| [1] |
WANG Junhai, LI Xinran, DENG Yuanyuan, et al. Carbon quantum dots doped with silver as lubricating oil additive for enhancing tribological performance at various temperatures[J]. Applied Surface Science, 2022, 599: 154029.
|
| [2] |
TANG Weiwei, ZHANG Zhe, LI Yufeng. Applications of carbon quantum dots in lubricant additives: A review[J]. Journal of Materials Science, 2021, 56(21): 12061-12092.
|
| [3] |
赵聪慧, 张传祥, 张晓琪, 等. 碳量子点的摩擦学研究进展[J]. 表面技术, 2023, 52(10): 1-19.
|
|
ZHAO Conghui, ZHANG Chuanxiang, ZHANG Xiaoqi, et al. Research progress of carbon quantum dot in tribology[J]. Surface Technology, 2023, 52(10): 1-19.
|
| [4] |
XIAO Huaping, LIU Shuhai, XU Quan, et al. Carbon quantum dots: An innovative additive for water lubrication[J]. Science China Technological Sciences, 2019, 62(4): 587-596.
|
| [5] |
XUE Shenghua, CUI Yuhong, CHEN Xin, et al. Zwitterionic dopamine sulfonate functionalized carbon quantum dots as water-based lubricant additive for friction and wear reduction[J]. Applied Surface Science, 2023, 615: 156411.
|
| [6] |
TANG Weiwei, WANG Yi, ZHU Xuejun, et al. Graphitic carbon nitride quantum dots as novel and efficient friction-reduction and anti-wear additives for water-based lubrication[J]. Wear, 2023, 528: 204950.
|
| [7] |
HU Yiwen, WANG Yongxin, WANG Chunting, et al. One-pot pyrolysis preparation of carbon dots as eco-friendly nanoadditives of water-based lubricants[J]. Carbon, 2019, 152: 511-520.
|
| [8] |
WANG Haocheng, LI Yi, ZHANG Songwei, et al. Outstanding lubrication properties of carbon dot-based ionic liquids[J]. Journal of Molecular Liquids, 2023, 376: 121458.
|
| [9] |
向硕, 卢鹏, 石伟年, 等. 二维WS2纳米片的规模化可控制备及其摩擦学性能[J]. 化工进展, 2023, 42(9): 4783-4790.
|
|
XIANG Shuo, LU Peng, SHI Weinian, et al. Controllable and large-scale preparation of two-dimensional WS2 nanosheet and its tribological properties as lubricant additives in lithium grease[J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4783-4790.
|
| [10] |
张耀杰, 张传祥, 孙悦, 等. 煤基石墨烯量子点在超级电容器中的应用[J]. 化工进展, 2023, 42(8): 4340-4350.
|
|
ZHANG Yaojie, ZHANG Chuanxiang, SUN Yue, et al. Application of coal-based graphene quantum dots in supercapacitors[J]. Chemical Industry and Engineering Progress, 2023, 42(8): 4340-4350.
|
| [11] |
赵海鹏, 赫瑞元, 张伟, 等. 煤沥青基碳点复合纳米纤维的制备及其储锂性能[J]. 煤化工, 2024, 52(4): 97-99.
|
|
ZHAO Haipeng, HE Ruiyuan, ZHANG Wei, et al. Preparation and lithium-ion storage property of coal tar pitch-based carbon dots composite nanofibers[J]. Coal Chemical Industry, 2024, 52(4): 97-99.
|
| [12] |
王建立, 尹甜, 姜浩强, 等. 煤液化沥青组成结构研究进展[J]. 炭素技术, 2024, 43(2): 6-11, 22.
|
|
WANG Jianli, YIN Tian, JIANG Haoqiang, et al. Research progress on composition and structure of coal liquefied pitch[J]. Carbon Techniques, 2024, 43(2): 6-11, 22.
|
| [13] |
李帅, 李波, 李建峰. 煤沥青基高性能碳材料研究[J]. 中国战略新兴产业, 2024(18): 82-84.
|
|
LI Shuai, LI Bo, LI Jianfeng. Research on high performance carbon materials based on coal tar pitch[J]. China Strategic Emerging Industry, 2024(18): 82-84.
|
| [14] |
BAI Jinpeng, XIAO Nan, WANG Yuwei, et al. Coal tar pitch derived nitrogen-doped carbon dots with adjustable particle size for photocatalytic hydrogen generation[J]. Carbon, 2021, 174: 750-756.
|
| [15] |
AKAKURU Ozioma Udochukwu, Leonardo MARTIN-ALARCON, BRYANT Steven, et al. Unraveling water-based lubrication with carbon dots of asphaltene origin[J]. ACS Applied Materials & Interfaces, 2024, 16(13): 16699-16711.
