Il s'agit d'un magasin de démonstration. Aucune commande ne sera honorée.

Tin iodide - 99.9% Trace Metals Analysis, high purity , CAS No.7790-47-8

    Grade & Purity:
  • ≥99.9% metals basis
En stock
Item Number
T401383
Articles du produit groupé
SKU Taille
Disponibilité
Prix Qté
T401383-1g
1g
3
29,90$US
T401383-5g
5g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
119,90$US
T401383-25g
25g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
499,90$US

Description générale

Synonymes Tin(IV) iodide | Stannic iodide | 7790-47-8 | Tin tetraiodide | Tetraiodostannane | MFCD00036272 | Tetraiodotin | EINECS 232-208-4 | periodostannane | Tin(IV) iodide (1:4) | UNII-8H688BW69X | tin-(IV)-iodide | tin( cento) iodide | SnI4 | Tin(IV) iodide, ultra dry | DTXSID6064876 | QPBYL
Spécifications et pureté ≥99.9% metals basis
Température de stockage Protected from light,Room temperature,Argon charged
Expédié en Normal
Product Description

Tin(IV) iodide is used in the preparation of tin(IV) oxide and tin(II) oxide. It reacts with hydroiodic acid to get rare tin hexaiodide. It forms tetraiodobis triphenylphosphine tin complexes by reacting with triphenylphosphine, which finds application in toothpaste formulation. Further, it acts as analytical reagents and also used in organic synthesis.

Taxonomic Classification

Taxonomy Tree

Kingdom Inorganic compounds
Superclass Mixed metal/non-metal compounds
Classe Post-transition metal salts
Subclass Post-transition metal iodides
Intermediate Tree Nodes Not available
Direct Parent Post-transition metal iodides
Alternative Parents Inorganic tin salts  
Molecular Framework Not available
Substituents Post-transition metal iodide - Inorganic tin salt - Inorganic salt
Description This compound belongs to the class of inorganic compounds known as post-transition metal iodides. These are inorganic compounds in which the largest halogen atom is Iodine, and the heaviest metal atom is a post-transition metal.
External Descriptors Not available

Noms et identifiants

Pubchem Sid 504753245
Pubchem Sid Url https://pubchem.ncbi.nlm.nih.gov/substance/504753245
IUPAC Name tetraiodostannane
INCHI InChI=1S/4HI.Sn/h4*1H;/q;;;;+4/p-4
InChIKey QPBYLOWPSRZOFX-UHFFFAOYSA-J
Smiles [Sn](I)(I)(I)I
Isomères SMILES [Sn](I)(I)(I)I
WGK Allemagne 3
RTECS XQ3675000
PubChem CID 24631
Numéro ONU 3260
Groupe d'emballage II
Poids moléculaire 626.33

Certificats (CoA, COO, BSE/TSE et tableau d'analyse)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

12 results found

Lot Number Certificate Type Date Article
E2521661 Certificate of Analysis Jun 02, 2025 T401383
E2521662 Certificate of Analysis Jun 02, 2025 T401383
K2414106 Certificate of Analysis Aug 27, 2024 T401383
H2421125 Certificate of Analysis Aug 27, 2024 T401383
H2421133 Certificate of Analysis Aug 26, 2024 T401383
H2421025 Certificate of Analysis Aug 26, 2024 T401383
A2211642 Certificate of Analysis Apr 13, 2023 T401383
D2307408 Certificate of Analysis Apr 13, 2023 T401383
A2211641 Certificate of Analysis Apr 13, 2023 T401383
D2307407 Certificate of Analysis Apr 13, 2023 T401383
J2324011 Certificate of Analysis Apr 13, 2023 T401383
A2211757 Certificate of Analysis Apr 13, 2023 T401383

Show more⌵

Propriétés chimiques et physiques

Solubilité Soluble in alcohol, benzene, carbon disulfide, chloroform and ether.
Sensibilité Sensitive to light, water and moisture
Indice de réfraction 2.106
Point d'ébullition (°C) 340°C
Point de fusion (°C) 143°C
Poids moléculaire 626.330 g/mol
XLogP3
Hydrogen Bond Donor Count 0
Hydrogen Bond Acceptor Count 0
Rotatable Bond Count 0
Exact Mass 627.52 Da
Monoisotopic Mass 627.52 Da
Topological Polar Surface Area 0.000 Ų
Heavy Atom Count 5
Formal Charge 0
Complexity 19.100
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 1

