八、物理学科本科生参与发表的与实验课程相关的论文

[1]  袁明月,张师平,吴平. 一种可用于大学物理实验的开放式相变过程探究与相变潜热测量实验装置的探索. 《物理与工程》,202434(3)151-156,163.



[2]   额日和刘琦周梦莹彭薇袁杨,冉玉晶,陈森,裴艺丽,吴平. 稳态法测量冰的导热系数. 《物理实验》,202343(6)41-47.



[3]   陈森,祝邦恺,裴艺丽,李莉,冉玉晶,吴平. 铁磁共振实验中频散效应的讨论. 《大学物理》,202342(10)26-30.



 

[4]   牟天钰,裴艺丽,张师平,陈可张烨刘兴国,吴平. 平面相控阵下微小固体的超声波悬浮与移动. 《物理实验》,202242(10)1-6.



[5]   张烨,张师平,牟天钰陈可刘兴国,裴艺丽,吴平. 用平面声波方式实现颗粒悬浮的理论讨论. 《物理与工程》,202232(2)114-121.



 

[6]   张师平,吴平,闫丹,牟天钰,裴艺丽,谢子昂,李莉. 将拉曼光谱技术引入大学物理课堂教育的浅析. 《物理与工程》,202030(5)82-86.



 

[7]   王陆君瑜谭志阳陈康宁,吴平,陈森. 第一主族元素原子光谱精细结构强度比值计算. 《物理与工程》,202030(4)84-87,95.



[8]   王亮,张师平,王天放,吴平,王荣明. 半导体物理实验课程的调研与分析. 《物理与工程》,201929 (Z1)26-29,33.



 

 

 

[9]   关舒月张明,张师平,吴平. 密立根油滴实验中的布朗运动. 《大学物理》,201938(6)48-54,59.



 

 

[10]          谭志阳,陈森,吴平. 钠原子光谱实验中双黄线谱线强度比值的讨论. 《大学物理》,201938(5)63-65.



 

 

[11]          亓东林鲍祎楠,张师平,裴艺丽,王荣明,吴平. 基于大数据分析思路的油滴实验数据处理方法. 《物理与工程》,201828 (6)91-94,99.



[12]          任新宇,张师平,刘阳王晓伟,吴平. ZnO薄膜仿真研究皮肤对不同热特性材料的触觉热响应. 《物理与工程》,201727(4)79-83.



 

[13]          陈森,刘鑫杨宇犇,吴平. 一种制作中远距离无线电能传输装置的方法. 《物理与工程》,201727(Z1)229-233.



 

 

 

[14]          窦如强刘鑫何钰杜进祥,吴平,陈森. LC串联电路测量液体电容率. 《物理实验》,201737(2)46-48.



 

 

[15]          王维扬张黎莉,孙明明,吴平. 关于可调压缩比斯特林热机的物理演示实验. 《物理与工程》,201525(6)41-4448.



 

 

[16]          陈森,王点庄曹庆睿,张师平,吴平. 垂直磁场对光抽运信号的影响.《物理实验》,201535(2)5-7,17.



 

 

[17]          陈森,刘昳付硕田耀森,吴平. 一种密立根油滴实验数据处理的新方法. 《大学物理》,201433(9)32-34,58.



 

 

[18]          陈森,郭敏勇,张师平,吴平. 杨氏双缝干涉一种简便的波函数解释. 《大学物理实验》,201427(3)38-39.



 

 

[19]          陈森,郭敏勇,张师平,吴平. 微波布拉格衍射实验中发射喇叭张角引起的奇异峰. 《大学物理》,201332(10)38-40.



 

 

[20]          陈森,孟兆磊,陈闰堃李赫楠,张师平,吴平. 樱桃水分变化的低场核磁共振. 《实验室研究与探索》,201332(8)52-54.



[21]          张师平,陈森,朱少奇,闫丹,张炎,吴平. 利用红外光谱测量氮化镓薄膜的载流子浓度和迁移率. 《物理实验》,201333(3)4-6,23.



[22]          陈森,张师平,吴平,徐建向勇. 磁场退火温度对Ni80Fe20薄膜磁畴结构的影响研究. 《实验技术与管理》,201328(06)56-59.



[23]          陈森,张师平,吴疆何康,吴平. 光电倍增管光谱特性实验设计. 《大学物理实验》,201326(1)27-29.



[24]          陈森,张师平,吴平,付建波谢剑桥魏家琦. 热处理及厚度对 Co90 Fe10薄膜磁电阻的影响. 《实验室科学》,201215(6)90-93.



[25]          陈森,吴平,刘京亮王宁. 微波分光仪角锥喇叭天线的优化. 《物理实验》,200929(6)25-28.



[26]          刘锴,邱宏,刘宏喜,于明鹏,田跃,吴平. 拉倒法测量薄膜附着力引入大学物理实验. 《大学物理》,200928(6)40-42.



[27]          吴平,邱宏,赵云清,姜德怀,张蓓,赵雪丹,黄筱玲,潘礼庆,田跃. 低真空条件下制备的银薄膜的电阻率特性及结构. 《物理实验》,200727(3)3-6,13.




[28]          吴平,邱宏,姜德怀,张蓓,陈森,赵雪丹,黄筱玲. 用干涉方法测量薄膜应力. 物理实验,200626(9)7-9.




