CCL: HOMO energy and redox potential
- From: Muhammad Abduh Nasution <abduh/./mhs.unimed.ac.id>
- Subject: CCL: HOMO energy and redox potential
- Date: Fri, 9 Sep 2016 08:11:40 +0700
Hi Adam,
Thanks very much for your answer. Previously I've plot it with
r^500
on MS Excel and I find for higher order exponent it's R squared
is
higher.
Let me explain the background. From collision theory equation,
I think
it is similiar to volumetric flow rate equation. So I try to
derive
volumetric flow rate equation to obtain reaction rate equation.
I
found equation k = ('ain x Ek)/(Mr x r^5)
where k= reaction rate
constant, 'ain = coefficient, Ek = kinetic
energy, Mr = relative mass, r
= radius. So I plot k from this equation
with ionization potential as HOMO
energy.
On the other hands, I think Arrhenius equation and Eyring equation
has
similiarity to this problem, because reaction rate constant
is
exponential of energy form.
Correct me if I'm
wrong.
Best,
Muhammad Abduh