jueves, 2 de enero de 2020

bi-hexa-glicerina

H_{4}Hex[C_{6}]_{2n}N_{4n+(-4)}( 4n·C_{m}N_{2m+(-2)}H_{2m+1} ) + ...
... 4n·(NaOH) + e^{-} ==>...
... H_{4}Hex[C_{6}]_{2n}N_{4n+(-4)}(OH)_{4n} + ...
... 4n·( NaC_{m}N_{2m+(-2)}H_{2m+1} )


H_{4}Hex[C_{6}]_{2n}N_{4n+(-4)}(OH)_{4n} + ...
... 4n·( NaC_{m}N_{2m+(-2)}H_{2m+1} ) + e^{+} ==>...
... H_{4}Hex[C_{6}]_{2n}N_{4n+(-4)}( 4n·C_{m}N_{2m+(-2)}H_{2m+1} ) + 4n·(NaOH)


bi-hexa-glicerina-nitrogenada
N-C=C-C=C-N <==> ( 2 destructores & 2 duales )


bi-hexa-glicerina
=C-C=C-C=C-C= <==> ( 4 constructores )


Entalpia de reacción:
[ H_{4}Hex[C_{6}]_{2n}N_{4n+(-4)}( 4n·C_{m}N_{2m+(-2)}H_{2m}H ) ] = 32n
[ 4n·NaOH ] = 12n


[ H_{4}Hex[C_{6}]_{2n}N_{4n+(-4)}(OH)_{4n} ] = 24n
[ 4n·( NaC_{m}N_{2m+(-2)}H_{2m}H ] = 20n


32n+12n = 24n+20n = 44n

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