Biggest problem I guess will be expanding the charger network, simply due to physics. On the country side, laying cables for 1MW peak load (4 superchargers @ 250 kW) will be expensive - the grid in rural areas is enough for some farms and small villages, that's it. In cities, electric-car chargers will have to deal with political obstacles (no one wants to sacrifice free-for-all parking spots!), in addition to the el…
Why can't this just be solved with solar panels and batteries?
Let's assume average parking space area is 10 square meters (it depends, but it's close [2]) - so that's 7.5 kWh per day.
Average energy consumption of electric cars is 11-16 kWh/100 km [3], let's assume 10 kWh/100 km - that's 75 km range for a day of standing in sun.
That's actually not bad, and should be enough for driving back home from work. Actually, why not just put the solar cells on the car and do away with the batteries (car already has them). It would be less area, but even 20 km of driving for free would be enough for many people.
Hell, I use a car maybe twice a week, usually to drive for less than 10 km. Such a car would basically drive for free for my use case :)
[1] https://dothemath.ucsd.edu/2011/09/dont-be-a-pv-efficiency-s...
[2] https://www.quora.com/What-is-the-size-of-a-standard-parking...
[3] http://pushevs.com/2017/05/23/electric-car-range-efficiency-...