- Photochemical logic gate
A photochemical logic gate is based on the
photochemical intersystem crossing andmolecular electronic transition between photochemically active molecules, leading to logic gates that can be produced.The OR gate Electron /
Photon transfer chain_A* A* = excited state of molecule A _B* _C*
_A _B _C
The OR gate is based on the activation of molecule A, and thus pass
Electron /Photon to molecule C’s excited state orbitals ( C*). TheElectron from molecule A inter system crosses to C* via the excited state orbitals of B, eventually utilised as a signal in the C* h emission. The ‘OR’ gate uses two inputs of light (Photon s) to molecule A in two separateElectron transfer chains, both of which are capable of transferring to C* and thus producing the output of an OR gate. Therefore, if eitherElectron transfer chain is activated, molecule C’s excitation produces a valid/ output emission. Input Input A D B E C outputThe ‘AND’ gate _C** Second excited state of molecule C _A* _B* _C* _A _B _C
Excitation AA* by h
Photon , whereby the promotedElectron is passed down to the C* molecular orbital. A secondPhoton applied to the system (h) causes the excitation of theElectron in the C* molecular orbital to the C** molecular orbital -analogous pump probe spectroscopy._* * Second excited state of molecule C
h _*
h
_C
Above, the energy level diagram illustrating the principle of pump probe spectroscopy –the excitation of an excited state.The AND gate is produced by the necessity of both AA* and the C**C excitations occurring at the same time -input h and h, are simultaneously required. To prevent erroneous emissions of light from a single input to the AND gate, it would be necessary to have an
Electron transfer series with ability accept anyElectron s (energy) from C* energy level. TheElectron transfer series would terminate with a low (non-radiative decay) of the energy The alternatives for producing an AND gate, using molecular photphysics, are two.(1) The emission produced by theElectron drop from C*C (h) is not a valid output frequency. The emission from the C** (h + h, h) molecular orbital is a valid output signal;. to be used in subsequent logic gates -arranged to respond to the C**C emission. The second input ofPhoton (s) to trigger the rapid conversion of a molecule used to complete theElectron transfer chain. A very complex molecule like a protein can be engineered to possess high strain energies, so that in the absence of the second light frequency molecule B is inactive (B). The secondPhoton input triggers BB' where the forward rate constant is much smaller than the reverse. If such a molecule is used as molecule B, the transfer chain can be switched on and off.Creating The NOT gate
To stop the
Electron transfer chain completing, producing output signals, the input of aPhoton , h, is used to produce a ‘pump probe spectroscopy’ effect by promoting anElectron in anElectron transfer chain. The fall of the pump probe promotedElectron produces an output that is quenched down anElectron transfer chain.An alternative is similar to the AND gate alternative; an input causes a change in molecule structure breaking theElectron transfer chain by not allowing the smooth energy transfer ofElectron s.ee also
*
Photohydrogen
*Artificial photosynthesis
*Photocatalysis
*Photodissociation
*Photoelectrolysis
*Photosynthesis
*Photochemical reaction
*Photochemistry
Wikimedia Foundation. 2010.