid-State Reaction Copper Titanium Zirconium Phosphate CuTiZr(PO4)3 by a Solid-State Reaction Using Ammonium Dihydrogenphosphate as the Phosphating Reagent Cobalt Ferrite CoFe2O4 by a Coprecipitation Method Lead Zirconate Titanate PbZr0.52Ti0.48O3 by a Coprecipitation Method Followed by Calcination Yttrium Barium Cuprate YBa2Cu3O7-δ(δ ~ 0) by a Solid-State Reaction Followed by Oxygen Intercalation Single Crystals of Ordered Zinc-Tin Phosphide ZnSnP2 by a Solution-Growth Technique Using Molten Tin as the Solvent Artificial Kieftite CoSb3 by an Antimony Self-Flux Method Artificial Violarite FeNi2S4 by a Hydrothermal Method Using DL-Penicillamine as the Sulfiding Reagent Artificial Willemite Zn1.96Mn0.04SiO4 by a Hybrid Coprecipitation and Sol-Gel Method Artificial Scheelite CaWO4 by a Microwave-Assisted Solid-State Metathetic Reaction Artificial Hackmanite Na8[Al6Si6O24]Cl1.8S0.1 by a Structure-Conversion Method with Annealing Under a Reducing Atmosphere Gold-Ruby Glass from a Potassium-Antimony-Borosilicate Melt with a Controlled Annealing Inorganic compounds Synthesis Inorganic compounds Properties Anorganischer Werkstoff (DE-588)4142570-4 gnd Festkörperchemie (DE-588)4129288-1 gnd Anorganische Synthese (DE-588)4068736-3 gnd |
subject_GND | (DE-588)4142570-4 (DE-588)4129288-1 (DE-588)4068736-3 |
title | Synthesis, properties, and mineralogy of important inorganic materials |
title_alt | Introduction Practical Equipment Containers Milling Fabrication of Ceramic Monoliths Furnaces Powder X-ray Diffractometry Artificial Cuprorivaite CaCuSi4O10 (Egyptian Blue) by a Salt-Flux Method Artificial Covellite CuS by a Solid-Vapour Reaction Turbostratic Boron Nitride t-BN by a Solid-Gas Reaction Using Ammonia as the Nitriding Reagent Rubidium Copper Iodide Chloride Rb4Cu16I7Cl13 by a Solid-State Reaction Copper Titanium Zirconium Phosphate CuTiZr(PO4)3 by a Solid-State Reaction Using Ammonium Dihydrogenphosphate as the Phosphating Reagent Cobalt Ferrite CoFe2O4 by a Coprecipitation Method Lead Zirconate Titanate PbZr0.52Ti0.48O3 by a Coprecipitation Method Followed by Calcination Yttrium Barium Cuprate YBa2Cu3O7-δ(δ ~ 0) by a Solid-State Reaction Followed by Oxygen Intercalation Single Crystals of Ordered Zinc-Tin Phosphide ZnSnP2 by a Solution-Growth Technique Using Molten Tin as the Solvent Artificial Kieftite CoSb3 by an Antimony Self-Flux Method Artificial Violarite FeNi2S4 by a Hydrothermal Method Using DL-Penicillamine as the Sulfiding Reagent Artificial Willemite Zn1.96Mn0.04SiO4 by a Hybrid Coprecipitation and Sol-Gel Method Artificial Scheelite CaWO4 by a Microwave-Assisted Solid-State Metathetic Reaction Artificial Hackmanite Na8[Al6Si6O24]Cl1.8S0.1 by a Structure-Conversion Method with Annealing Under a Reducing Atmosphere Gold-Ruby Glass from a Potassium-Antimony-Borosilicate Melt with a Controlled Annealing |
title_auth | Synthesis, properties, and mineralogy of important inorganic materials |
title_exact_search | Synthesis, properties, and mineralogy of important inorganic materials |
title_full | Synthesis, properties, and mineralogy of important inorganic materials Terence E. Warner |
title_fullStr | Synthesis, properties, and mineralogy of important inorganic materials Terence E. Warner |
title_full_unstemmed | Synthesis, properties, and mineralogy of important inorganic materials Terence E. Warner |
title_short | Synthesis, properties, and mineralogy of important inorganic materials |
title_sort | synthesis properties and mineralogy of important inorganic materials |
topic | Inorganic compounds Synthesis Inorganic compounds Properties Anorganischer Werkstoff (DE-588)4142570-4 gnd Festkörperchemie (DE-588)4129288-1 gnd Anorganische Synthese (DE-588)4068736-3 gnd |
topic_facet | Inorganic compounds Synthesis Inorganic compounds Properties Anorganischer Werkstoff Festkörperchemie Anorganische Synthese |
work_keys_str_mv | AT warnerterencee synthesispropertiesandmineralogyofimportantinorganicmaterials |