[1].Zhibin Yang(杨志彬), Ting Kang, Yongjun Ji, Jing Li, Yongxia Zhu, Hezhi Liu, Xingyu Jiang, Ziyi Zhong, Fabing Su. Architectural Cu2O@CuO MesocrystalsasSuperiorCatalystfor Trichlorosilane Synthesis. Journal of Colloid and Interface Science. 2021, (589):198-207. SCI
[2].杨志彬,苏童,茅沈栋,金海,毛瑞,麻晗,鲁雄钢.铁水预处理脱硫渣对Cu2+离子的吸附性能及动力学研究. 中国有色冶金.2021,50(05):91-96.
[3].杨志彬, 张阳, 浦发源,冯浩,康婷,贾文锐,余建波.液态硅树脂对氧化铝基陶瓷型芯性能的影响.中国材料进展.2021,40(07):535-541.
[4].杨志彬,张阳,徐松,陆昱沅,浦发源,康婷,张荣良,邹长东.铁水预处理脱硫渣吸附稀土离子铈的研究. 稀土.2020,4(41):22-29.
[5].陆昱沅,徐松,苏童,杨志彬*,张旗芹, 张阳.转炉脱硫渣理化特性及吸附性能研究.无机盐工业.2021,1(53):87-90.
[6].浦发源,张阳,杨志彬*,冯浩,贾文锐,吴晨,余建波.有机硅树脂粘结Al2O3粉制备陶瓷型芯. 铸造. 2020,7(69):743-747.
[7].宗煜, 杨志彬*,金云学,张超,张小飞.焦炉煤气气氛下甲烷CO2重整改质的热力学研究.煤化工. 2016,2:25-29.
[8].居殿春;周夏芝;张李睿;周磊;陈春钰;杨志彬高炉渣对La3+的吸附性能研究. 无机盐工业 2019,51(08):44-47.
[9].周夏芝,居殿春,田爽,张李睿,杨志彬,周磊.改性高炉渣对Ce3+的吸附性能研究. 化工新型材料2020,48(05):214-218.
[10].张超,刘欢,兰健,余建波,杨志彬,任忠鸣.纵向磁场对Co-8.8Al-9.8W-Ta钴基高温合金定向凝固组织的影响.上海金属. 2018,3:79-83.
[11].周夏芝,居殿春,冯宁,周磊, 白妮,杨志彬,陈春钰.改性小麦秸秆对苯酚的吸附性能研究.环境保护科学. 2018,4:57-60.
[12].张荣良,稽立磊,居殿春,杨志彬.碱式碳酸镍热解法制备氧化亚镍粉末的研究.无机盐工业. 2018,5:33-36.
[13].余建波,候渊,张超,杨志彬,王江,任忠鸣.静磁场对新型Co-Al-W基高温合金定向凝固组织的影响. 金属学报. 2017,12:1620-1626.
[14].Zhibin Yang#*(杨志彬), Yuwen Zhang, Weizhong Ding. Investigation on the reforming reactions of coke-oven-gas to H2 and CO inoxygen-permeable membrane reactor. Journal of membrane science. 2014,470:197-204. SCI&EI IF: 7.0被引频次 10
[15].Zhibin Yang#(杨志彬), Weizhong Ding, Yunyan Zhang, Xionggang Lu, Yuwen Zhang, Peijun Shen. Catalytic partial oxidation of coke oven gas to syngas in an oxygen permeation membrane reactor combined with NiO/MgO catalyst. International journal of hydrogen energy. 2010,35 (12):6239-6247. SCI&EI IF: 4.23 被引频次 43
[16].Zhibin Yang#(杨志彬), Yunyan Zhang, Xueguang Wang, Yuwen Zhang, Xionggang Lu, Weizhong Ding. Steam Reforming of Coke Oven Gas for Hydrogen Production over NiO/MgO Solid Solution Catalyst. Energy&Fuels. 2010,24 (2):785-788. SCI&EI IF: 3.02被引频次 36
[17].Zhibin Yang#*(杨志彬), Yuwen Zhang, Xueguang Wang, Weizhong Ding.Design of two-stage membrane reactor for the conversion of coke-oven gas to H2 and CO. Journal of energy chemistry. 2014,23(4):411-413. SCI&EI IF: 3.9
[18].Zhibin Yang(杨志彬), Yunyan Zhang, Weizhong Ding, Yuwen Zhang, Peijun Shen, Yuding Zhou, Yong Liu, Shaoqing Huang, Xionggang Lu. Hydrogen production from coke oven gas over LiNiREOx/γ-Al2O3 catalyst modified by rare earth metal in a membrane reactor. Journal of Natural Gas Chemistry. 2009,(18):407-414. SCI&EI IF: 3.9.