Cas no 305808-24-6 (2-Naphthyl Phosphate Calcium Salt Hydrate)

2-Naphthyl Phosphate Calcium Salt Hydrate is a biochemical reagent commonly used as a substrate for alkaline phosphatase in enzymatic assays. Its key advantages include high purity and stability, ensuring reliable performance in diagnostic and research applications. The calcium salt form enhances solubility in aqueous solutions, facilitating consistent reaction conditions. As a hydrated compound, it offers improved handling and storage characteristics. This compound is particularly valued in histochemistry and ELISA for its ability to produce a measurable signal upon enzymatic hydrolysis. Its specificity for alkaline phosphatase makes it a preferred choice for detecting and quantifying enzyme activity in biological samples.
2-Naphthyl Phosphate Calcium Salt Hydrate structure
305808-24-6 structure
Product Name:2-Naphthyl Phosphate Calcium Salt Hydrate
CAS No:305808-24-6
MF:C10H7CaO4P
MW:262.211942911148
CID:299991
PubChem ID:24855825
Update Time:2025-05-26

2-Naphthyl Phosphate Calcium Salt Hydrate Chemical and Physical Properties

Names and Identifiers

    • 2-Naphthalenol,dihydrogen phosphate, calcium salt (1:1), monohydrate (9CI)
    • calcium,naphthalen-2-yl hydrogen phosphate,hydrate
    • 2-Naphthyl phosphate calciuM salt hydrate
    • DTXSID10221628
    • Calcium 2-naphthyl phosphate
    • J-018027
    • 71436-98-1
    • calcium naphthalen-2-yl phosphate
    • 2-NAPHTHYL PHOSPHATE CALCIUM SALT
    • 83817-45-2
    • EINECS 280-947-6
    • Calcium 2-naphthyl phosphate (1:1)
    • FT-0709848
    • CALCIUM 2-NAPHTHYLPHOSPHATE
    • 2-Naphthalenol, dihydrogen phosphate, calcium salt
    • EINECS 275-457-4
    • SCHEMBL2963773
    • 305808-24-6
    • MPIBXADBMJKANU-UHFFFAOYSA-L
    • 2-Naphthyl Phosphate Calcium Salt Hydrate
    • MDL: MFCD00149269
    • Inchi: 1S/C10H9O4P.Ca/c11-15(12,13)14-10-6-5-8-3-1-2-4-9(8)7-10;/h1-7H,(H2,11,12,13);/q;+2/p-2
    • InChI Key: MPIBXADBMJKANU-UHFFFAOYSA-L
    • SMILES: [Ca+2].P(=O)([O-])([O-])OC1=CC=C2C=CC=CC2=C1

Computed Properties

  • Exact Mass: 279.98137
  • Monoisotopic Mass: 261.9707865g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 3
  • Hydrogen Bond Acceptor Count: 9
  • Heavy Atom Count: 32
  • Rotatable Bond Count: 4
  • Complexity: 260
  • Covalently-Bonded Unit Count: 4
  • 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: 72.4?2

Experimental Properties

  • Color/Form: Not determined
  • Density: Not available
  • Melting Point: 254-257?°C (lit.)
  • Boiling Point: Not available
  • Flash Point: Not available
  • PSA: 76.26
  • LogP: 5.43470
  • Solubility: Not determined
  • Vapor Pressure: Not available

2-Naphthyl Phosphate Calcium Salt Hydrate Pricemore >>

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Additional information on 2-Naphthyl Phosphate Calcium Salt Hydrate

Introduction to 2-Naphthyl Phosphate Calcium Salt Hydrate (CAS No. 305808-24-6)

2-Naphthyl Phosphate Calcium Salt Hydrate, identified by the Chemical Abstracts Service Number (CAS No.) 305808-24-6, is a specialized compound that has garnered attention in the field of chemical and pharmaceutical research. This calcium salt hydrate derivative of 2-naphthyl phosphate represents a unique chemical entity with potential applications in various scientific domains, particularly in biochemical assays and material science. The compound's structure, characterized by its phosphate backbone and naphthyl substituents, contributes to its distinct reactivity and solubility profile, making it a subject of interest for researchers exploring novel synthetic pathways and functional materials.

