Wei Xinting, Li Yueqiang, Xu Wenli, Zhang Kaixuan, Yin Jie, Shi Shaozhen, Wei Jiazhen, Di Fangfang, Guo Junxue, Wang Can, Chu Chaofan, Sui Ning, Chen Baoli, Zhang Yingtian, Hao Hongguo, Zhang Xianxi, Zhao Jinsheng, Zhou Huawei, Wang Shuhao
School of Chemistry and Chemical Engineering; College of Materials Science and Engineering; Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, Liaocheng University, Liaocheng 252000, People's Republic of China.
Liaocheng Seismic Hydrochemistry Station, Liaocheng, People's Republic of China.
R Soc Open Sci. 2017 Dec 20;4(12):171409. doi: 10.1098/rsos.171409. eCollection 2017 Dec.
Three-dimensional (3D) graphene composites have drawn increasing attention in energy storage/conversion applications due to their unique structures and properties. Herein, we synthesized 3D honeycomb-like NiS@graphene oxide composite (3D honeycomb-like NiS@GO) by a one-pot hydrothermal method. We found that positive charges of Ni and negative charges of NO in Ni(NO) induced a transformation of graphene oxide with smooth surface into graphene oxide with wrinkled surface (w-GO). The w-GO in the mixing solution of Ni(NO)/thioacetamide/HO evolved into 3D honeycomb-like NiS@GO in solvothermal process. The GO effectively inhibited the aggregation of NiS nanoparticles. Photoelectrochemical cells based on 3D NiS@GO synthesized at 60 mM l Ni(NO) exhibited the best energy conversion efficiency. 3D NiS@GO had smaller charge transfer resistance and larger exchange current density than pure NiS for iodine reduction reaction. The cyclic stability of 3D honeycomb-like NiS@GO was good in the iodine electrolyte. Results are of great interest for fundamental research and practical applications of 3D GO and its composites in solar water-splitting, artificial photoelectrochemical cells, electrocatalysts and Li-S or Na-S batteries.
三维(3D)石墨烯复合材料因其独特的结构和性能,在能量存储/转换应用中受到越来越多的关注。在此,我们通过一锅水热法合成了三维蜂窝状硫化镍@氧化石墨烯复合材料(三维蜂窝状NiS@GO)。我们发现,硝酸镍中镍的正电荷和硝酸根的负电荷促使表面光滑的氧化石墨烯转变为表面有褶皱的氧化石墨烯(w-GO)。在硝酸镍/硫代乙酰胺/水的混合溶液中的w-GO在溶剂热过程中演变成三维蜂窝状NiS@GO。氧化石墨烯有效地抑制了硫化镍纳米颗粒的聚集。基于在60 mM l硝酸镍条件下合成的三维NiS@GO的光电化学电池表现出最佳的能量转换效率。对于碘还原反应,三维NiS@GO比纯硫化镍具有更小的电荷转移电阻和更大的交换电流密度。三维蜂窝状NiS@GO在碘电解液中的循环稳定性良好。这些结果对于三维氧化石墨烯及其复合材料在太阳能水分解、人工光电化学电池、电催化剂以及锂硫或钠硫电池方面的基础研究和实际应用具有重要意义。