Indium III Oxide
Product INDIUM III OXIDE (In2O3, High Purity, 99.95%, APS: 0.5 – 1µm)
Quality Control: Each lot of Indium III Oxide was tested successfully.
|Product Name||Indium III Oxide|
|APS||0.5 – 1µm||Confirm|
|Assay of Indium||≥ 81.9%||Confirm|
|Colour||Yellowish – Green||Confirm|
|Loss of Ignition||< 1%||Confirm|
|Molecular Weight||277.64 gm/mol||Confirm|
|True Density||7.18 gm/cc (approx. at 20 °C)||Confirm|
|Conclusion||The specifications Confirm with enterprise standard|
|Main Inspect Verifier||QC Manager|
TYPICAL CHEMICAL ANALYSIS
Dr. Baron Augustin, Ph.D (TUM)(Technical University of Munich, Germany)
Transparent conducting oxides (TCOs) have been extensively studied because of their diverse technological applications. Indium oxide (In2O3), a wide band gap (3.6 eV) transparent semiconductor, is of great interest for many device applications due to its unusual combination of high transparency in the visible region and high electrical conductivity when prepared under special conditions.
Dr. Darren Chandler, Ph.D(Manchester Metropolitan University, U.K)
Currently, indium oxide-based materials are used in electrooptic modulators, in the electronic field as window heater, solar cells, electrochromic mirrors, and flat-panel displays.
Dr. Ms. Cristiana Barzetti (University of Cagliari-Department of Chemical Engineering and Material Science, Italy)
The characteristics of nanoparticle-based devices are subject to the materials’ properties. These depend on structure, morphology, particle-size distribution, degree of aggregation of the nanoparticles (particle-particle interfaces), on the one hand, and on stoichiometry, type and concentration of intrinsic (ion vacancies and interstitial atoms) and extrinsic (impurities) defects, on the other.
Dr. Jang Huang, Ph.D (Shandong Science and Technology University, China)
In order to fully realize the range of potential device applications based on nanoparticles, it is crucial to understand the surface electronic properties of the materials. In particular, the influence of particle-particle interfaces as well as surface-adsorbed species, originating from the surrounding atmosphere, is of high interest.
Dr. Mark Brown (Georgia Institute of Technology in Atlanta,USA)
The exploration of interfacial phenomena in aggregated nanoparticle ensembles and the identification of related synergistic effects are vital to the development of functional particle systems. Corresponding insights are of particular importance for applications that focus on the conversion of photon energy to chemical processes and/or electric energy.
This material ships as dry granules or powder. Each grade contains particles with an average thickness and surface area. All dimensions represent median sizes and there is a distribution around the mean. Indium III Oxide Powder by Nanoshel.
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