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Tin Acetate Solution
AE Solutions™
Sn(CH2CO2)2
Product
Product Code
Order or Specifications
99% Tin Acetate Solution
SN-AC-02-SOL
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99.9% Tin Acetate Solution
SN-AC-03-SOL
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99.99% Tin Acetate Solution
SN-AC-04-SOL
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99.999% Tin Acetate Solution
SN-AC-05-SOL
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Tin Acetate Solutions are moderate to highly concentrated liquid solutions of Tin Acetate. They are an excellent source of Tin Acetate for applications requiring solubabilzed materials. American Elements can prepare dissolved homogenous solutions at customer specified concentrations or to the maximum stoichiometric concentration. Packaging is available in 55 gallon drums, smaller units and larger liquid totes. American Elements maintains solution production facilities in the United States, Northern Europe (Liverpool, UK), Southern Europe (Milan, Italy), Australia and China to allow for lower freight costs and quicker delivery to our customers. .American Elements metal and rare earth compound solutions have numerous applications, but are commonly used in petrochemical cracking and automotive catalysts, water treatment, plating, textiles, research and in optic, laser, crystal and glass applications. Ultra high purity and high purity compositions improve both optical quality and usefulness as scientific standards. Nanoscale (See also Nanotechnology Information and Quantum Dots) elemental powders and suspensions, as alternative high surface area forms, may be considered. We also produce Tin Acetate Powder. Additional technical, research and safety (MSDS) information is available as is a Reference Calculator for converting relevant units of measurement.

Tin is a Block P, Group 14, Period 5 element. The electronic configuration is [Kr] 4d10 5s2 5p2. In its elemental form tin's CAS number is 7440-31-5. The tin atom has a radius of 140.5.pm and it's Van der Waals radius is 217.pm. Tin compounds sprayed onto glass are used to produce electrically conductive coatings. These have been used for panel lighting and for frost-free windshields. Most window glass is now made by floating molten glass on molten tin (float glass) to produce a flat surface. Crystalline tin-niobium alloy is superconductive at very low temperatures. This promises to be important in the construction of superconductive magnets that generate enormous field strengths but use practically no power. Tin is the basis for many eutectic alloys and the discovery by early man that copper could be better formed and crafted if tin were added producing the first bronze and launching what we refer to as the "Bronze Age" and the first Neolithic metal tools, cooking utensils, and jewelry produced from rudimentary bronze.

Formula CAS No. Appearance Molecular Weight
Sn(CH2CO2)2 638-39-1 Whitish-Yellow to Clear Liquid 236.80
PRODUCT CATALOG Submicron & Nanopowder Tolling Ultra High Purity Sputtering Target Crystal Growth Rod, Plate, Powder, etc.
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Recent Research & Development for Tin

  • High power fiber laser driver for efficient EUV lithography source with tin-doped water droplet targets. Opt Express. 2008 Jan 21;16(2):965-74.

  • p-Type Cu-Ti-O Nanotube Arrays and Their Use in Self-Biased Heterojunction Photoelectrochemical Diodes for Hydrogen Generation. Nano Lett. 2008 Jun 10. [Epub ahead of print]

  • How Do Analogous alpha-Chloroenamides and alpha-Iodoenamides Give Different Product Distributions in 5-Endo Radical Cyclizations? J Am Chem Soc. 2008 Jun 10. [Epub ahead of print]

  • Cooperativity and Tunable Excited State Deactivation: Modular Self-Assembly of Depsipeptide Dendrons on a Hamilton Receptor Modified Porphyrin Platform. J Am Chem Soc. 2008 Jun 7. [Epub ahead of print]

  • Electrooxidation of catecholamines at carbon nanotube-modified indium tin oxide electrodes. Anal Chim Acta. 2008 Jun 30;619(1):49-53. Epub 2008 Mar 14.

  • Aromatase inhibitors: a new reality for the adjuvant endocrine treatment of early-stage breast cancer in postmenopausal women. Mini Rev Med Chem. 2008 Jun;8(6):564-74.

  • Skeletal muscle in cancer cachexia: the ideal target of drug therapy. Curr Cancer Drug Targets. 2008 Jun;8(4):285-98.

  • Novel Biodegradable Adaptive Hydrogels: Controlled Synthesis and Full Characterization of the Amphiphilic Co-Networks. Chemistry. 2008 Jun 9. [Epub ahead of print]

  • [Molecular aggregation and spectrum properties of stilbene 3 doped lead-tin-fluorophosphate glass] Guang Pu Xue Yu Guang Pu Fen Xi. 2008 Mar;28(3):485-9. Chinese.

  • Bedside ultrasound of the lung for the monitoring of acute decompensated heart failure. Am J Emerg Med. 2008 Jun;26(5):585-91.

  • Imatinib mesylate for the treatment of chronic myeloid leukemia. Expert Rev Anticancer Ther. 2008 Jun;8(6):853-64.

  • Management of residual fragments after SWL. Arch Ital Urol Androl. 2008 Mar;80(1):34-8.

  • Acute small bowel obstruction caused by endometriosis: A case report and review of the literature. World J Gastroenterol. 2008 Jun 7;14(21):3430-4.

  • Ecotoxicity of selected nano-materials to aquatic organisms. Environ Toxicol. 2008 Jun 4. [Epub ahead of print]

  • Efficacy of music therapy in the treatment of behavioral and psychiatric symptoms of dementia. Alzheimer Dis Assoc Disord. 2008 Apr-Jun;22(2):158-62.

  • Diagnosis of radio-occult pulmonary conditions by real-time chest ultrasonography in patients with pleuritic pain. Ultrasound Med Biol. 2008 Jun 2. [Epub ahead of print]

  • Percutaneous treatment of a single saphenous vein graft with two different protection devices. J Invasive Cardiol. 2008 Jun;20(6):E180-2.

  • Cardiac biomarkers in pulmonary embolism. Thromb Haemost. 2008 Jun;99(6):1134-6. No abstract available.

  • Sn12O8(OH)4(OEt)28(HOEt)4: an Additional Member in the Family of Dodecameric Oxo Clusters. Inorg Chem. 2008 Jun 3. [Epub ahead of print]

  • A new technique for regional anesthesia for arthroscopic shoulder surgery based on a suprascapular nerve block and an axillary nerve block: an evaluation of the first results. Arthroscopy. 2008 Jun;24(6):689-96. Epub 2008 Mar 21.

 

 

 

 

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