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Dodecanethiol Functionalized Gold Nanoparticles Solution

Linear Formula:

Au-C12H25S

MDL Number:

MFCD09953506

EC No.:

N/A

ORDER

PRODUCT Product Code ORDER SAFETY DATA TECHNICAL DATA
(2N) 99% Dodecanethiol Functionalized Gold Nanoparticles Solution
AU-TOL-02-FNPD
Pricing > SDS > Data Sheet >
(3N) 99.9% Dodecanethiol Functionalized Gold Nanoparticles Solution
AU-TOL-03-FNPD
Pricing > SDS > Data Sheet >
(4N) 99.99% Dodecanethiol Functionalized Gold Nanoparticles Solution
AU-TOL-04-FNPD
Pricing > SDS > Data Sheet >
(5N) 99.999% Dodecanethiol Functionalized Gold Nanoparticles Solution
AU-TOL-05-FNPD
Pricing > SDS > Data Sheet >

Properties

Molecular Weight

398.358469

Appearance

Dark red to brown liquid

True Density

0.9308 g/mL

Bulk Density

N/A

Size Range

3-5 nm(TEM)

Health & Safety Info  |  MSDS / SDS

Signal Word Danger
Hazard Statements H225-H304-H315-H319-H336-H361d-H373-H412
Hazard Codes F,Xn
Risk Codes 63-11-38-48/20-52/53-65-67
Safety Statements 16-36/37-61-62
RTECS Number N/A
Transport Information UN 1294 3/PG 2
WGK Germany 3
MSDS / SDS

About

High Purity, D50 = +10 nanometer (nm) by SEMDodecanethiol Functionalized Gold Nanoparticles typically have 3-5 nm particle size and 2 % (w/v) in toluene. Dodecanethiol Functionalized Gold Nanoparticles Solution are available through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites.Development research is underway in Nano Electronics and Photonics materials, such as MEMS and NEMS, Bio Nano Materials, such as Biomarkers, Bio Diagnostics & Bio Sensors, and Related Nano Materials, for use in Polymers, Textiles, Fuel Cell Layers, Composites and Solar Energy materials. Nanopowders are analyzed for chemical composition by ICP, particle size distribution (PSD) by laser diffraction, and for Specific Surface Area (SSA) by BET multi-point correlation techniques. Novel nanotechnology applications also include Quantum Dots. High surface areas can also be achieved using solutions and using thin film by sputtering targets and evaporation technology using pellets, rod and foil. Research into applications for nanoparticle dispersions include self assembly, drug delivery, nanopatterning, nanofabrication, nanosensors, pigments, LEDs, bioprobes, and photocatalysis. Dodecanethiol Functionalized Gold Nanoparticles Solution are generally immediately available in most volumes. Additional technical, research and safety (MSDS) information is available.

Synonyms

Dodecylthiol functionalized gold nanoparticles

Chemical Identifiers

Linear Formula

Au-C12H25S

Pubchem CID

24884475

MDL Number

MFCD09953506

EC No.

N/A

Beilstein Registry No.

N/A

IUPAC Name

dodecane-1-thiolate; gold(1+)

SMILES

CCCCCCCCCCCC[S-].[Au+]

InchI Identifier

InChI=1S/C12H26S.Au/c1-2-3-4-5-6-7-8-9-10-11-12-13;/h13H,2-12H2,1H3;/q;+1/p-1

InchI Key

QMOCMJWMJUUCRE-UHFFFAOYSA-M

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 Gold products. Gold (atomic symbol: Au, atomic number: 79) is a Block D, Group 11, Period 6 element with an atomic weight of 196.966569. The number of electrons in each of Gold's shells is 2, 8, 18, 32, 18, 1 and its electron configuration is [Xe] 4f142 5d10 6s1. Gold Bohr ModelThe gold atom has a radius of 144 pm and a Van der Waals radius of 217 pm. Gold was first discovered by Early Man prior to 6000 B.C. In its elemental form, gold has a metallic yellow appearance. Gold is a soft metal and is usually alloyed to give it more strength.Elemental Gold It is a good conductor of heat and electricity, and is unaffected by air and most reagents. It is one of the least reactive chemical elements. Gold is often found as a free element and with silver as a gold silver alloy. Less commonly, it is found in minerals as gold compounds, usually with tellurium.

