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Dive into the research topics where Zhenbin Gong is active.

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Featured researches published by Zhenbin Gong.


RSC Advances | 2016

Engineering-scale superlubricity of the fingerprint-like carbon films based on high power pulsed plasma enhanced chemical vapor deposition

Zhenbin Gong; Jing Shi; Wei Ma; Bin Zhang; Junyan Zhang

It has been a great challenge to achieve superlubricity on an engineering scale. In this study, macro superlubricity was realized by fingerprint-like carbon (FP-C:H) films that were prepared by a high power pulsed plasma enhanced chemical vapor deposition technique. The macro superlubricity occurred under a wide range of test conditions, with a super low friction coefficient of 0.0016 in dry air. The unique structure and properties of the graphene layers made it capable not only to lower the shearing stress but also efficiently achieve superlubricity, following reorganization mechanics. High-resolution transmission electron microscopy (HRTEM) and Raman spectroscopy revealed the nanostructure evolution of the wear debris. Surprisingly, a kind of multistorey graphene nanoparticles were generated in the wear debris and the humidity played an important role in the formation of these particles. Moreover, the nanostructures of these particles directly affected the friction coefficients at different humidity values. It can be demonstrated that the graphene nanoparticles were the major reason for the super lubrication of fingerprint-like carbon films, achieving incommensurate and rolling contacts. An engineering applicable method combined with the unique superlubricity properties of fingerprint-like carbon could offer an exciting opportunity to realize long-sought applications in vehicles, turbines, and manufacturing equipment.


Journal of Molecular Structure | 2013

The effect of a static magnetic field on the hydrogen bonding in water using frictional experiments

Yongfu Wang; Bin Zhang; Zhenbin Gong; Kaixiong Gao; Yujing Ou; Junyan Zhang


Carbon | 2017

Graphene nano scrolls responding to superlow friction of amorphous carbon

Zhenbin Gong; Jing Shi; Bin Zhang; Junyan Zhang


Applied Surface Science | 2017

Friction and wear of hydrogenated and hydrogen-free diamond-like carbon films: Relative humidity dependent character

Jing Shi; Zhenbin Gong; Yongfu Wang; Kaixiong Gao; Junyan Zhang


Materials Letters | 2017

Superlubricity achieved by carbon quantum dots in ionic liquid

Wei Ma; Zhenbin Gong; Kaixiong Gao; Li Qiang; Junyan Zhang; Shurong Yu


Friction | 2013

Hydrophobic, mechanical, and tribological properties of fluorine incorporated hydrogenated fullerene-like carbon films

Li Qiang; Bin Zhang; Kaixiong Gao; Zhenbin Gong; Junyan Zhang


Diamond and Related Materials | 2017

Tribological properties of hydrogenated amorphous carbon films in different atmospheres

Jing Shi; Zhenbin Gong; Chengbing Wang; Bin Zhang; Junyan Zhang


Applied Surface Science | 2017

Hierarchical structure graphitic-like/MoS2 film as superlubricity material

Zhenbin Gong; Xiaolong Jia; Wei Ma; Bin Zhang; Junyan Zhang


Advanced Materials Interfaces | 2017

Nanocrystalline Graphite Formed at Fullerene-Like Carbon Film Frictional Interface

Jing Shi; Yongfu Wang; Zhenbin Gong; Bin Zhang; Chengbing Wang; Junyan Zhang


Solid State Sciences | 2018

Pencil sketch graphene films as solid lubricant on steel surface: Observation of transition to grapehene/amorphous carbon

Bin Zhang; Yong Xue; Kaixong Gao; Li Qiang; Yuanlie Yu; Zhenbin Gong; Aimin Liang; Junyan Zhang; Baoping Yang

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Junyan Zhang

Lanzhou University of Technology

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Bin Zhang

Lanzhou University of Technology

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Kaixiong Gao

Lanzhou University of Technology

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Jing Shi

Chinese Academy of Sciences

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Li Qiang

Chinese Academy of Sciences

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Wei Ma

Chinese Academy of Sciences

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Yongfu Wang

Lanzhou University of Technology

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Bin Zhang

Lanzhou University of Technology

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Chengbing Wang

Shaanxi University of Science and Technology

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Aimin Liang

Chinese Academy of Sciences

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