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Inside Cover Sequential Logic Operations with Surface-Confined Polypyridyl Complexes Displaying Molecular Random Access Memory Features (Angew. Chem. Int. Ed. 12010)

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.
Redox-active
monolayers …
… form the basis of a solid-state setup that is able to mimic the input/output characteristics of electronic circuits. In their Communication on page 169 ff., M. E. van
der Boom and co-workers demonstrate sequential logic operations controlled by multiple chemical inputs, with one circuit equivalent to a set–reset latch—one of the fundamental parts in random access memory. The kind of logic (combinatorial or sequential) can be controlled by keeping the current state static or dynamic.
Inside Cover
Graham de Ruiter, Elizabetha Tartakovsky, Noa Oded, and
Milko E. van der Boom*
Redox-active monolayers form the basis of a solid-state setup that is able to mimic
the input/output characteristics of electronic circuits. In their Communication on
page 169 ff., M. E. van der Boom and co-workers demonstrate sequential logic
operations controlled by multiple chemical inputs, with one circuit equivalent to a
set–reset latch—one of the fundamental parts in random access memory. The kind of
logic (combinatorial or sequential) can be controlled by keeping the current state
static or dynamic.
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random, features, molecular, memory, logi, surface, operation, complexes, sequential, polypyridyl, int, cover, angel, chem, displaying, insider, 12010, access, confined
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