See more Sulfur products. Sulfur (or Sulphur) (atomic symbol: S, atomic number: 16) is a Block P, Group 16, Period 3 element with an atomic radius of 32.066. Sulfur Bohr ModelThe number of electrons in each of Sulfur's shells is 2, 8, 6 and its electron configuration is [Ne] 3s2 3p4. In its elemental form, sulfur has a light yellow appearance. The sulfur atom has a covalent radius of 105 pm and a Van der Waals radius of 180 pm. In nature, sulfur can be found in hot springs, meteorites, volcanoes, and as galena, gypsum, and epsom salts. Sulfur has been known since ancient times but was not accepted as an element until 1777, when Antoine Lavoisier helped to convince the scientific community that it was an element and not a compound.

Recent Research

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)

Glycated hemoglobin detection with electrochemical sensing amplified by gold nanoparticles embedded N-doped graphene nanosheet., Jain, Utkarsh, and Chauhan Nidhi , Biosens Bioelectron, 2017 Mar 15, Volume 89, Issue Pt 1, p.578-584, (2017)

Versatility of a localized surface plasmon resonance-based gold nanoparticle-alloyed quantum dot nanobiosensor for immunofluorescence detection of viruses., Takemura, Kenshin, Adegoke Oluwasesan, Takahashi Naoto, Kato Tatsuya, Li Tian-Cheng, Kitamoto Noritoshi, Tanaka Tomoyuki, Suzuki Tetsuro, and Park Enoch Y. , Biosens Bioelectron, 2017 Mar 15, Volume 89, Issue Pt 2, p.998-1005, (2017)

Fabrication of peptide stabilized fluorescent gold nanocluster/graphene oxide nanocomplex and its application in turn-on detection of metalloproteinase-9., Nguyen, Phuong-Diem, Cong Vu Thanh, Baek Changyoon, and Min Junhong , Biosens Bioelectron, 2017 Mar 15, Volume 89, Issue Pt 1, p.666-672, (2017)

Highly sensitive on-site detection of glucose in human urine with naked eye based on enzymatic-like reaction mediated etching of gold nanorods., Zhang, Zhiyang, Chen Zhaopeng, Cheng Fangbin, Zhang Yaowen, and Chen Lingxin , Biosens Bioelectron, 2017 Mar 15, Volume 89, Issue Pt 2, p.932-936, (2017)

Hybridization chain reaction-based colorimetric aptasensor of adenosine 5'-triphosphate on unmodified gold nanoparticles and two label-free hairpin probes., Gao, Zhuangqiang, Qiu Zhenli, Lu Minghua, Shu Jian, and Tang Dianping , Biosens Bioelectron, 2017 Mar 15, Volume 89, Issue Pt 2, p.1006-1012, (2017)

One-step in situ solid-substrate-based whole blood immunoassay based on FRET between upconversion and gold nanoparticles., Li, Cuixia, Zuo Jing, Li Qiqing, Chang Yulei, Zhang Youlin, Tu Langping, Liu Xiaomin, Xue Bin, Zhao Huiying, Zhang Hong, et al. , Biosens Bioelectron, 2017 Jun 15, Volume 92, p.335-341, (2017)

Biopolymer/gold nanoparticles composite plasmonic thermal history indicator to monitor quality and safety of perishable bioproducts., Wang, Yi-Cheng, Lu Lin, and Gunasekaran Sundaram , Biosens Bioelectron, 2017 Jun 15, Volume 92, p.109-116, (2017)

Fluorescence bio-barcode DNA assay based on gold and magnetic nanoparticles for detection of Exotoxin A gene sequence., Amini, Bahram, Kamali Mehdi, Salouti Mojtaba, and Yaghmaei Parichehreh , Biosens Bioelectron, 2017 Jun 15, Volume 92, p.679-686, (2017)

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April 24, 2017
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