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形狀
spheres
反應適用性
core: platinum
reagent type: catalyst
環保替代產品特色
Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.
sustainability
Greener Alternative Product
標籤範圍
0.5 wt. % loading
環保替代類別
SMILES 字串
[Pt]
InChI
1S/Pt
InChI 密鑰
BASFCYQUMIYNBI-UHFFFAOYSA-N
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一般說明
We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find details here.
應用
Catalyst for:
Used for:
- In-situ ion exchange preparation of platinum-carbon nanotubes electrode
- PtRu nanoparticles supported on nitrogen-doped porous carbon for use in fuel cells
- Producing hydrogen from methylcyclohexane
- Microfibrous structured catalytic packings for miniature methanol fuel processors
Used for:
- Self-assembled monolayer of graphene-platinum counter electrode for efficient dye-sensitized solar cells
- Borohydride interaction with metal surfaces
Platinum on alumina (Pt/Al2O3) (0.5 wt. % loading, spheres) can be used as a catalyst for a variety of applications, such as:
- in the hydrodechlorination of chlorobenzenes
- oxidation, reduction, and decomposition
- in methanol steam reforming
- hydrocarbon combustion
法律資訊
ESCAT is a trademark of BASF Catalysts, LLC
儲存類別代碼
13 - Non Combustible Solids
水污染物質分類(WGK)
nwg
閃點(°F)
Not applicable
閃點(°C)
Not applicable
個人防護裝備
Eyeshields, Gloves, type N95 (US)
其他客户在看
Feng Gong et al.
Physical chemistry chemical physics : PCCP, 13(39), 17676-17682 (2011-09-13)
Monolayer of PDDA/graphene/PDDA/H(2)PtCl(6) is fabricated on conductive glass using electrostatic layer-by-layer self-assembly technique, which is then converted to graphene/Pt monolayer for use as counter electrode in dye-sensitized solar cell (DSSC). As compared to the sputtered Pt counter electrode, the self-assembled
S. Zhang, et al.,
Journal of Power Sources, 196, 9955-9960 (2011)
Z. Liu, et al.,
ACS Applied Materials & Interfaces null
F. Alhumaidan, et al.,
Energy and Fuels null
M. Ling, et al.,
International Journal of Hydrogen Energy, 36, 12833-12842 (2011)
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