electrochemical route to holey graphene nanosheets

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S4. Testing of EOG, EOG-H, MRGO and MRGO-H as electrodes for electrochemical charge storage in three-electrode cell configurations )) a g/ g/ 4 40 ci A(y ci A(y rttirtti 2 20 emsnemsn ietiet 00 var nit var nit Gn Gn -2 -20 erer uu cc -4 -40 -0.4 -0.2 0.0 0.2 0.4 0.6 E (V) vs Hg/HgO 1 mV/s 3 mV/s 5 mV/s 10 mV/s 30 mV/s b 50 mV/s 100 mV/s 300 mV/s 500 mV/s ) g 20 1 mV/s 5 mV/s c /A 3 mV/s 10 mV/s ci (yt 10 rteisn )W miet (' 0 var nit Z- Gn er -10 100 mV/s ruc 30 mV/s 300 mV/s -0.4 -0.2 0.0 0.2 0.4 0.6 E (V) vs Hg/HgO -20 50 mV/s -0.4 -0.2 0.0 500 mV/s 150 100 50 0 d 100 150 0.2 0.4 0.6 0 0 5 10 15 20 E (V) vs Hg/HgO e )g/F Z' (W) 50 Gravimetric current intensity (A/g) Figure S5. (a) Cyclic voltammograms recorded at a potential scan rate of 10 mV s-1 MRGO (red trace) and MRGO-H (blue trace). (b,c) Cyclic voltammograms recorded at different potential scan rates for (b) MRGO-H and (c) MRGO. (d) Nyquist plots for S-6 (ec natic 250 200 f apac cirt emiv ar G 150 100 50 0

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