Cas no 14286-02-3 (Diammineplatinum(II) nitrite)
Diammineplatinum(II) nitrite Chemical and Physical Properties
Names and Identifiers
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- Diammineplatinum(II) nitrite
- Diamminedinitritoplatinum(II)
- DiammineplatinumnitritesolutioninammoniumhydroxyidePt
- Dinitrodiammineplatinum ammoniacal
- Diammineplatinum nitrite
- azane,platinum(2+),dinitrite
- P Salt
- Nsc130242
- Pt(NO2)2(NH3)2
- Platinum ammine nitrite
- Platinumdiaminodinitrite
- Dinitrodiammine platinum
- Diammineplatinous nitrite
- PALLADIUM DIAMMINE NITRITE
- Diammineplatinum dinitrite
- Dinitroso-diaMine platinuM
- 14286-02-3
- J-520227
- azane;platinum(2+);dinitrite
- MFCD00011622
- Diamminedinitroplatinum pound cento pound(c)
- Platinum, diamminebis(nitrito-.kappa.N)-
- Diamminedinitritoplatinum(II) solution
- AKOS015903598
- FAOUENTVTAXLPG-UHFFFAOYSA-L
-
- MDL: MFCD00011622
- Inchi: 1S/2HNO2.2H3N.Pt/c2*2-1-3;;;/h2*(H,2,3);2*1H3;/q;;;;+2/p-2
- InChI Key: FAOUENTVTAXLPG-UHFFFAOYSA-L
- SMILES: [Pt+2].[O-]N=O.[O-]N=O.N.N
Computed Properties
- Exact Mass: 321.00400
- Monoisotopic Mass: 318.988029
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 2
- Hydrogen Bond Acceptor Count: 2
- Heavy Atom Count: 9
- Rotatable Bond Count: 0
- Complexity: 7.5
- Covalently-Bonded Unit Count: 5
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Surface Charge: 0
- Tautomer Count: nothing
- XLogP3: nothing
- Topological Polar Surface Area: 107
Experimental Properties
- Color/Form: colorless liquid
- Density: 1.015?g/mL?at 25?°C
- Boiling Point: °Cat760mmHg
- Flash Point: °C
- PSA: 111.46000
- LogP: 1.14650
- Sensitiveness: Sensitive to light
- Solubility: Fully mixable
- Color/Form: 3.4?wt. % in dilute ammonium hydroxide
Diammineplatinum(II) nitrite Security Information
-
Symbol:
- Signal Word:Danger
- Hazard Statement: H314,H335,H400
- Warning Statement: P261,P273,P280,P305+P351+P338,P310
- Hazardous Material transportation number:UN 2810
- WGK Germany:3
- Hazard Category Code: 36/37/38
- Safety Instruction: S23; S36; S43; S45
-
Hazardous Material Identification:
- HazardClass:8
- PackingGroup:III
- Safety Term:8
- Packing Group:III
- Risk Phrases:R42/43
- Packing Group:III
- Hazard Level:8
Diammineplatinum(II) nitrite Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | D100502-1g |
Diammineplatinum(II) nitrite |
14286-02-3 | 59% | 1g |
¥760.90 | 2023-09-03 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | D100502-250mg |
Diammineplatinum(II) nitrite |
14286-02-3 | 59% | 250mg |
¥218.90 | 2023-09-03 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | D100502-5g |
Diammineplatinum(II) nitrite |
14286-02-3 | 59% | 5g |
¥2945.90 | 2023-09-03 | |
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | D806326-5g |
Dinitrodiammineplatinum ammoniacal |
14286-02-3 | 59.0% | 5g |
2,860.00 | 2021-05-17 | |
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 339881-10G |
Diammineplatinum(II) nitrite |
14286-02-3 | 10g |
¥929.26 | 2023-12-08 | ||
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 339881-100G |
Diammineplatinum(II) nitrite |
14286-02-3 | 100g |
¥6517.63 | 2023-12-08 | ||
| SHANG HAI XIAN DING Biotechnology Co., Ltd. | 78-0295-50g |
Diammineplatinum(II) nitrite |
14286-02-3 | (5.0wt%asPt) | 50g |
15504CNY | 2021-05-08 | |
| SHANG HAI XIAN DING Biotechnology Co., Ltd. | 78-0295-10g |
Diammineplatinum(II) nitrite |
14286-02-3 | (5.0wt%asPt) | 10g |
3876CNY | 2021-05-08 | |
| SHANG HAI XIAN DING Biotechnology Co., Ltd. | L-WW826-200mg |
Diammineplatinum(II)nitrite,solutioninammoniumhydroxide(5.0wt%asPt) |
14286-02-3 | 59.0% | 200mg |
¥250.0 | 2022-02-28 | |
| SHANG HAI XIAN DING Biotechnology Co., Ltd. | L-WW826-1g |
Diammineplatinum(II)nitrite,solutioninammoniumhydroxide(5.0wt%asPt) |
14286-02-3 | 59.0% | 1g |
¥719.0 | 2022-02-28 |
Diammineplatinum(II) nitrite Suppliers
Diammineplatinum(II) nitrite Related Literature
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Kanjun Sun,Fengting Hua,Shuzhen Cui,Yanrong Zhu,Hui Peng,Guofu Ma RSC Adv., 2021,11, 37631-37642
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Mark D. Allendorf,Alauddin Ahmed,Tom Autrey,Jeffrey Camp,Eun Seon Cho,Maciej Haranczyk,Abhi Karkamkar,Di-Jia Liu,Katie R. Meihaus,Iffat H. Nayyar,Roman Nazarov,Donald J. Siegel,Vitalie Stavila,Jeffrey J. Urban,Srimukh Prasad Veccham,Brandon C. Wood Energy Environ. Sci., 2018,11, 2784-2812
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Eunice Y.-L. Hui,Bhimsen Rout,Yaw Sing Tan,Kok-Ping Chan,Charles W. Johannes Org. Biomol. Chem., 2018,16, 389-392
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Huiying Xu,Lu Zheng,Yu Zhou,Bang-Ce Ye Analyst, 2021,146, 5542-5549
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Govind Reddy Mol. Syst. Des. Eng., 2021,6, 779-789
Additional information on Diammineplatinum(II) nitrite
Diammineplatinum(II) Nitrite: Chemical Profile and Recent Research Applications