Citations of This Product

1. Xiaoyan Zhang, Hongmei Wang, Caihui Hong, Shufu He, Huiling Song, Xinyan Chu, Tongwei Han.  (2023)  The layered black phosphorus modified by heteroatomic carbon microspheres for energy storage.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  675  (131998). 
2. Na Zhao, Yuhao Zou, Xinzhi Chen, Hairui Weng, Chenyao Wang, Yuanzhi Zhu, Yi Mei.  (2023)  Enhanced safety of polymer solid electrolytes by using black phosphorene as a flame-retardant.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  666  (131317). 
3. Xingyun Li, Liangping Xiao, Hao Wang, Jingting Song, Qingchi Xu, Meidan Ye, Jun Xu.  (2023)  A hint from phosphine complex: The π back-bonding in cobalt-phosphorene composite enables enhanced electrocatalytic performance.  Progress in Natural Science-Materials International,  33  (100). 
4. Shaoshen Lv, Weiyin Gao, Gang Xing, Lingfeng Chao, Lin Song, Mingjie Li, Li Fu, Yonghua Chen, Chenxin Ran.  (2022)  Improving the Air Resistance of the Precursor Solution for Ambient-Air Coating of an Sn–Pb Perovskite Film with Superior Photovoltaic Performance.  ACS Applied Materials & Interfaces,  14  (38): (43362–43371). 
5. Lingxin He, Fukai Chu, Xia Zhou, Lei Song, Yuan Hu.  (2022)  Cactus-like structure of BP@MoS2 hybrids: An effective mechanical reinforcement and flame retardant additive for waterborne polyurethane.  POLYMER DEGRADATION AND STABILITY,  202  (110027). 
6. Liang Cheng, Shuilai Qiu, Jing Wang, Weijian Chen, Jingwen Wang, Wenxiang Du, Lei Song, Yuan Hu.  (2022)  A multifunctional nanocomposite based on Pt-modified black phosphorus nanosheets loading with l-arginine for synergistic gas-sonodynamic cancer therapy.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  638  (128284). 
7. Lingxin He, Xin Jiang, Xia Zhou, Zhaoxin Li, Fukai Chu, Xin Wang, Wei Cai, Lei Song, Yuan Hu.  (2022)  Integration of black phosphorene and MXene to improve fire safety and mechanical properties of waterborne polyurethane.  APPLIED SURFACE SCIENCE,  581  (152386). 
8. Cheng Lin, Lianfu Jiang, Dawei Hu, Yiqun Li, Bo Cai, Jing Li, Yu Gu, Luyang Wang, Kan Zhang, Haibo Zeng.  (2021)  P-Type AsP Nanosheet as an Electron Donor for Stable Solar Broad-Spectrum Hydrogen Evolution.  ACS Applied Materials & Interfaces,  13  (46): (55102–55111). 
9. Qian Zhang, Jian Weng, Jun Xu.  (2021)  Palladium Phosphide/Black Phosphorus Heterostructures with Enhanced Ethanol Oxidation Activity and Stability.  Journal of Physical Chemistry C,  125  (34): (18717–18724). 
10. Xingyun Li, Bin Han, Yaojie Xu, Xiao Liu, Chunhui Zhao, Jun Xu.  (2021)  Conjugated polymer coating enabled light-resistant black phosphorus with enhanced stability.  Nanoscale Advances,  (19): (5650-5655). 
11. Jie Wang, Hongqin Ma, Jia Li, Xinyue Luo, Luqi Yu.  (2021)  Preparation of Cu(І) Decorated 2D Black Phosphorus Nanosheets for Adsorption Desulfurization from Model Fuel.  ChemNanoMat,  (3): (277-283). 
12. Lingxin He, Xia Zhou, Wei Cai, Yuling Xiao, Fukai Chu, Xiaowei Mu, Xianling Fu, Yuan Hu, Lei Song.  (2020)  Electrochemical exfoliation and functionalization of black phosphorene to enhance mechanical properties and flame retardancy of waterborne polyurethane.  COMPOSITES PART B-ENGINEERING,  202  (108446). 
13. Xiao Liu, Peijie Fan, Liangping Xiao, Jian Weng, Qingchi Xu, Jun Xu.  (2021)  Reduced Ti-MOFs encapsulated black phosphorus with high stability and enhanced photocatalytic activity.  Journal of Energy Chemistry,  53  (185). 
14. Haoze Song, Xifei Li, Yanhua Cui, Dongbin Xiong, Yufen Wang, Jiesheng Zeng, Litian Dong, Dejun Li, Xueliang Sun.  (2015)  Controllable lithium storage performance of tin oxide anodes with various particle sizes.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  40  (14314). 
15. Jing Wang, Yanxiang Sang, Weijian Chen, Liang Cheng, Wenxiang Du, Hongjie Zhang, Benyan Zheng, Lei Song, Yuan Hu, Xiaopeng Ma.  (2024)  Glutathione Depletion-Induced ROS/NO Generation for Cascade Breast Cancer Therapy and Enhanced Anti-Tumor Immune Response.  International Journal of Nanomedicine,     
16. Huijian Ye, Wei Gao, Lixin Xu.  (2024)  High-temperature energy storage capability of polyetherimide composite incorporated with perovskite quantum dots.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  687  (133479). 
17. Saqib Nawaz Khan, Huili Liang, Yan Wang, Xiaolong Du, Zengxia Mei.  (2024)  Tuning solvent co-ordination in Cs2SnI6 perovskite solution via the co-solvent dilution strategy for energy-efficient broadband photodetector arrays.  Journal of Materials Chemistry A,  12  (26): (16034-16042). 

Calculateurs de solution

Avis

Avis des clients

Shall we send you a message when we have discounts available?

Remind me later

Thank you! Please check your email inbox to confirm.

Oops! Notifications are disabled.