The significance of 2-Naphthyl Phosphate Calcium Salt Hydrate lies in its versatility as a reagent or intermediate in chemical synthesis. Its ability to participate in various organic reactions, such as phosphorylation and metal coordination, underscores its utility in pharmaceutical development and industrial applications. Recent studies have highlighted its role in facilitating the synthesis of complex organic molecules, where the compound serves as a stabilizing agent or a catalyst enhancer. The hydrate form further enhances its solubility in polar solvents, broadening its scope for laboratory-scale experiments and large-scale industrial processes.

In the realm of pharmaceutical research, 2-Naphthyl Phosphate Calcium Salt Hydrate has been investigated for its potential interaction with biological targets. The naphthyl group, known for its aromatic stability and electronic properties, can influence the compound's binding affinity to enzymes or receptors. Preliminary studies suggest that derivatives of this compound may exhibit pharmacological activity by modulating metabolic pathways or signal transduction mechanisms. While comprehensive clinical trials are still under way, the preliminary findings are encouraging for further exploration into drug discovery applications.

The synthesis of 2-Naphthyl Phosphate Calcium Salt Hydrate involves meticulous control over reaction conditions to ensure high purity and yield. Advanced synthetic methodologies, including crystallization techniques and metal ion exchange processes, are employed to isolate the desired product. The compound's stability under various environmental conditions, such as temperature and pH, is another critical factor that researchers consider when evaluating its practicality for industrial use. Innovations in green chemistry have also prompted investigations into more sustainable synthetic routes for this compound, aligning with global efforts to minimize environmental impact.

From an industrial perspective, 2-Naphthyl Phosphate Calcium Salt Hydrate finds utility in material science applications, particularly in the development of advanced polymers and coatings. Its phosphate moiety can enhance thermal stability and flame retardancy properties in polymer matrices, making it a valuable additive for high-performance materials. Additionally, the calcium salt hydrate form contributes to improved adhesion and durability in surface coatings used in automotive and aerospace industries. These applications underscore the compound's importance beyond traditional pharmaceuticals.

The analytical characterization of 2-Naphthyl Phosphate Calcium Salt Hydrate is another area where recent advancements have been made. High-resolution spectroscopic techniques, such as nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry (MS), provide detailed insights into the compound's molecular structure and purity. X-ray diffraction (XRD) studies further confirm its crystalline form and hydration state, which are critical parameters for determining its suitability for specific applications. These analytical methods ensure that researchers can reliably assess the quality of 305808-24-6 before incorporating it into their experiments.

Future research directions for 2-Naphthyl Phosphate Calcium Salt Hydrate include exploring its potential in nanotechnology and biomedicine. The compound's unique structural features make it a candidate for designing nanostructured materials with tailored properties. In biomedicine, its interactions with biological systems could lead to novel therapeutic agents or diagnostic tools. Collaborative efforts between chemists, biologists, and material scientists are essential to fully exploit the potential of this compound across multiple disciplines.

The regulatory landscape surrounding 305808-24-6 is another consideration for researchers and manufacturers alike. Compliance with international chemical safety standards ensures that handling procedures are safe and environmentally responsible. Documentation of synthesis routes, toxicity profiles, and environmental impact assessments are crucial steps in bringing this compound from laboratory research to commercial application. Transparent communication among stakeholders helps foster trust and facilitates smoother market adoption.

In conclusion,2-Naphthyl Phosphate Calcium Salt Hydrate represents a promising chemical entity with diverse applications spanning pharmaceuticals, material science, and nanotechnology. Its unique structural attributes and functional properties make it a valuable component in both academic research and industrial processes. As scientific understanding advances,the potential uses of this compound will continue to expand,driven by interdisciplinary collaboration and innovative synthetic methodologies.

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