Three biocompatible approaches to green technology: Thin film nanostructures of carbonaceous copper oxides, Li doped cobalt oxides and metallic Li

 
9783838326870: Three biocompatible approaches to green technology: Thin film nanostructures of carbonaceous copper oxides, Li doped cobalt oxides and metallic Li
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The book describes the original doctoral research work undertaken by the author on the synthesis of certain thin film nanostructures of some technologically important materials such as copper oxides and Li doped cobalt oxides, through CVD, sol-gel, and electromagnetic irradiation. The work towards this objective can be divided into three parts: first, the design, synthesis, and systematic identification of novel metalorganic precursors of copper (monometallic) and Li and Co (bimetallic); second, the growth of nanostructured oxides thin films using these precursors; and third, the application of electromagnetic radiation to tailor the growth of as grown nanostructures. Keeping in mind the growing need of green chemistry, design and synthesis of precursors for CVD were based on biologically compatible ligands such as triethanolamine and diethanolamine. A semi- empirical model that correlates between sublimation temperature and intrinsic molecular parameters such as lattice energy, vibrational rotational energy, and symmetry number may help design new precursors for CVD. The book is meant for researchers with a biofriendly approach to technology.

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Mahua Das (author)
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Book Description Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Thin film nanostructures of carbonaceous copper oxides, Li doped cobalt oxides and metallic Li | The book describes the original doctoral research work undertaken by the author on the synthesis of certain thin film nanostructures of some technologically important materials such as copper oxides and Li doped cobalt oxides, through CVD, sol-gel, and electromagnetic irradiation. The work towards this objective can be divided into three parts: first, the design, synthesis, and systematic identification of novel metalorganic precursors of copper (monometallic) and Li and Co (bimetallic); second, the growth of nanostructured oxides thin films using these precursors; and third, the application of electromagnetic radiation to tailor the growth of as grown nanostructures. Keeping in mind the growing need of green chemistry, design and synthesis of precursors for CVD were based on biologically compatible ligands such as triethanolamine and diethanolamine. A semi- empirical model that correlates between sublimation temperature and intrinsic molecular parameters such as lattice energy, vibrational rotational energy, and symmetry number may help design new precursors for CVD. The book is meant for researchers with a biofriendly approach to technology. | Format: Paperback | Language/Sprache: english | 220 pp. Seller Inventory # K9783838326870

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Book Description LAP Lambert Acad. Publ. Dez 2009, 2009. Taschenbuch. Condition: Neu. Neuware - The book describes the original doctoral research work undertaken by the author on the synthesis of certain thin film nanostructures of some technologically important materials such as copper oxides and Li doped cobalt oxides, through CVD, sol-gel, and electromagnetic irradiation. The work towards this objective can be divided into three parts: first, the design, synthesis, and systematic identification of novel metalorganic precursors of copper (monometallic) and Li and Co (bimetallic); second, the growth of nanostructured oxides thin films using these precursors; and third, the application of electromagnetic radiation to tailor the growth of as grown nanostructures. Keeping in mind the growing need of green chemistry, design and synthesis of precursors for CVD were based on biologically compatible ligands such as triethanolamine and diethanolamine. A semi- empirical model that correlates between sublimation temperature and intrinsic molecular parameters such as lattice energy, vibrational rotational energy, and symmetry number may help design new precursors for CVD. The book is meant for researchers with a biofriendly approach to technology. 220 pp. Englisch. Seller Inventory # 9783838326870

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Mahua Das
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Book Description LAP Lambert Acad. Publ. Dez 2009, 2009. Taschenbuch. Condition: Neu. Neuware - The book describes the original doctoral research work undertaken by the author on the synthesis of certain thin film nanostructures of some technologically important materials such as copper oxides and Li doped cobalt oxides, through CVD, sol-gel, and electromagnetic irradiation. The work towards this objective can be divided into three parts: first, the design, synthesis, and systematic identification of novel metalorganic precursors of copper (monometallic) and Li and Co (bimetallic); second, the growth of nanostructured oxides thin films using these precursors; and third, the application of electromagnetic radiation to tailor the growth of as grown nanostructures. Keeping in mind the growing need of green chemistry, design and synthesis of precursors for CVD were based on biologically compatible ligands such as triethanolamine and diethanolamine. A semi- empirical model that correlates between sublimation temperature and intrinsic molecular parameters such as lattice energy, vibrational rotational energy, and symmetry number may help design new precursors for CVD. The book is meant for researchers with a biofriendly approach to technology. 220 pp. Englisch. Seller Inventory # 9783838326870

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Book Description LAP Lambert Acad. Publ. Dez 2009, 2009. Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Neuware - The book describes the original doctoral research work undertaken by the author on the synthesis of certain thin film nanostructures of some technologically important materials such as copper oxides and Li doped cobalt oxides, through CVD, sol-gel, and electromagnetic irradiation. The work towards this objective can be divided into three parts: first, the design, synthesis, and systematic identification of novel metalorganic precursors of copper (monometallic) and Li and Co (bimetallic); second, the growth of nanostructured oxides thin films using these precursors; and third, the application of electromagnetic radiation to tailor the growth of as grown nanostructures. Keeping in mind the growing need of green chemistry, design and synthesis of precursors for CVD were based on biologically compatible ligands such as triethanolamine and diethanolamine. A semi- empirical model that correlates between sublimation temperature and intrinsic molecular parameters such as lattice energy, vibrational rotational energy, and symmetry number may help design new precursors for CVD. The book is meant for researchers with a biofriendly approach to technology. 220 pp. Englisch. Seller Inventory # 9783838326870

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Book Description LAP Lambert Academic Publishing, Germany, 2009. Paperback. Condition: New. Language: English . Brand New Book. The book describes the original doctoral research work undertaken by the author on the synthesis of certain thin film nanostructures of some technologically important materials such as copper oxides and Li doped cobalt oxides, through CVD, sol-gel, and electromagnetic irradiation. The work towards this objective can be divided into three parts: first, the design, synthesis, and systematic identification of novel metalorganic precursors of copper (monometallic) and Li and Co (bimetallic); second, the growth of nanostructured oxides thin films using these precursors; and third, the application of electromagnetic radiation to tailor the growth of as grown nanostructures. Keeping in mind the growing need of green chemistry, design and synthesis of precursors for CVD were based on biologically compatible ligands such as triethanolamine and diethanolamine. A semi- empirical model that correlates between sublimation temperature and intrinsic molecular parameters such as lattice energy, vibrational rotational energy, and symmetry number may help design new precursors for CVD. The book is meant for researchers with a biofriendly approach to technology. Seller Inventory # KNV9783838326870

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