Page 180 - 《摩擦学学报》2021年第5期
P. 180
第 5 期 陈广炎, 等: 石墨烯润滑添加剂合成与结构调控 769
1635–1644. doi: 10.1021/acs.langmuir.7b03851. Materials Review, 2013, 27(19): 34–38,47 (in Chinese) [乔玉林,
[ 52 ] Sahu J, Panda K, Gupta B, et al. Enhanced tribo-chemical 赵海朝, 崔庆生, 等. 石墨烯负载纳米粒子复合材料的研究进展
properties of oxygen functionalized mechanically exfoliated [J]. 材料导报, 2013, 27(19): 34–38,47].
hexagonal boron nitride nanolubricant additives[J]. Materials [ 62 ] Xiao Huaping, Liu Shuhai. 2D nanomaterials as lubricant additive:
Chemistry and Physics, 2018, 207: 412–422. doi: 10.1016/j. a review[J]. Materials & Design, 2017, 135: 319–332. doi: 10.
matchemphys.2017.12.050. 1016/j.matdes.2017.09.029.
[ 53 ] Wang Yongnan, Wan Zhenping, Lu Longsheng, et al. Friction and [ 63 ] Liu Lincong, Zhou Ming, Li Xiao, et al. Research progress in
wear mechanisms of castor oil with addition of hexagonal boron application of 2D materials in liquid-phase lubrication system[J].
nitride nanoparticles[J]. Tribology International, 2018, 124: 10–22. Materials, 2018, 11(8): 1314. doi: 10.3390/ma11081314.
doi: 10.1016/j.triboint.2018.03.035. [ 64 ] Pu Jibin, Wang Liping, Xue Qunji. Progress of tribology of
[ 54 ] Wang, Hongdong, Liu Yuhong, Chen Zhe, et al. Layered double graphene and graphene-based composite lubricating materials[J].
hydroxide nanoplatelets with excellent tribological properties under Tribology, 2014, 34(1): 93–112 (in Chinese) [蒲吉斌, 王立平, 薛
high contact pressure as water-based lubricant additives[J]. 群基. 石墨烯摩擦学及石墨烯基复合润滑材料的研究进展[J]. 摩
Scientific Reports, 2016, 6: 22748. doi: 10.1038/srep22748. 擦学学报, 2014, 34(1): 93–112]. doi: 10.16078/j.tribology.2014.
[ 55 ] Zhao Yanbao, Zhou Jingfang, Zhang Zhijun, et al. Effect of 01.014.
oleate/PS/TiO 2 composite nanospheres as additive on the antiwear [ 65 ] Xue Yong, Yang Baoping, Zhang Bin, et al. Tribological
and extreme pressure properties of liquid paraffin[J]. Tribology, application of nano-carbon materials: recent progress and future
2001, 21(1): 73–75 (in Chinese) [赵彦保, 周静芳, 张治军, 等. 油 prospect[J]. Materials Review, 2017, 31(5): 1–8 (in Chinese) [薛
酸/PS/TiO 2 复合纳米微球对液体石蜡抗磨性能的影响研究[J]. 勇, 杨保平, 张斌, 等. 纳米碳材料摩擦学应用的最新进展和未来
摩擦学学报, 2001, 21(1): 73–75]. doi: 10.3321/j.issn:1004-0595. 展望[J]. 材料导报, 2017, 31(5): 1–8]. doi: 10.11896/j.issn.1005-
2001.01.018. 023X.2017.05.001.
[ 56 ] Meng Yuan, Su Fenghua, Chen Yangzhi. Effective lubricant [ 66 ] Cao Lina. Lubricating properties and applications in lubricating oil
additive of nano-Ag/MWCNTs nanocomposite produced by of graphene[J]. Chemical Enterprise Management, 2018(2):
supercritical CO 2 synthesis[J]. Tribology International, 2018, 118: 148,150 (in Chinese) [曹丽娜. 石墨烯润滑性能及其在润滑油中
180–188. doi: 10.1016/j.triboint.2017.09.037. 的应用[J]. 化工管理, 2018(2): 148,150].
