1. 秦志宏、宗志敏、刘建周、马红梅、杨美健、魏贤勇,煤岩组分在二硫化碳-N-甲基-2-吡咯烷酮混合溶剂中的可溶性,燃料化学学报,1997.6 Vol.25 No.6 p549-553 (1)
2. 秦志宏、袁新华、宗志敏、王超、于冰、魏贤勇,用XRD、TEM和FTIR分析镜煤在CS2-N-甲基-2-吡咯烷酮混合溶剂中的溶解行为,燃料化学学报,1998.3 Vol.26 No.3 p275-279 (1)
3. 秦志宏、袁新华、尹学琼、宗志敏、魏贤勇,岩相对煤在CS2-NMP混合溶剂中溶解性的影响,中国矿业大学学报,1998.4 vol.27 (1) p344-348
4. 秦志宏、袁新华、宗志敏、王永志、张玉、魏贤勇,煤中的致粘组分和不粘组分,煤炭转化,1998.3 Vol.21 No.3 p47-50 (1)
5. 秦志宏、魏贤勇、江春、孙昊、辛俊娜、宗志敏,两种烟煤CS2溶剂分次萃取物的FTIR分析,中国矿业大学学报,2005.34(5), p579-584
6. 秦志宏、江春、孙昊、宗志敏、丁曙光、魏贤勇,童亭亮煤CS2溶剂分次萃取物的GC/MS分析, 中国矿业大学学报,2005.34(6), p707-711
7. 秦志宏、宗志敏、江春、孙昊、周莉莉、魏贤勇,A new approach to group separation of coals,Proceedings of the International Conference on Coal Science and Technology, 2005 Okinawa, Japan 2005.10
8. Qin Zhi-Hong, Jiang, Chun; Sun, Hao; Zong, Zhi-Min; Jiang, Bing; Wei, Xian-Yong.GC/MS Analysis of Fractional Extraction of Fusain from Tongting Bituminous Coal in CS2,Journal of China University of Mining & Technology,Vol.16 No.1 2006,p8-12
9.江春、孙昊、张迪、胡卫新、秦志宏,FTIR法对准格尔煤两级分次萃取物的分析,煤炭学报,2007.32(1) p85-89
10. 秦志宏、张迪、侯翠利、江春、孙昊,煤全组分的族分离及应用展望,洁净煤技术,2007.13(4) p61-65
11.秦志宏、侯翠利、张迪、丁曙光、孙昊、江春,煤中小分子的微孔嵌入特征与溶出特性,中国矿业大学学报,2007.36(5) P586-591
12.秦志宏 巩涛 李兴顺 侯翠利 张迪 孙昊,煤萃取过程的TEM分析与煤嵌布结构模型,中国矿业大学学报,2008.37 (4) P443-449
13. Qin Zhi-Hong, Hou cui-li; Chen juan; Zhang Li-ying; Ma Jie-qiong. Group separation of coal components and new ideas of coal utilization as petroleum, Mining Science and Technology, Vol.19 No.5 September 2009,p636-641
14. Qin Zhi-Hong; Jiang Chun; Hou cui-li; Li Xing-shun; Zhang Li-ying; Chen juan; Jiang Bin. Solubilization of small molecules from coal and the resulting effects on the pore structure distribution, Mining Science and Technology, Vol.19 No.6 November 2009,p761-768
15. 秦志宏、李兴顺、陈娟、张丽英、侯翠利、巩涛,煤的黏结性来源与形成机理,中国矿业大学学报, 2010.39 (1) P64-69
16. ZHANG Liying, QIN Zhihong, LI Xinyan, CHEN Juan, LIU Peng, WANG Xiaoyan. Preparation and characterization of a composite membrane based on the asphaltene component of coal. Mining Science and Technology.Vol.21 No.3 2011 p407-411
17. 华宗琪,秦志宏,刘 鹏,邓 兵,李保民,超声波条件下煤中不同赋存形态小分子的溶出规律,中国矿业大学学报,2012.41 (1) P91-94
18.Tian Yujiao, Qin Zhihong, Li Baomin. Preparation and H2O2 oxidation of extract, International Journal of Mining Science and Technology, 2012, 22 (5): 731-734,
19. 陈冬梅,秦志宏,李新艳,田誉娇,王迪,基于煤沥青质族组分的陶瓷-炭复合膜制备,化工新型材料,2012.40(12) p40-42,51
20. 田誉娇,秦志宏,陈冬梅,李保民,超声分级萃取可溶物的溶出行为,煤炭转化,2013.36(1) p5-8
21. 陈娟,秦志宏,刘皓,邓保炜,煤的族组分形成机理研究,煤炭转化,2013.36(1) p1-4
22. 秦志宏,华宗琪,陈德仁,倪中海,适于全煤阶的煤嵌布结构统一模型构建,中国工程院化工、冶金与材料工程学部第九届学术会议论文集,中国矿业大学出版社,2012年9月,p201-208 2012.10.7-9 江苏徐州
23. 马玲玲,秦志宏,张露,刘旭,陈航,煤有机硫分析中XPS分峰拟合方法及参数设置,燃料化学学报,2014.42(3) p277-283
24. 张露,秦志宏,赵翠翠,荣丽漫,李春生,张沛然,张丽芳,新峪焦煤的快速溶剂萃取研究,中国矿业大学学报,2014.43(4) p684-688
25. QIN Zhi-hong, ZHANG Hao-fei, DAI Dong-jin, ZHAO Cui-cui, ZHANG Li-fang,Study on occurrence of sulfur in different group components of Xinyu clean coking coal. Journal of Fuel Chemistry and Technology.2014.42(11) p1286-1294
26. 秦志宏,李苗苗,陈冬梅,荣丽漫,赵翠翠,李春生,两种添加剂对煤族组分制陶瓷-炭复合膜的改进研究,化工新型材料,2014.42(11) p123-125,128
27. Zhi-Hong Qin ⁎ , Hang Chen, Yu-Jie Yan, Chun-Sheng Li, Li-Man Rong, Xiao-Qin Yang. FTIR quantitative analysis upon solubility of carbon disulfide/N-methyl-2-pyrrolidinone mixed solvent to coal petrographic constituents. Fuel Processing Technology. 133 (2015) 14–19.
