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Platinum Nanoparticle Dispersion

Platinum Nanodispersion

CAS #:

Linear Formula:

Pt

MDL Number:

MFCD00011179

EC No.:

231-116-1

ORDER

PRODUCT Product Code ORDER SAFETY DATA TECHNICAL DATA
(2N) 99% Platinum Nanoparticle Dispersion
PT-M-02-NPD
Pricing > SDS > Data Sheet >
(3N) 99.9% Platinum Nanoparticle Dispersion
PT-M-03-NPD
Pricing > SDS > Data Sheet >
(4N) 99.99% Platinum Nanoparticle Dispersion
PT-M-04-NPD
Pricing > SDS > Data Sheet >
(5N) 99.999% Platinum Nanoparticle Dispersion
PT-M-05-NPD
Pricing > SDS > Data Sheet >
Question? Ask an American Elements EngineerWHOLESALE/SKU 0000-742-241553

Platinum Nanoparticle Dispersion Properties

Molecular Weight

195.08

Appearance

Liquid dispersion

Melting Point

Varies by solvent

Boiling Point

Varies by solvent

Average Particle Size

30-200 nm

Morphology

N/A

Platinum Nanoparticle Dispersion Health & Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Transport Information N/A
MSDS / SDS

About Platinum Nanoparticle Dispersion

Platinum Nanoparticle Dispersions are suspensions of platinum nanoparticles in water or various organic solvents such as ethanol or mineral oil. American Elements manufactures precious metal nanopowders and nanoparticles with typical particle sizes ranging from 10 to 200nm and in coated and surface functionalized forms. Our nanodispersion and nanofluid experts can provide technical guidance for selecting the most appropriate particle size, solvent, and coating material for a given application. We can also produce custom nanomaterials tailored to the specific requirements of our customers upon request.

Platinum Nanoparticle Dispersion Synonyms

Platinum nanopowder suspension, platinum nanofluid, colloidal platinum, MesoPlatinum

Platinum Nanoparticle Dispersion Chemical Identifiers

Linear Formula

Pt

Pubchem CID

23939

MDL Number

MFCD00011179

EC No.

231-116-1

Beilstein Registry No.

N/A

SMILES

[Pt]

InchI Identifier

InChI=1S/Pt

InchI Key

BASFCYQUMIYNBI-UHFFFAOYSA-N

Packaging Specifications

Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Shipping documentation includes a Certificate of Analysis and Safety Data Sheet (SDS). Solutions are packaged in polypropylene, plastic or glass jars up to palletized 440 gallon liquid totes, and 36,000 lb. tanker trucks.

Related Elements

See more Platinum products. Platinum (atomic symbol: Pt, atomic number: 78) is a Block D, Group 10, Period 6 element with an atomic weight of 195.084. The number of electrons in each of platinum's shells is [2, 8, 18, 32, 17, 1] and its electron configuration is [Xe] 4f14 5d9 6s1. The platinum atom has a radius of 139 pm and a Van der Waals radius of 175 pm. Platinum Bohr ModelElemental PlatinumPlatinum was discovered and first isolated by Antonio de Ulloa in 1735. It is one of the rarest elements in the earth's crust, occurring at a concentration of only 0.005 ppm. Platinum is found uncombined as a free element and alloyed with iridium as platiniridium. In its elemental form, platinum has a grayish white appearance. It is highly resistant to corrosion: the metal does not oxidize in air at any temperature. It is generally non-reactive, even at high temperatures. The origin of the name "platinum" comes from the Spanish word platina, meaning silver.

Recent Research

Cobalt nanoparticles supported on N-doped mesoporous carbon as a highly efficient catalyst for the synthesis of aromatic amines., Cui, Xueliang, Liang Kun, Tian Meng, Zhu Yangyang, Ma Jiantai, and Dong Zhengping , J Colloid Interface Sci, 2017 Sep 01, Volume 501, p.231-240, (2017)

A novel chondroitin sulfate decorated nano platinum for the treatment of osteoarthritis., Yin, Xue-Feng, Wang Lin-Liang, and Chu Xiu-Cheng , Mater Sci Eng C Mater Biol Appl, 2017 Sep 01, Volume 78, p.452-456, (2017)

PLLA microcapsules combined with silver nanoparticles and chlorhexidine acetate showing improved antibacterial effect., Zhou, Yuwei, Hu Ke, Guo Zhaobin, Fang Kun, Wang Xing, Yang Fang, and Gu Ning , Mater Sci Eng C Mater Biol Appl, 2017 Sep 01, Volume 78, p.349-353, (2017)

Using reduced graphene oxide-Ca:CdSe nanocomposite to enhance photoelectrochemical activity of gold nanoparticles functionalized tungsten oxide for highly sensitive prostate specific antigen detection., Wang, Xueping, Xu Rui, Sun Xu, Wang Yaoguang, Ren Xiang, Du Bin, Wu Dan, and Wei Qin , Biosens Bioelectron, 2017 Oct 15, Volume 96, p.239-245, (2017)

Antitumor activity of intratracheal inhalation of temozolomide (TMZ) loaded into gold nanoparticles and/or liposomes against urethane-induced lung cancer in BALB/c mice., Hamzawy, Mohamed A., Abo-Youssef Amira M., Salem Heba F., and Mohammed Sameh A. , Drug Deliv, 2017 Nov, Volume 24, Issue 1, p.599-607, (2017)

Influence of PEG coating on the oral bioavailability of gold nanoparticles in rats., Alalaiwe, Ahmed, Roberts Georgia, Carpinone Paul, Munson John, and Roberts Stephen , Drug Deliv, 2017 Nov, Volume 24, Issue 1, p.591-598, (2017)

Mannose-conjugated platinum complexes reveals effective tumor targeting mediated by glucose transporter 1., Liu, Ran, Li Hong, Gao Xiangqian, Mi Qian, Zhao Hongxia, and Gao Qingzhi , Biochem Biophys Res Commun, 2017 May 20, Volume 487, Issue 1, p.34-40, (2017)

Mesoporous metallic rhodium nanoparticles., Jiang, Bo, Li Cuiling, Dag Ömer, Abe Hideki, Takei Toshiaki, Imai Tsubasa, Hossain Md Shahriar A., Islam Md Tofazzal, Wood Kathleen, Henzie Joel, et al. , Nat Commun, 2017 May 19, Volume 8, p.15581, (2017)

Unmasking the Catalytic Activity of a Platinum Complex with a Lewis Acidic, Non-innocent Antimony Ligand., You, Di, and Gabbaï François P. , J Am Chem Soc, 2017 May 16, (2017)

Rapid synthesis of ethyl cellulose supported platinum nanoparticles for the non-enzymatic determination of H2O2., Karthik, Raj, Karikalan Natarajan, and Chen Shen-Ming , Carbohydr Polym, 2017 May 15, Volume 164, p.102-108, (2017)

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June 23, 2017
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