Diammineplatinum(II) nitrite, with the chemical formula CAS no. 14286-02-3, is a coordination compound of platinum that has garnered significant attention in the field of medicinal chemistry and materials science. This compound, characterized by its Diammineplatinum(II) nitrite structure, exhibits unique properties that make it a subject of extensive research. The nitrite moiety in its molecular structure imparts distinct reactivity and potential therapeutic applications, particularly in the development of novel pharmaceutical agents.
The synthesis of Diammineplatinum(II) nitrite involves the coordination of ammonia ligands with platinum(II) ions in the presence of nitrite salts. This process typically requires controlled conditions to ensure high yield and purity. The compound's stability under various environmental conditions, such as pH and temperature, is a critical factor in its potential applications. Recent studies have highlighted the importance of understanding these stability parameters to optimize its use in pharmaceutical formulations.
One of the most promising areas of research involving Diammineplatinum(II) nitrite is its application as a precursor in the synthesis of advanced platinum-based drugs. Platinum complexes have long been recognized for their efficacy in cancer treatment, with examples like cisplatin and carboplatin being widely used clinical agents. The nitrite group in Diammineplatinum(II) nitrite introduces new possibilities for designing next-generation anticancer drugs that may exhibit improved selectivity and reduced side effects.
Recent breakthroughs in the field have demonstrated the potential of Diammineplatinum(II) nitrite as a catalyst in organic transformations. Its ability to facilitate various chemical reactions under mild conditions makes it an attractive candidate for industrial applications. For instance, studies have shown its utility in the oxidation of alcohols to aldehydes and ketones, a reaction crucial in the synthesis of fine chemicals and pharmaceuticals. The efficiency and selectivity of these reactions highlight the compound's versatility beyond its pharmaceutical applications.
The role of Diammineplatinum(II) nitrite in biological systems has also been a focus of recent research. Investigations into its interaction with biomolecules have provided insights into its potential mechanisms of action. These studies suggest that the compound may interfere with DNA replication and transcription, leading to apoptosis in cancer cells. Such findings are pivotal in developing targeted therapies that leverage the unique properties of platinum complexes.
In addition to its therapeutic potential, Diamamineplatinum(II) nitrite has shown promise as a material for advanced technological applications. Its coordination chemistry allows for the design of metal-organic frameworks (MOFs) with tailored properties. These MOFs can be used for gas storage, separation technologies, and even as sensors for detecting environmental pollutants. The adaptability of Diamamineplatinum(II) nitrite in forming stable complexes with various ligands makes it a valuable building block for such innovative materials.
The environmental impact of using Diamamineplatinum(II) nitrite has also been studied extensively. Researchers are exploring sustainable synthetic routes to minimize waste and energy consumption during production. Additionally, efforts are being made to develop methods for safely disposing of or recycling this compound after use, ensuring that its benefits can be harnessed without compromising environmental integrity.
Future directions in the research of Diamamineplatinum(II) nitrite include exploring its potential in treating infectious diseases. Preliminary studies suggest that platinum complexes may exhibit antimicrobial properties, making them effective against drug-resistant bacteria and fungi. The unique reactivity introduced by the nitrite group could enhance these properties, leading to novel antimicrobial agents that address current challenges in healthcare.
The development of diagnostic tools utilizing Diamamineplatinum(II) nitrite is another emerging area of interest. Its ability to bind specifically to certain biomolecules makes it a candidate for developing sensitive and selective biosensors. These biosensors could be used for early detection of diseases or monitoring therapeutic responses, offering significant advantages over existing diagnostic methods.
In conclusion, Diamamineplatinum(II) nitrite represents a fascinating compound with diverse applications across multiple scientific disciplines. Its unique chemical structure and reactivity make it a valuable asset in medicinal chemistry, materials science, and environmental technology. As research continues to uncover new possibilities for this compound, its impact on science and industry is expected to grow significantly.
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