Pricelists.org Pricelists.org Accedi Registrati

Electrosorption

☆☆☆☆☆ (0 reviews)
Show price history
Electrosorption
Lowest price (incl. delivery)
7 149,00 JPY
Typical price449,38 PLN
Lowest (90 days)44,99 PLN
Offers6
Last updated6 giorni fa
See best offer
Price history (90 days)
Full history
2026-08-08 2026-08-15
Storico prezzi
Aggiornato ilPrezzo
2026-08-0849,99
2026-08-1444,99
2026-08-1551,99
Venditore Product price Delivery Totale Disponibilità Updated
SP SpringerNatureLink Shop INT 7 149,00 JPY free 7 149,00 JPY Disponibile 11 ore fa View offer
SP Springer Nature Author 7 149,00 JPY 19,00 JPY 7 168,00 JPY Disponibile 6 giorni fa View offer
SP SpringerNatureLink Shop INT 49,99 USD free 49,99 USD Disponibile 19 ore fa View offer
SP SpringerNatureLink Shop INT 54,99 USD 29,00 USD 83,99 USD Disponibile 18 ore fa View offer
SP SpringerNatureLink Shop INT 54,99 USD free 54,99 USD Disponibile 18 ore fa View offer
SP SpringerNatureLink Shop INT 59,00 EUR 25,00 EUR 84,00 EUR Disponibile 17 ore fa View offer

I prezzi e la disponibilità possono variare. Ultimo aggiornamento: 08.08.2026 23:12.

0,0
☆☆☆☆☆
0 reviews
5★ 0%
4★ 0%
3★ 0%
2★ 0%
1★ 0%

Product reviews

Rating
No reviews yet — be the first!
The gradual emergence during the last decade of the study of the mechanism of electrode reactions from the dark ages has given stimulus to a consideration of the double layer at metal-solution interfaces, which extends far outside the classical experimental studies of the capacitance of the mercury solution interface made during the 1950's by D. C. Grahame at Amherst College, Massachusetts. The central aspect of the study of an electrode reaction is the elucidation of its path and rate-determining step. Two fields are, however, prerequisites for such studies. First, it must be known what species are in the bulk of the solution, for these will seldom be simple ones such as H30~ and this study ("complex ions") has been made with both extent and depth. Second, the occupancy of the surface of the electrocatalyst and the associated field gradients must be known as a function of position in the double layer. Such "maps of the double layer" can be given with reasonable certainty up to concentrations of about 1 N for mercury in contact with solutions of inorganic ions. However, this is-or was until very recently-the extent of the know­ ledge. The problems confronting a fundamental approach to the rational development of, e.g., fuel cell catalysis were therefore considerable.

Similar products