|
| [16] |
BI Yanxia, XING Baolin, ZENG Huihui, et al. Eco-friendly sustainable fluorescent coal-based carbon dots as a highly selective probe for Cu2+ detection[J]. Fuel, 2024, 378: 132933.
|
| [17] |
王平,宋卫余,任红威,等. 基于铝掺杂碳点的荧光探针用于环烷酸的定量检测[J]. 化工进展, 1-18[2025-01-20]. .
|
|
WANG Ping, SONG Weiyu, REN Hongwei, et al. A fluorescence probe based on aluminum-doped carbon dots for the quantitative detection of naphthenic acid[J]. Chemical Industry and Engineering Progress, 1-18[2025-01-20]. .
|
| [18] |
洪碧云, 唐丽荣, 陈伟香, 等. 碱木质素/聚乙烯亚胺碳点的制备及其对pH敏感性[J]. 化工进展, 2019, 38(4): 1970-1977.
|
|
HONG Biyun, TANG Lirong, CHEN Weixiang, et al. Preparation of alkali lignin/polyethyleneimine carbon dots and their pH sensitivity[J]. Chemical Industry and Engineering Progress, 2019, 38(4): 1970-1977.
|
| [19] |
HAN Zhixia, NI Yiqun, REN Junkai, et al. Highly efficient and ultra-narrow bandwidth orange emissive carbon dots for microcavity lasers[J]. Nanoscale, 2019, 11(24): 11577-11583.
|
| [20] |
何闯, 鄂爽, 闫鸿浩, 等. 碳点在润滑领域中的应用[J]. 化学进展, 2022, 34(2): 356-369.
|
|
HE Chuang, Shuang E, YAN Honghao, et al. Carbon dots in lubrication applications[J]. Progress in Chemistry, 2022, 34(2): 356-369.
|
| [21] |
刘通, 乔韦军, 赵思萌, 等. 离子液体催化合成长链烷基萘基础油及其摩擦学性能[J/OL]. 化工进展, 1-10[2025-01-20]. .
|
|
LIU Tong, QIAO Weijun, ZHAO Simeng, et al. Synthesis of long-chain alkyl naphthalene base oil catalyzed by ionic liquids and its lubricating properties[J/OL]. Chemical Industry and Engineering Progress, 1-10[2025-01-20]. .
|
| [22] |
TANG Weiwei, ZHU Xuejun, LI Yufeng. Tribological performance of various metal-doped carbon dots as water-based lubricant additives and their potential application as additives of poly(ethylene glycol)[J]. Friction, 2022, 10(5): 688-705.
|
| [23] |
SUN Keyan, KOU Yan, DONG Hongsheng, et al. The design of phase change materials with carbon aerogel composites for multi-responsive thermal energy capture and storage[J]. Journal of Materials Chemistry A, 2021, 9(2): 1213-1220.
|
| [24] |
DING Hui, WEI Jishi, ZHONG Ning, et al. Highly efficient red-emitting carbon dots with gram-scale yield for bioimaging[J]. Langmuir, 2017, 33(44): 12635-12642.
|
| [25] |
FAN Kun, LIU Xikui, LIU Yang, et al. Covalent functionalization of fluorinated graphene through activation of dormant radicals for water-based lubricants[J]. Carbon, 2020, 167: 826-834.
|
| [26] |
HAN Xuefeng, GUO Hui, XING Baolin, et al. A facile electrospinning strategy to prepare cost-effective carbon fibers as a self-supporting anode for lithium-ion batteries[J]. Fuel, 2024, 373: 132277.
|
| [27] |
于波, 邹坤, 王睿, 等. 季铵盐聚离子液体作为水基润滑添加剂的摩擦学性能研究[J]. 摩擦学学报, 2022, 42(6): 1246-1257.
|
|
YU Bo, ZOU Kun, WANG Rui, et al. Tribological properties of quaternary ammonium salt polymeric ionic liquids as water-based lubricant additive[J]. Tribology, 2022, 42(6): 1246-1257.
|
| [28] |
CAI Tao, LIU Dan, LIU Shenggao. Fluid-like carbon dots-based ionic fluid towards high efficient lubricant nanoadditive of polyethylene glycol[J]. Diamond and Related Materials, 2021, 114: 108317.
|
| [29] |
WANG Haocheng, LI Yi, ZHANG Songwei, et al. Excellent corrosion inhibition and lubrication properties of carbon dot-based ionic liquids as water-based additives[J]. Tribology International, 2023, 189: 108990.
|
| [30] |
CAO Lei, ZAN Minghui, CHEN Fangman, et al. Formation mechanism of carbon dots: From chemical structures to fluorescent behaviors[J]. Carbon, 2022, 194: 42-51.
|