28. 秦志宏, 陈航, 戴冬瑾, 李春生, 荣丽漫,萃取反萃取法研究新峪焦精煤中有机硫的赋存规律,燃料化学学报,2015.43(8) p897-905
29. 秦志宏,单良,刘旭,郭伟,卜良辉,基于源质的煤基中间相小球体生成与可控演化,煤炭学报,2015.40(11) p2733-2740
30. 李祥,秦志宏,卜良辉,杨状,沈辰阳,炼焦煤的官能团结构分析及其黏结性产生机理,燃料化学学报,2016.44(4) p385-393
31. Qin Zhihong, Li Xiang, Sun Hui, Zhao Cuicui, Rong Liman, Caking property and active components of coal based on group component separation, International Journal of Mining Science and Technology, 26 (2016) 571–575
32. 郭伟,秦志宏,李春生,单良,三种煤中有机氯和溴的赋存形态及原理,煤炭转化,2016.39(3) p11-18
33. 秦志宏,常鹏,邓兵,陈航,卜良辉,周丽,基于煤疏中质组分的泡沫炭制备与机理,煤炭转化,2016.39(4) p85-91
34. Peng Chang, Zhihong Qin. A Novel Kind of Activated Carbon Foam Electrode for Electric Double Layer Capacitors, Int. J. Electrochem. Sci., 12 (2017) 1846 – 1862
35. 秦志宏,宋兆兰,陈冬梅,曹丹,李苗苗 热处理条件对煤基陶瓷-炭复合膜性能的影响,膜科学与技术,2017.37(2) p78-87
36. Peng Chang and Zhihong Qin . Facile fabrication of hierarchical porous carbon based on extract separated from coal with outstanding electrochemical performance, RSC Adv., 2017, 7, 33843–33850
37.秦志宏. 煤嵌布结构模型理论,中国矿业大学学报,2017.46(5) p939-958
38. Chang P., Qin Z. H. Hierarchical Porous Carbon Materials with Ultrahigh Specific Surface Area Prepared From Coal for Supercapacitors[J]. Carbon Letters, 2018, 25:117-121.
39.Qin Zhihong. New advances in coal structure model, International Journal of Mining Science and Technology, 28 (2018) 541–559
40.秦志宏,卜良辉,李祥. 基于炼焦煤族组成和结构参数的焦炭质量预测模型及其成焦机理,燃料化学学报, 2018.46(12) p1409-1422
41.Zhihong Qin, Peng Chang, Lingling Ma, Lianghui Bu, Zhaolan Song. Preparation and modulation of a novel thin-walled carbon foam, International Journal of Mining Science and Technology, 29 (2019) 281–287
42. Man Liu, Zhihong Qin, Xiaoqin Yang, Zhe Lin, Tong Guo. Fabricating controllable hierarchical pores on smooth carbon sheet for synthesis of supercapacitor materials, Vacuum, 168 (2019) 108806
43. 秦志宏,杨小芹,林喆,陈强. 煤炭分级利用新思路——事前分离与精准利用. 煤炭学报,2020,45(1):424-442.
44.Lulu Lian, Zhihong Qin, Chunsheng Li, Jinglan Zhou, Qiang Chen, Xiaoqin Yang, and Zhe Lin. Molecular Model Construction of the Dense Medium Component Scaffold in Coal for Molecular Aggregate Simulation. ACS OMEGA. 2020,5(22): 13375-13383.
45.Man Liu, Zhihong Qin, Xiaoqin Yang, Qiang Chen, Zhe Lin. Hierarchical porous carbon rich in uniform micron-sized, bubble-like pores for improved supercapacitor electrodes. Colloids and Surfaces A. 603 (2020) 125032
46.Xing Wang, Zhihong Qin, Xiaoqin Yang, Qiang Chen, Zhe Lin. Synthesis of tremella-like porous carbon with oxygen-containing functional groups for high-performance supercapacitor. Diamond & Related Materials. 108 (2020) 107995
47.秦志宏,陈强,刘曼,李双双,陈航,杨小芹,林喆. 介微孔孔径分布类型与多孔炭电化学性能—5nm 以下介微孔的影响及其机理,中国矿业大学学报,2020.49(5) p941-953
48.Xing Wang, Zhihong Qin, Xiaoqin Yang, Qiang Chen, Zhe Lin. Self-template synthesis of hierarchical porous carbon for supercapacitors based on bituminous coal. Int J Energy Res. 2020;1–10.
49. Lulu Lian, Zhihong Qin, Xiaoqin Yang, Zhe Lin. Filling behaviour of small molecules in the dense medium component of coal: molecular dynamics simulations based on a novel embedded structure model, Molecular Simulation, 2021,47(13): 1112-1120.