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graphene production via nonoxidizing liquid exfoliation

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graphene production via nonoxidizing liquid exfoliation ( graphene-production-via-nonoxidizing-liquid-exfoliation )

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graphite producers in industry and academic institutions investigating top-down production methods, could be a key driver in the advancement of optimal, economically viable precursors. FIG 6 Table 1: Summary of different graphite precursor used in the literature to produce graphene. Type Graphite flakes, natural Graphite flakes, natural Graphite flakes, natural Graphite flakes, natural Graphite flakes, natural Surface enhanced flake graphite, natural Graphite flakes, natural Expandable graphite, natural Expandable graphite, natural Expanded graphite, natural Graphite powder, natural Graphite powder, natural Flake graphite powder, natural Powdered graphite, natural Graphite powder, natural Crystal graphite powder, natural High purity graphite rods, natural Primary artificial, synthetic Graphite powder, synthetic Graphite powder, synthetic Graphite powder, synthetic HOPG HOPG HOPG HOPG Grade n/a n/a n/a n/a n/a Grade 3725 HP230U n/a Grade 3772 n/a n/a n/a n/a n/a n/a n/a n/a Grade TC307 n/a n/a SP-1 SPI-2 grade SP-1 n/a n/a Purity n/a n/a 96 % n/a 99.80 % n/a 99.60 % 99 % 99.35 % 99.50 % n/a n/a > 99.9 % ≥ 99.99 % ≥ 99.99 % ≥ 98.0 % ≥ 99.99 % ≥ 99.9 % ≥ 99.99 % n/a ≥ 99.99 % ≤ 10 ppm ash n/a n/a n/a Si ze Ref. +100mesh(≥75%min) +100mesh(≥75%min) >32 mesh +100mesh(≥75%min) 325 mesh < 3 μm 20 μm average diameter of 300 μm 20 x 50 mesh 10–30 μm 0.5 mm mesh <0.1 mm 25 μm ~70 μm 100 mesh ≤ 300 mesh diameter 6 mm < 1μm 1–10 mm <20mm 100–200 mm 10x10x1 mm 10mm×10mm×0.2mm 39 40 40 18 41 37 42 26 37 43 44 45 46 47 48 49 50 37 51 52 51 53 54 1 x 1 cm2 55 n/a 56 18

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