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Handbook on borates : chemistry, production, and applications / M.P. Chung, editor.

Contributor(s): Material type: TextTextSeries: Materials science and technologies seriesPublisher: New York : Nova Science Publishers, c2010Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781613249741
  • 1613249748
Subject(s): Genre/Form: Additional physical formats: Print version:: Handbook on boratesDDC classification:
  • 661/.0671 22
LOC classification:
  • QD181.B1
Online resources:
Contents:
HANDBOOK ON BORATES: CHEMISTRY, PRODUCTION AND APPLICATIONS; HANDBOOK ON BORATES: CHEMISTRY, PRODUCTION AND APPLICATIONS; CONTENTS; PREFACE; BORATE-TELLURATE GLASSES: AN ALTERNATIVE FOR IMMOBILIZATION OF HAZARDOUS WASTES; INTRODUCTION; EXPERIMENTAL; RESULTS AND DISCUSSION; Lead Borate Tellurate Glasses: Environment for the Gadolinium Ions; Gadolinium-Lead-Borate-Tellurate Glass Ceramics; CONCLUSIONS; REFERENCES; APPENDIX; BORATE: TOXICITY, EFFECT ON DRUG STABILITY AND ANALYTICAL APPLICATIONS; ABSTRACT; 1. INTRODUCTION; 2. CLINICAL USES; 2.1. Antibacterial Agent; 2.2. Antifungal Agent.
2.3. Chemopreventive Agent for Human Cancer2.4. Wound Treatment; 2.5. Ear Infections; 2.6. Components of Dental Cement; 3. TOXICITY; 3.1. Human Toxicity; 3.2. Embryotoxicity; 3.3. Developmental and Reproductive Toxicity; 3.4. Genotoxicity; 3.5. Phytotoxicity; 4. ABSORPTION OF BORIC ACID; 5. PHARMACOKINETICS OF BORIC ACID; 6. BORATE BUFFERS; 7. EFFECT ON DRUG STABILITY; 7.1. Catalytic Effect; 7.2. Stabilizing Effect; 8. BORATE INTERACTIONS; 9. BORATE CATALYZED REACTIONS; 10. ANALYTICAL APPLICATIONS; 10.1. Qualitative Analysis; 10.2. Analysis of Borate Complexes.
10.2.1. Chromatographic Techniques10.2.1.1. Gel Chromatography; 10.2.1.2. Ion Chromatography; 10.2.1.3. High Performance Liquid Chromatography; 10.2.1.4. Thin-Layer Chromatography; 10.2.2. Spectrometric Techniques; 10.2.2.1. UV and Visible Spectrometry; 10.2.2.2. Fourier-Transform Infrared Spectrometry (FT-IR); 10.2.2.3. Nuclear Magnetic Resonance Spectrometry (NMR); 10.2.2.4. Mass Spectrometry; 10.2.2.5. Fluorimetry; 10.2.2.6. Emission Spectrometry; 10.2.2.7. X-Ray Diffraction Analysis; 10.2.3. Electrochemical Techniques; 10.2.3.1. Potentiometry; 10.2.3.2. Conductometry; 10.2.3.3. Amperometry.
10.2.4. Electrophoretic Techniques10.2.4.1. Capillary Electrophoresis; 10.2.4.2. Capillary Isotachophoresis; 10.3. DETERMINATION OF ELEMENTS; 10.4. THERMAL ANALYSIS; 10.5. WATER ANALYSIS; 10.6. CLINICAL ANALYSIS; 11. INDUSTRIAL APPLICATIONS; 11.1. General Applications; 11.1.1. Boric Acid; 11.1.2. Borates; A. Sodium Borate (Borax); B. Sodium Perborate; C. Calcium Borate; D. Magnesium Borate; 11.2. Preservation and Insect Control; 11.2.1. Preservative; 11.2.2. Insecticide; CONCLUSION; ACKNOWLEDGEMENTS; REFERENCES.
ALKALINE EARTH BORATES DOPED WITH LANTHANIDES: ELECTRONIC STRUCTURE AND LUMINESCENCE PROPERTIESABSTRACT; 1. INTRODUCTION; 2. STRUCTURAL FEATURES OF BORATES; 3. SYNTHESES OF ALKALINE EARTH BORATES; 3.1. Solid State Reaction Method; 3.2. Thermal Decomposition of Hydrated Alkaline Earth Borates; 3.3. Syntheses by Sol-Gel Method; 3.4. Combustion Synthesis of Alkaline Earth Borates; 3.5. Fabrication of Thin Films; 4. LUMINESCENCE PROPERTIES OF Ln2+ IN ALKALINE EARTH BORATES; 4.1. Luminescence Properties of Eu2+ in Alkaline Earth Borates; 4.2. Luminescence Properties of Sm2+ Ions.
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Includes bibliographical references and index.

