CAS 7440-05-3 Pd nanopowder Ultrafine Palladium as catalyst
Size:20-30nm Purity:99.95% CAS No:7440-05-3 ENINEC No.:231-115-6 Appearance:black Powder Shape:spherical
13929258449
Size:20-30nm Purity:99.95% CAS No:7440-05-3 ENINEC No.:231-115-6 Appearance:black Powder Shape:spherical
We can supply different size products of niobium silicide powder according to client's requirements. Size:1-3um; Purity:99.5%;Shape:granular CAS No:12034-80-9;ENINEC No.:234-812-3
Ni2Si particle,99.5% purity,granular shape,is used for Microelectronic integrated circuit, nickel silicide film,etc. Size:1-10um; CAS No:12059-14-2;ENINEC No.:235-033-1
Buy Supply high quality Carbon nanocages, diameter 100-500nm, high quality, low price and fast delivery, if you have any interest, please click it to check the specification.
Brand:
SAT NANOItem NO.:
SAT-GODCOOHPayment:
TT, Paypal, WUProduct Origin:
ChinaColor:
Dark brown solutionShipping Port:
Shenzhen, ShanghaiLead Time:
1-5daysMin Order:
100mlSpecification of high quality Carbon nanocages:
Name: Carbon nanocages
Appearance: Black powder
Purity:>97wt%
Particle size: 100-500nm
Ratio table:~200m2/g
Electrochemical energy storage, catalyst carriers, environmental adsorption, food adsorption, and other fields.
Storage conditions
Store at room temperature, dry, sealed and protected from light, with a maximum shelf life of 1 year.
Compared with other nanostructures, some unique characteristics of nanocage structures make them particularly attractive for electrochemical materials: (i) porous shells with nanoscale thickness promote contact between electrode materials and electrolytes, shortening ion diffusion paths; (ii) The hollow interior can be used as a storage device for ion storage, providing additional space and sufficient electrolyte ions for rapid electrochemical processes; (iii) Porous shells and hollow structures can also reduce volume changes during electrochemical processes, contributing to cycling stability. In addition, the rich contactable surface area, various nanocage structures (especially spherical nanocages with advantages of high packing density and high processing performance), and adjustable composite structures (such as nanocages/precious metal composite structures) compensate for the shortcomings of single size nanostructures in nanocages.