Yu Zeyang, Drzal Lawrence T
Department of Chemical Engineering and Material Science, Composite Materials and Structure Center, Michigan State University, 428 South Shaw Lane Room2100, East Lansing, MI 48824, United States of America.
Nanotechnology. 2018 Aug 3;29(31):31LT02. doi: 10.1088/1361-6528/aac5c4. Epub 2018 May 17.
Graphene nanoplatelets (GnP) can be made into a thin 'paper' through vacuum filtration of GnP suspension. Electrodes were fabricated from the compressed GnP paper and then by coating the surface with epoxy. The electrostatic actuator was constructed from two parallel-aligned composite papers fixed at the anode and a cathode connected to ground. The two composite papers would then separate when a voltage was applied. The GnP paper was also modified to increase surface area by introducing porosity or adding ∼10 wt% C750 (GnP with diameter less than 1 μm); or changing the relative permittivity by adding barium titanate particles; or combining these two effects by adding CNCs. Overall the output work could be significantly improved to over 400%.
通过对氧化石墨烯纳米片(GnP)悬浮液进行真空过滤,可以将其制成薄“纸”。电极由压缩的GnP纸制成,然后在其表面涂上环氧树脂。静电致动器由固定在阳极的两张平行排列的复合纸和连接到地的阴极构成。施加电压时,两张复合纸就会分开。还对GnP纸进行了改性,通过引入孔隙率或添加约10 wt%的C750(直径小于1μm的GnP)来增加表面积;或者通过添加钛酸钡颗粒来改变相对介电常数;或者通过添加纤维素纳米晶(CNC)来结合这两种效果。总体而言,输出功可显著提高至超过400%。