derek181 said:
I am still not following so we have a negative point charge labelled A and we have a negative test charge labelled B located somewhere out in the electric field of point A it is going to take more energy per coulomb of charge to move that negative test charge closer to A so therefor the potential increases as B is brought closer to A. Also the potential energy is going to be the greatest when B is close to A as it is capable of doing more work if released.
So, potential is the field-analogue of potential energy. Basically, we are looking at the significance of electric charge without needing to have actual interactions occurring to understand the nature of that charge.
Thus, potential is like looking at potential energy, without needing to have two charges. We only look at the potential at a point in space, not for a charge at that point in space, which would be potential energy. This is useful because it enables us to look at the significance of one charge (the voltage it creates at some point in space).
We do this by asking ourselves "what energy would a charge have if I placed it here?" That energy, divided by the charge we are imagining, is the electric potential at that point. That's why we have the unit "joule/coulomb." Furthermore, the charge we imagine is by convention a positive charge. We always ask "what would a positive charge do if I placed it here?" That's why field lines leave positive charges and end at negative charges, and why we have voltage increasing as we move closer to a positive charge, and decreasing as we go toward a negative. However, if we actually insert a negative charge and look at its energy, it will have potential energy U=qV. For changes in energy, this will be ΔU=qΔV. So, we know a negative charge will naturally go through positive changes in potential energy. It goes from low voltages to higher ones. This makes ΔV positive for the negative charge. However, q of the negative charge is negative, so qΔV is negative, making ΔU negative, as usual. Our convention still allows our charges to lose potential energy, as they intuitively tend to do through motion as long as an external force doesn't do work on them.
Does that help at all?