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There are three sets of Indium halides, the trihalides, the monohalides, and several intermediate halides. In the monohalides the oxidation state of indium is +1 and their proper names are indium(I) fluoride, indium(I) chloride, indium(I) bromide and indium(I) iodide. The intermediate halides contain indium with oxidation states, +1, +2 and +3.
Indium(III) chloride is the chemical compound with the formula In Cl 3 which forms a tetrahydrate. This salt is a white, flaky solid with applications in organic synthesis as a Lewis acid. It is also the most available soluble derivative of indium. [2] This is one of three known indium chlorides.
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Indium trichloride (indium(III) chloride), InCl 3 This page was last edited on 21 September 2024, at 17:06 (UTC). Text is available under the Creative Commons ...
Phthalocyanine green is derived from phthalocyanine blue by chlorination in the presence of aluminium trichloride. The stoichiometry for the complete chlorination is shown: [1] Cu(C 32 H 16 N 8) + 16 Cl 2 → Cu(C 32 N 8 Cl 16) + 16 HCl. In practice, this pigment is a mixture of isomers and degrees of chlorination.
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The sol–gel method is another way to prepare nanowires. [citation needed] Indium oxide can serve as a semiconductor material, forming heterojunctions with p-InP, n-GaAs, n-Si, and other materials. A layer of indium oxide on a silicon substrate can be deposited from an indium trichloride solution, a method useful for manufacture of solar cells ...
Indium(III) sulfide is a yellow or red high melting solid. It is an n-type semiconductor. In 2 Se 3 Indium(III) selenide is a black compound with potential optical applications. In 2 Te 3 Indium(III) telluride is a black high melting solid with applications as a semiconductor and in optical material. It has two crystalline forms, α and β.