[ 57 ] Luo Ning, Xiang Junxiang, Shen Tao, et al. Gas-liquid detonation [ 67 ] Liu Ping, Sun Zheng, Wu Jiang. Summary of graphene lubricating
synthesis of graphite coated copper nanoparticles and tribological additive[J]. Synthetic Lubricants, 2019, 46(4): 9–12 (in Chinese)
performance as lubricant additives[J]. Fullerenes, Nanotubes and [刘坪, 孙正, 吴江. 石墨烯润滑添加剂综述[J]. 合成润滑材料,
Carbon Nanostructures, 2018, 26(2): 87–92. doi: 10.1080/ 2019, 46(4): 9–12]. doi: 10.3969/j.issn.1672-4364.2019.04.003.
1536383X.2017.1403906. [ 68 ] Liu Lincong, Zhou Ming, Jin Long, et al. Recent advances in
[ 58 ] Wu Xinhu, Gong Kuiliang, Zhao Gaiqing, et al. MoS 2 /WS 2 friction and lubrication of graphene and other 2D materials:
quantum dots as high-performance lubricant additive in Mechanisms and applications[J]. Friction, 2019, 7(3): 199–216.
polyalkylene glycol for steel/steel contact at elevated doi: 10.1007/s40544-019-0268-4.
temperature[J]. Advanced Materials Interfaces, 2018, 5(1): [ 69 ] Guo Chang, Zhang Xiaohui, Cai Jinming, et al. Research progress
1700859. doi: 10.1002/admi.201700859. in application of graphene in nano-tribology[J]. Modern Chemical
[ 59 ] Jia Yuan, Yan Hongxia, Gong Chao, et al. The surface Industry, 2019, 39(11): 15–19,24 (in Chinese) [郭畅, 张晓慧, 蔡金
modification of graphene and its application in the friction field[J]. 明, 等. 石墨烯在纳米摩擦学中的研究进展[J]. 现代化工, 2019,
Materials Review, 2013, 27(5): 18–21 (in Chinese) [贾园, 颜红侠, 39(11): 15–19,24]. doi: 10.16606/j.cnki.issn0253-4320.2019.11.
公超, 等. 石墨烯的表面改性及其在摩擦领域中的应用[J]. 材料 004.
导报, 2013, 27(5): 18–21]. doi: 10.3969/j.issn.1005-023X.2013.05. [ 70 ] Wang Zhuoqiong. Friction and wear characteristics of graphene
004. nanosheets studied by atomic force microscopy[D]. Nanjing:
[ 60 ] Qiao Yulin, Zhao Haichao, Zang Yan, et al. Research progress of Southeast University, 2015 (in Chinese) [王卓琼. 基于AFM的石
functionalization modifition and applications of graphene as 墨烯摩擦与磨损性质研究[D]. 南京: 东南大学, 2015].
lubricating additive[J]. Chemical Industry and Engineering [ 71 ] Choi W, Lahiri I, Seelaboyina R, et al. Synthesis of graphene and
Progress, 2014, 33(S1): 216–223 (in Chinese) [乔玉林, 赵海朝, 臧 its applications: a review[J]. Critical Reviews in Solid State and
艳, 等. 石墨烯的功能化修饰及作为润滑添加剂的应用研究进展 Materials Sciences, 2010, 35(1): 52–71. doi: 10.1080/1040843
[J]. 化工进展, 2014, 33(S1): 216–223]. 0903505036.
[ 61 ] Qiao Yulin, Zhao Haichao, Cui Qingsheng, et al. Research progress [ 72 ] Novoselov K S, Geim A K, Morozov S V, et al. Electric field effect
in composite materials of nanoparticles loaded on graphene[J]. in atomically thin carbon films[J]. Science, 2004, 306(5696):