Description based on print version record and CIP data provided by publisher.

English.

HANDBOOK ON BORATES: CHEMISTRY, PRODUCTION AND APPLICATIONS; HANDBOOK ON BORATES: CHEMISTRY, PRODUCTION AND APPLICATIONS; CONTENTS; PREFACE; BORATE-TELLURATE GLASSES: AN ALTERNATIVE FOR IMMOBILIZATION OF HAZARDOUS WASTES; INTRODUCTION; EXPERIMENTAL; RESULTS AND DISCUSSION; Lead Borate Tellurate Glasses: Environment for the Gadolinium Ions; Gadolinium-Lead-Borate-Tellurate Glass Ceramics; CONCLUSIONS; REFERENCES; APPENDIX; BORATE: TOXICITY, EFFECT ON DRUG STABILITY AND ANALYTICAL APPLICATIONS; ABSTRACT; 1. INTRODUCTION; 2. CLINICAL USES; 2.1. Antibacterial Agent; 2.2. Antifungal Agent.

2.3. Chemopreventive Agent for Human Cancer2.4. Wound Treatment; 2.5. Ear Infections; 2.6. Components of Dental Cement; 3. TOXICITY; 3.1. Human Toxicity; 3.2. Embryotoxicity; 3.3. Developmental and Reproductive Toxicity; 3.4. Genotoxicity; 3.5. Phytotoxicity; 4. ABSORPTION OF BORIC ACID; 5. PHARMACOKINETICS OF BORIC ACID; 6. BORATE BUFFERS; 7. EFFECT ON DRUG STABILITY; 7.1. Catalytic Effect; 7.2. Stabilizing Effect; 8. BORATE INTERACTIONS; 9. BORATE CATALYZED REACTIONS; 10. ANALYTICAL APPLICATIONS; 10.1. Qualitative Analysis; 10.2. Analysis of Borate Complexes.

10.2.1. Chromatographic Techniques10.2.1.1. Gel Chromatography; 10.2.1.2. Ion Chromatography; 10.2.1.3. High Performance Liquid Chromatography; 10.2.1.4. Thin-Layer Chromatography; 10.2.2. Spectrometric Techniques; 10.2.2.1. UV and Visible Spectrometry; 10.2.2.2. Fourier-Transform Infrared Spectrometry (FT-IR); 10.2.2.3. Nuclear Magnetic Resonance Spectrometry (NMR); 10.2.2.4. Mass Spectrometry; 10.2.2.5. Fluorimetry; 10.2.2.6. Emission Spectrometry; 10.2.2.7. X-Ray Diffraction Analysis; 10.2.3. Electrochemical Techniques; 10.2.3.1. Potentiometry; 10.2.3.2. Conductometry; 10.2.3.3. Amperometry.

10.2.4. Electrophoretic Techniques10.2.4.1. Capillary Electrophoresis; 10.2.4.2. Capillary Isotachophoresis; 10.3. DETERMINATION OF ELEMENTS; 10.4. THERMAL ANALYSIS; 10.5. WATER ANALYSIS; 10.6. CLINICAL ANALYSIS; 11. INDUSTRIAL APPLICATIONS; 11.1. General Applications; 11.1.1. Boric Acid; 11.1.2. Borates; A. Sodium Borate (Borax); B. Sodium Perborate; C. Calcium Borate; D. Magnesium Borate; 11.2. Preservation and Insect Control; 11.2.1. Preservative; 11.2.2. Insecticide; CONCLUSION; ACKNOWLEDGEMENTS; REFERENCES.

ALKALINE EARTH BORATES DOPED WITH LANTHANIDES: ELECTRONIC STRUCTURE AND LUMINESCENCE PROPERTIESABSTRACT; 1. INTRODUCTION; 2. STRUCTURAL FEATURES OF BORATES; 3. SYNTHESES OF ALKALINE EARTH BORATES; 3.1. Solid State Reaction Method; 3.2. Thermal Decomposition of Hydrated Alkaline Earth Borates; 3.3. Syntheses by Sol-Gel Method; 3.4. Combustion Synthesis of Alkaline Earth Borates; 3.5. Fabrication of Thin Films; 4. LUMINESCENCE PROPERTIES OF Ln2+ IN ALKALINE EARTH BORATES; 4.1. Luminescence Properties of Eu2+ in Alkaline Earth Borates; 4.2. Luminescence Properties of Sm2+ Ions.

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