15651-37-3 Usage
Uses
Used in Catalysis Industry:
Tetraammineplatinum (II) hydroxide hydrate (59% Pt) is used as a catalyst in various chemical reactions for its ability to accelerate processes without being consumed in the reaction. Its high water solubility and unique chemical properties make it a valuable component in this industry.
Used in Metal Plating Industry:
In the metal plating industry, Tetraammineplatinum (II) hydroxide hydrate (59% Pt) is used as a plating agent to deposit a thin layer of platinum onto other materials. This enhances the material's properties, such as corrosion resistance and conductivity.
Used in Pharmaceutical Industry:
Tetraammineplatinum (II) hydroxide hydrate (59% Pt) is used as a precursor in the synthesis of certain medications, particularly in the development of chemotherapeutic agents. Its role in medicine is crucial for creating life-saving drugs that treat various types of cancer.
Used in Research and Development:
TETRAAMMINEPLATINUM (II) HYDROXIDE HYDRATE (59% PT) is also utilized in research and development settings for studying platinum-based catalysts and exploring new applications in various fields, including environmental remediation and energy production. Its unique properties and reactivity make it a subject of interest for scientific inquiry.
Check Digit Verification of cas no
The CAS Registry Mumber 15651-37-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,5,6,5 and 1 respectively; the second part has 2 digits, 3 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 15651-37:
(7*1)+(6*5)+(5*6)+(4*5)+(3*1)+(2*3)+(1*7)=103
103 % 10 = 3
So 15651-37-3 is a valid CAS Registry Number.
InChI:InChI=1/4H3N.2H2O.Pt/h4*1H3;2*1H2;/q;;;;;;+2/p-2
15651-37-3Relevant academic research and scientific papers
METHOD FOR PRODUCING AQUEOUS PREPARATIONS OF COMPLEXES OF PLATINUM GROUP METALS
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Page/Page column 6, (2015/11/27)
The invention relates to a method for producing aqueous preparations of complexes of platinum group metals (PGM) Pt, Pd, Rh and Ir having the general formula [MA/MB/MC(L)a(H2O)b(O2—)c(OH?)d](OH—)e(H+)f, wherein MA=PtII or PdII, MB=PtIV, MC=Rh or Ir, L is a neutral monodentate or bidentate donor ligand, and a is an integer between 1 and 4 (or 2) and/or between 1 and 6 (or 3), b is an integer between 0 and 3 (or 5), c is an integer between 0 and 3 (or 4), d is an integer between 0 and 3 (or 5), e is an integer between 0 and 2 (or 3 or 4) and f is an integer between 0 and 4 (or 5). In the method according to the invention, the hydroxo complexes H2Pd(OH)4 (in the case of MA=PdII), H2Pt(OH)6 (in the case of MA=PtII and MB=PtIV) or H3MC(OH)6 (for MC=RhIIIIrIII) are converted in the presence of the donor ligands, wherein at least one hydroxo group of the hydro complex is exchanged. Preferably, the reaction occurs at temperatures in the range of 40 to 110° C. with a reaction time of between 2 and 24 hours, wherein, where MA=PtII, the conversion additionally occurs in the presence of a reduction agent. The method optionally further comprises an exchange of OH anions bound outside of the complex sphere with other anions (e.g. hydrogen carbonate or carbonate anions). The aqueous preparations contain PGM complexes such as [Pt(en)2](OH)2, [Pt(EA)4](OH)2 or [Rh(NH3)6](OH)3 and are used to produce electroplating baths, heterogeneous catalysts or metal powders, for example.