 

[29]          Guan HaochenXie YingXing YunZhu JianzhangWang XinranXie ZiangWu PingChen SenZhang ShipingPei YiliLi Li. Simulation study of significant optical absorption enhancement for “n-i-p” structured perovskite solar cells with optimized periodic nano texture. Physica. B, Condensed matter, 2022, 643, p.414171.



[30]          Xie ZiangWu PingChen SenZhang ShipingPei YiliLi LiFu GuodongXie YingGuan HaochenXing YunZhu JianzhangWang Xinran. Enhancing performance of tin-based perovskite solar cells by polyvinyl pyrrolidone doping strategy. Optical materials, 2022, 129, p.112511.



[31]          Yu ShanshanWang ChenyangWang JinlongYu DeshuiMa KejunXie ZiangWu PingChen SenZhang ShipingLi LiPei Yili. Real-time resistance characterization of ITO film electrode on flexible substrate under periodic impact. Materials science in semiconductor processing, 2022, 140, p.106388.



[32]          Shan A. X.Teng X. A. Zhang Y.Zhang P. F.Xu Y. Y.Liu C. R.Li H.Ye H. Y.Wang R. M.*Interfacial electronic structure modulation of Pt-MoS2 heterostructure for enhancing electrocatalytic hydrogen evolution reaction, Nano Energy, 2022, 94: 106913-106913.



[33]          Huang MiaofengTang AihuaWang ZhenyinShi JingkunJiang XiaopingWan ChubinJu XinPreparation of safewater–lipid mixed electrolytes for application in ion capacitor, Chinese Chemical Letters, 2021, 32(6): 2009-2012.



[34]          Huang MiaofengYang JiajieZhen SironWan ChubinJiang XiaopingJu XinFabrication of high Li:water molar ratio electrolytes for lithium-ion batteries, Chinese Chemical Letters, 2021, 32(2): 834-837.



[35]          Huang MiaofengZhen SironRen XiaoliangJu XinHigh-voltage hydrous electrolytes for electrochemical energy storage, Journal of Power Sources, 2020, 465: 228265.



 

 

[36]          Shan A. X., Huang S. Y., Zhao H. F., Jiang W. G., Teng X. A., Huang Y. C., Chen C. P.*, Wang R. M.*, Lau W. M.*, Atomic-scaled surface engineering Ni-Pt nanoalloys towards enhanced catalytic efficiency for methanol oxidation reaction, Nano Research, 2020, 13(11): 3088-3097.



[37]          Huang S. Y.(黄烁源), Shan A. X., Wang R. M.*, Low Pt Alloyed Nanostructures for Fuel Cells Catalysts, Catalysts, 2018, 8(11), 538.



 

 

[38]          Xie Zi-AngWu PingSu TangJiang XiangpingLi LiJia ChaoZhang ShipingLiu ChuanpingWang Li. Behaviours of Spherical Intruder in 3-D Vertically Vibrating Granular System with Vertical Longitudinal Air Pressure Wave. Powder technology, 2015, 283, p.266-285.



[39]          Huang MiaofengJiang XiaopingZhang HuanYin HeshanLi XinxinJu XinBowl-like carbon sheet for high-rate electrochemical capacitor application, Journal of Power Sources, 2014, 272 : 1-7.



[40]          Xie Zi-AngWu PingYang WuhaoZhao JingbingZhang, ShipingLi LiChen SenJia ChaoLiu ChuanpingWang Li. Distribution of dissipated energy in a multi-size granular system under vertical vibration. Powder technology, 2014, 260, p.1-6.



[41]          Hu KaiweiXie Zi-AngWu PingSun JingLi LiJia ChaoZhang ShipingLiu ChuanpingWang Li. Convecting particle diffusion in a binary particle system under vertical vibration. Soft matter, 2014, 1 (24), p.4348-4359.



 

[42]          Zhiwei Yang, Hong Qiu, Bing Hu, Guoshou Zou, Structural and electrical properties of Ni films sputter-deposited on HCl-doped polyaniline substrates, Vacuum, 2014, (99), p.192-195.



 

 

[43]          Ping WuShuang WangZiang XieYuming HuangLige TongPeikun ZhangShaowu YinChuanping Liuand Li Wang. Influence of Rotation on BN separation in binary particle system. Proceedings of the ASME 2012 International Mechanical Engineering Congress & Exposition. 2013, 1542, p.722-725.



[44]          Xie ZiangWu PingWang ShuangHuang YumingZhang ShipingChen SenJia ChaoLiu ChuanpingWang Li. Behaviour of a binary particle system under the effects of simultaneous vertical vibration and rotation. Soft matter, 2013, 9 (2), p.574-586.



 

[45]          Xie Zi-AngWu PingZhang Shi-PingChen SenJia ChaoLiu Chuan-PingWang Li. Separation patterns between Brazilian nut and reversed Brazilian nut of a binary granular system. Physical review. E, 2012, 85, p.061302-061302.



[46]          Hua Zong, Hong Qiu, Yueping Zuo, Ruqiang Zheng, Jingle Pan, Jianping He. Structural, electrical and magnetic properties of Fe network films grown on nanochannel Al2O3 substrates by direct current magnetron sputtering with the oblique target, Applied Surface Science, 258 (2012) 3237–3243.



[47]          Ziang Xie, Ping Wu, Shiping Zhang, Chao Jia and Weili Wang. Phase Transitions of Granular Systems: Between Brazilian Nut Effect and Its Reversed Mode. Proceedings of the ASME 2011 International Mechanical Engineering Congress & Exposition, 2011, 8 , pp.419-424.




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