The Experts below are selected from a list of 791610 Experts worldwide ranked by ideXlab platform
Valérie Cabuil - One of the best experts on this subject based on the ideXlab platform.
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Microfluidics in Inorganic Chemistry.
Angewandte Chemie (International ed. in English), 2010Co-Authors: Ali Abou Hassan, Olivier Sandre, Valérie CabuilAbstract:The application of microfluidics in Chemistry has gained significant importance in the recent years. Miniaturized Chemistry platforms provide controlled fluid transport, rapid chemical reactions, and cost-saving advantages over conventional reactors. The advantages of microfluidics have been clearly established in the field of analytical and bioanalytical sciences and in the field of organic synthesis. It is less true in the field of Inorganic Chemistry and materials science; however in Inorganic Chemistry it has mostly been used for the separation and selective extraction of metal ions. Microfluidics has been used in materials science mainly for the improvement of nanoparticle synthesis, namely metal, metal oxide, and semiconductor nanoparticles. Microfluidic devices can also be used for the formulation of more advanced and sophisticated Inorganic materials or hybrids.
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Microfluidics for Inorganic Chemistry
Angewandte Chemie International Edition, 2010Co-Authors: Ali Abou Hassan, Olivier Sandre, Valérie CabuilAbstract:The application of microfluidics in Chemistry has gained significant importance in the recent years. Miniaturized Chemistry platforms provide controlled fluid transport, rapid chemical reactions and costsaving advantages over conventional reactors. The advantages of microfluidics have been clearly established in the field of analytical and bioanalytical sciences and in the field of organic synthesis. It is less true in the field of Inorganic Chemistry and materials science. Yet, Inorganic Chemistry is mostly concerned by the development of microreactors for the separation and selective extraction of metallic ions. Concerning materials science, microfluidic has been mainly used for the improvement of nanoparticle synthesis, namely metals, metal oxides and semiconductor nanoparticles. Microfluidic devices can also be used for the formulation of more advanced and sophisticated Inorganic materials or hybrids.
Ali Abou Hassan - One of the best experts on this subject based on the ideXlab platform.
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Microfluidics in Inorganic Chemistry.
Angewandte Chemie (International ed. in English), 2010Co-Authors: Ali Abou Hassan, Olivier Sandre, Valérie CabuilAbstract:The application of microfluidics in Chemistry has gained significant importance in the recent years. Miniaturized Chemistry platforms provide controlled fluid transport, rapid chemical reactions, and cost-saving advantages over conventional reactors. The advantages of microfluidics have been clearly established in the field of analytical and bioanalytical sciences and in the field of organic synthesis. It is less true in the field of Inorganic Chemistry and materials science; however in Inorganic Chemistry it has mostly been used for the separation and selective extraction of metal ions. Microfluidics has been used in materials science mainly for the improvement of nanoparticle synthesis, namely metal, metal oxide, and semiconductor nanoparticles. Microfluidic devices can also be used for the formulation of more advanced and sophisticated Inorganic materials or hybrids.
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Microfluidics for Inorganic Chemistry
Angewandte Chemie International Edition, 2010Co-Authors: Ali Abou Hassan, Olivier Sandre, Valérie CabuilAbstract:The application of microfluidics in Chemistry has gained significant importance in the recent years. Miniaturized Chemistry platforms provide controlled fluid transport, rapid chemical reactions and costsaving advantages over conventional reactors. The advantages of microfluidics have been clearly established in the field of analytical and bioanalytical sciences and in the field of organic synthesis. It is less true in the field of Inorganic Chemistry and materials science. Yet, Inorganic Chemistry is mostly concerned by the development of microreactors for the separation and selective extraction of metallic ions. Concerning materials science, microfluidic has been mainly used for the improvement of nanoparticle synthesis, namely metals, metal oxides and semiconductor nanoparticles. Microfluidic devices can also be used for the formulation of more advanced and sophisticated Inorganic materials or hybrids.
Olivier Sandre - One of the best experts on this subject based on the ideXlab platform.
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Microfluidics in Inorganic Chemistry.
Angewandte Chemie (International ed. in English), 2010Co-Authors: Ali Abou Hassan, Olivier Sandre, Valérie CabuilAbstract:The application of microfluidics in Chemistry has gained significant importance in the recent years. Miniaturized Chemistry platforms provide controlled fluid transport, rapid chemical reactions, and cost-saving advantages over conventional reactors. The advantages of microfluidics have been clearly established in the field of analytical and bioanalytical sciences and in the field of organic synthesis. It is less true in the field of Inorganic Chemistry and materials science; however in Inorganic Chemistry it has mostly been used for the separation and selective extraction of metal ions. Microfluidics has been used in materials science mainly for the improvement of nanoparticle synthesis, namely metal, metal oxide, and semiconductor nanoparticles. Microfluidic devices can also be used for the formulation of more advanced and sophisticated Inorganic materials or hybrids.
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Microfluidics for Inorganic Chemistry
Angewandte Chemie International Edition, 2010Co-Authors: Ali Abou Hassan, Olivier Sandre, Valérie CabuilAbstract:The application of microfluidics in Chemistry has gained significant importance in the recent years. Miniaturized Chemistry platforms provide controlled fluid transport, rapid chemical reactions and costsaving advantages over conventional reactors. The advantages of microfluidics have been clearly established in the field of analytical and bioanalytical sciences and in the field of organic synthesis. It is less true in the field of Inorganic Chemistry and materials science. Yet, Inorganic Chemistry is mostly concerned by the development of microreactors for the separation and selective extraction of metallic ions. Concerning materials science, microfluidic has been mainly used for the improvement of nanoparticle synthesis, namely metals, metal oxides and semiconductor nanoparticles. Microfluidic devices can also be used for the formulation of more advanced and sophisticated Inorganic materials or hybrids.
Zhang Xiu-yun - One of the best experts on this subject based on the ideXlab platform.
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The Experiences of Teaching on Pharmacy Inorganic Chemistry
Guangzhou Chemical Industry, 2011Co-Authors: Zhang Xiu-yunAbstract:Pharmacy Inorganic Chemistry was the first and very important Chemistry course for the major of Chinese traditional medicine,pharmaceutics and medicine.Based on the practices in teaching of Pharmacy Inorganic Chemistry and the fact about students of the academe,some experiences about how to improve the quality of teaching and studying enthusiasm of students were summerized.
Xiang Qian-ku - One of the best experts on this subject based on the ideXlab platform.
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The Exploration on Inorganic Chemistry Experiment Teaching Reform
Guangzhou Chemical Industry, 2014Co-Authors: Xiang Qian-kuAbstract:Traditional Inorganic Chemistry experiment teaching for cultivating the students' basic operation and basic quality played a good role,but also had some disadvantages,not well adapted to cultivate applied talents in colleges and universities teaching mode of the target,an urgent need to reform. The Inorganic Chemistry experiment course teaching problems were analyzed. From four aspects of the experimental teaching program formulation,the reform of experimental teaching,open experiment platform construction,and experiment reform of examination mode in Inorganic Chemistry, experiment teaching reform were discussed.