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Nedaplatin

CAS #:

Linear Formula:

C2H8N2O3Pt

MDL Number:

MFCD00866374

EC No.:

N/A

ORDER

PRODUCT Product Code ORDER SAFETY DATA TECHNICAL DATA
Nedaplatin
PT-OMX-01
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Properties

Compound Formula

C2H8/sub>N2O3Pt

Molecular Weight

303.18

Appearance

White to off-white powder

Melting Point

N/A

Boiling Point

N/A

Density

N/A

Exact Mass

303.018283 g/mol

Monoisotopic Mass

303.018283 g/mol

Charge

0

Health & Safety Info  |  MSDS / SDS

Signal Word Warning
Hazard Statements H315-H317-H319-H335-H351
Hazard Codes Xn
Risk Codes 36/37/38-40-42/43
Safety Statements 26-36
RTECS Number TP2275850
Transport Information UN 2811 6.1/PG II
WGK Germany 3
MSDS / SDS

About

Nedaplatin (formal name: cis-Diammine(glycolato)platinum) is a organometallic compound and one of several platinum-based antineoplastic agents used in experimental cancer treatments. These compounds, also known as platins, include Cisplatin, Oxaliplatin, Carboplatin, Satraplatin, andOxaliplatin. Please note that this material is for research purposes only and not intended for human use. American Elements supplies all organometallic products in most volumes including bulk quantities and also can produce materials to customer specifications. Please request a quote above for more information on pricing and lead time.

Synonyms

Cis-Diammine(glycolato)platinum, (glycolato-O,O')diammineplatinum II

Chemical Identifiers

Linear Formula

C2H8N2O3Pt

Pubchem CID

72120

MDL Number

MFCD00866374

EC No.

N/A

Beilstein Registry No.

N/A

IUPAC Name

azanide; 2-hydroxyacetic acid; platinum(2+)

SMILES

C(C(=O)O)O.[NH2-].[NH2-].[Pt+2]

InchI Identifier

InChI=1S/C2H4O3.2H2N.Pt/c3-1-2(4)5;;;/h3H,1H2,(H,4,5);2*1H2;/q;2*-1;+2

InchI Key

KLNFSAOEKUDMFA-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 Nitrogen products. Nitrogen is a Block P, Group 15, Period 2 element. Its electron configuration is [He]2s22p3. In its elemental form, nitrogen's CAS number is 7727-37-9. Nitrogen is an odorless, tasteless, colorless and mostly inert gas. It is the seventh most abundant element in the universe and it constitutes 78.09% (by volume) of Earth's atmosphere. Nitrogen was discovered by Daniel Rutherford in 1772.

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

Nitrogen doped graphene quantum dots based long-persistent chemiluminescence system for ascorbic acid imaging., Chen, Hongjun, Wang Qin, Shen Qinpeng, Liu Xin, Li Wang, Nie Zhou, and Yao Shouzhuo , Biosens Bioelectron, 2017 May 15, Volume 91, p.878-884, (2017)

Nitrogen-doped graphene quantum dots-labeled epitope imprinted polymer with double templates via the metal chelation for specific recognition of cytochrome c., Yan, Yun-Jing, He Xi-Wen, Li Wen-You, and Zhang Yu-Kui , Biosens Bioelectron, 2017 May 15, Volume 91, p.253-261, (2017)

Groundwater nitrate reduction versus dissolved gas production: A tale of two catchments., McAleer, E B., Coxon C E., Richards K G., Jahangir M M. R., Grant J, and Mellander Per E. , Sci Total Environ, 2017 May 15, Volume 586, p.372-389, (2017)

Graphitic carbon nitride nanofibers in seaweed-like architecture for gas chromatographic separations., Zheng, Yunzhong, Han Qing, Qi Meiling, and Qu Liangti , J Chromatogr A, 2017 May 05, Volume 1496, p.133-140, (2017)

Boron nitride nanowalls: low-temperature plasma-enhanced chemical vapor deposition synthesis and optical properties., Merenkov, Ivan S., Kosinova Marina L., and Maximovskii Eugene A. , Nanotechnology, 2017 May 05, Volume 28, Issue 18, p.185602, (2017)

Investigation of silicon carbon nitride nanocomposite films as a wear resistant layer in vitro and in vivo for joint replacement applications., Liang, Y, Liu D G., Bai W Q., and Tu J P. , Colloids Surf B Biointerfaces, 2017 May 01, Volume 153, p.41-51, (2017)

Metal-free hybrids of graphitic carbon nitride and nanodiamonds for photoelectrochemical and photocatalytic applications., Zhou, Li, Zhang Huayang, Guo Xiaochen, Sun Hongqi, Liu Shaomin, Tadé Moses O., and Wang Shaobin , J Colloid Interface Sci, 2017 May 01, Volume 493, p.275-280, (2017)

Bacteriostatic behavior of surface modulated silicon nitride in comparison to polyetheretherketone and titanium., Bock, Ryan M., Jones Erin N., Ray Darin A., B Bal Sonny, Pezzotti Giuseppe, and McEntire Bryan J. , J Biomed Mater Res A, 2017 May, Volume 105, Issue 5, p.1521-1534, (2017)

Simultaneous domestic wastewater and nitrate sewage treatment by DEnitrifying AMmonium OXidation (DEAMOX) in sequencing batch reactor., Du, Rui, Cao Shenbin, Li Baikun, Wang Shuying, and Peng Yongzhen , Chemosphere, 2017 May, Volume 174, p.399-407, (2017)

Extraction of trace polychlorinated biphenyls in environmental waters by well-dispersed velvet-like magnetic carbon nitride nanocomposites., Li, Dandan, Zhu Jun, Wang Man, Bi Wentao, Huang Xiaohua, and Chen David Da Yong , J Chromatogr A, 2017 Mar 31, Volume 1491, p.27-35, (2017)

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