We have analyzed the thermodynamics of slowly rotating magnetized Kerr black-hole following Newman–Janis prescription with typical spin parameter a≤0.1a≤0.1 (nearly static) in the background of nonlinear electrodynamics. The nonlinear electrodynamics is parameterized with two parameters β=1β=1 and γγ. We consider two values of the γγ, namely 1212 and 1313. In particular, we have studied the Bekenstein–Hawking entropy, Hawking temperature, angular momentum, specific heats at constant angular momentum. The specific heat profiles show that the black-hole becomes unstable for all the values of event horizon radius.