scholarly journals The Soft and High Actuation Response of Graphene Oxide/Gelatin Soft Gel

Materials ◽  
2021 ◽  
Vol 14 (24) ◽  
pp. 7553
Author(s):  
Supanit Chungyampin ◽  
Sumonman Niamlang

The high actuation response of soft gel from a graphene oxide/gelatin composite was prepared as an alternative material in soft robotics applications. Graphene oxide (GO) was selected as the electroresponsive (ER) particle. GO was synthesized by modifying Hummer’s method at various ratios of graphite (GP) to potassium permanganate (KMnO4). To study the effect of ER particles on electromechanical properties, GO was blended with gelatin hydrogel (GEL) at various concentrations. The electrical properties of the ER particles (GO and GP) and matrix (GEL) were measured. The capacitance (C), resistance (R), and dielectric constant of the GO/GEL composite were lower than those of the GO particles but higher than those of the GEL and GP/GEL composite at the given number of particles. The effects of external electric field strength and the distance between electrodes on the degree of bending and the dielectrophoresis force (Fd) were investigated. When the external electric field was applied, the composite bent toward electrode, because the electric field polarized the functional group of polymer molecules. Under applied 400 V/mm, the GO/GEL composite (5% w/w) showed the highest deflection angle (θ = 82.88°) and dielectrophoresis force (7.36 N). From the results, we conclude that the GO/GEL composite can be an alternative candidate material for electromechanical actuator applications.

2021 ◽  
Vol MA2021-01 (14) ◽  
pp. 648-648
Author(s):  
Bong Han Lee ◽  
Alina Valimukhametova ◽  
Conor Ryan ◽  
Thomas Paz ◽  
Fabian Grote ◽  
...  

2015 ◽  
Vol 5 (1) ◽  
Author(s):  
Zhixing Qiao ◽  
Chengbing Qin ◽  
Yan Gao ◽  
Guofeng Zhang ◽  
Ruiyun Chen ◽  
...  

2015 ◽  
Vol 106 (13) ◽  
pp. 131103 ◽  
Author(s):  
Yan Gao ◽  
Chengbing Qin ◽  
Zhixing Qiao ◽  
Baotian Wang ◽  
Weidong Li ◽  
...  

2021 ◽  
Author(s):  
Abdehafid Najim ◽  
Omar BAJJOU ◽  
Mustapha BOULGHALLAT ◽  
Mohammed Khenfouch ◽  
Khalid Rahmani

Abstract Electronic and optical properties of graphene oxide (GO), under an external electric field (Eext) applied in three directions of space (x, y, z), are investigated using the density functional theory (DFT). The application of the Eext, causes a significant modifications to the electronic and optical properties of GO material. It has change the band gap, total density of states (TDOS), partial density of states (PDOS), absorption coefficient (α), dielectric function, optical conductivity, refractive index and loss function. The band gap of GO layer increases under the effects of the Eext, applied in x and y directions. On the other hand, for z direction, the band gap decreases by the effects of the Eext. The peaks of the TDOS around the Fermi level, change by the Eext applied in (x, y, z) directions. The α peaks of the GO sheet, decreases by the Eext applied in x direction, and increases if Eext applied in y and z directions. It is found that, the electronic and optical properties of GO layer, could be affected by the effects of the Eext and by its direction of application.


2019 ◽  
Vol 7 (25) ◽  
pp. 15062-15067 ◽  
Author(s):  
Wen Ying ◽  
Ke Zhou ◽  
Quangang Hou ◽  
Danke Chen ◽  
Yi Guo ◽  
...  

An external electric field selectively facilitates CO2 permeation through ionic liquid filled nanoslits of a graphene oxide membrane.


Carbon ◽  
2015 ◽  
Vol 93 ◽  
pp. 843-850 ◽  
Author(s):  
Yan Gao ◽  
Chengbing Qin ◽  
Zhixing Qiao ◽  
Baotian Wang ◽  
Weidong Li ◽  
...  

2015 ◽  
Vol 3 (40) ◽  
pp. 20277-20287 ◽  
Author(s):  
Haiyan Liu ◽  
Guoquan Zhang ◽  
Chuanqi Zhao ◽  
Jiadong Liu ◽  
Fenglin Yang

A novel conductive PDAAQ/rGO nanohybrid blended PVDF membrane exhibited superior antifouling performance under an appropriate external electric field.


2018 ◽  
Vol 189 (02) ◽  
pp. 187-194 ◽  
Author(s):  
Nikita V. Marchenkov ◽  
Anton G. Kulikov ◽  
Ivan I. Atknin ◽  
Arsen A. Petrenko ◽  
Alexander E. Blagov ◽  
...  

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