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| SKU | Size | Availability |
Price | Qty |
|---|---|---|---|---|
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I431960-10g
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10g |
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
|
$416.90
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I431960-50g
|
50g |
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
|
$1,626.90
|
|
| Synonyms | Q2331023 | 514CE39CG4 | INDIUM SESQUISULFATE | XGCKLPDYTQRDTR-UHFFFAOYSA-H | Indium(III) sulfate hydrate (99.999%-In) PURATREM | Indium(III) sulfate, anhydrous, >=98.0% (T) | Indium( cento) sulfate hydrate | Indisulfat [German] | INDIUM SULFATE [MI] | Ind |
|---|---|
| Specifications & Purity | anhydrous, ≥98%(T) |
| Grade | anhydrous |
Taxonomy Tree
| Kingdom | Inorganic compounds |
|---|---|
| Superclass | Mixed metal/non-metal compounds |
| Class | Post-transition metal oxoanionic compounds |
| Subclass | Post-transition metal sulfates |
| Intermediate Tree Nodes | Not available |
| Direct Parent | Post-transition metal sulfates |
| Alternative Parents | Post-transition metal salts Inorganic salts Inorganic oxides |
| Molecular Framework | Not available |
| Substituents | Post-transition metal sulfate - Inorganic post-transition metal salt - Inorganic oxide - Inorganic salt |
| Description | This compound belongs to the class of inorganic compounds known as post-transition metal sulfates. These are inorganic compounds in which the largest oxoanion is sulfate, and in which the heaviest atom not in an oxoanion is a post-transition metal. |
| External Descriptors | Not available |
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| IUPAC Name | indium(3+);trisulfate |
|---|---|
| INCHI | InChI=1S/2In.3H2O4S/c;;3*1-5(2,3)4/h;;3*(H2,1,2,3,4)/q2*+3;;;/p-6 |
| InChIKey | XGCKLPDYTQRDTR-UHFFFAOYSA-H |
| Smiles | [O-]S(=O)(=O)[O-].[O-]S(=O)(=O)[O-].[O-]S(=O)(=O)[O-].[In+3].[In+3] |
| Isomeric SMILES | [O-]S(=O)(=O)[O-].[O-]S(=O)(=O)[O-].[O-]S(=O)(=O)[O-].[In+3].[In+3] |
| WGK Germany | 3 |
| RTECS | NL1925000 |
| PubChem CID | 26044 |
| Molecular Weight | 517.82 |
| Molecular Weight | 517.799 g/mol |
|---|---|
| XLogP3 | |
| Hydrogen Bond Donor Count | 0 |
| Hydrogen Bond Acceptor Count | 12 |
| Rotatable Bond Count | 0 |
| Exact Mass | 517.663 Da |
| Monoisotopic Mass | 517.663 Da |
| Topological Polar Surface Area | 266.000 Ų |
| Heavy Atom Count | 17 |
| Formal Charge | 0 |
| Complexity | 62.200 |
| Isotope Atom Count | 0 |
| Defined Atom Stereocenter Count | 0 |
| Undefined Atom Stereocenter Count | 0 |
| Defined Bond Stereocenter Count | 0 |
| Undefined Bond Stereocenter Count | 0 |
| The total count of all stereochemical bonds | 0 |
| Covalently-Bonded Unit Count | 5 |
| 1. Huang Hua, Tao Xin, Niu Zhirui, Shan Baoqin, Liu Yu, Ren Jingyu. (2023) Construction of a p-n heterojunction based on magnetic Mn0.6Zn0.4Fe2O4 and ZnIn2S4 to improve photocatalytic performance. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 30 (8): (20790-20803). |
| 2. Miao Wang, Xiaona Ren, Gang Yuan, Xiaopo Niu, Qingli Xu, Wenluan Gao, Shuaikang Zhu, Qingfa Wang. (2020) Selective electroreduction of CO2 to CO over co-electrodeposited dendritic core-shell indium-doped Cu@Cu2O catalyst. Journal of CO2 Utilization, 37 (204). |
| 3. Qiu-hang CHEN, Shi-liang MEI, Wu YANG, Wan-lu ZHANG, Gui-lin ZHANG, Jia-tao ZHU, Rui-qian GUO. (2018) Tunable emission of cadmium-free transition metal (Cu, Mn, Ag) co-doped ZnInS/ZnS core-shell quantum dots. TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 28 (1611). |
| 4. Jiatao Zhu, Shiliang Mei, Wu Yang, Guilin Zhang, Qiuhang Chen, Wanlu Zhang, Ruiqian Guo. (2017) Tunable emission of Cu (Mn)-doped ZnInS quantum dots via dopant interaction. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 506 (27). |
| 5. Xiaolu Sun, Linhua Jiang, Ning Duan, Liye Bao, Hao Jin, Guangbin Zhu, Yong Liu, Zhiguo Song, Rong Zhang. (2024) Diversified competitive sulfuration behaviors of concomitant heavy metal ions on copper recovery from copper smelting waste acid. CHEMICAL ENGINEERING JOURNAL, 500 (157279). |
| 6. Jingyu Ren, Xinyi Yang, Zhirui Niu, Jian Wang, Jin Han, Jijiang Wang, Yanzhong Zhen. (2024) Improving carrier separation in ZnIn2S4 to boost photocatalytic degradation of metronidazole based on machine learning prediction, experimental verification and theory calculation. CHEMICAL ENGINEERING JOURNAL, 497 (155014). |