基本信息
程亚军  男  博导  中国科学院宁波材料技术与工程研究所
电子邮件: chengyj@nimte.ac.cn
通信地址: 浙江省宁波市镇海区中官西路1219号
邮政编码: 315201

研究领域

 主要从事高分子/无机杂化能源材料研究

招生信息

   
招生专业
070305-高分子化学与物理
招生方向
功能与高性能高分子,高分子合成与改性
高分子无机纳米杂化能源材料

教育背景

2004-10--2007-11   德国马克斯-普朗克高分子研究所/德国美因茨-约翰内斯古登堡大学   理学博士
2002-10--2004-03   德国锡根大学(Siegen)   化学硕士
2000-09--2002-06   北京大学   硕转博未报到
1999-09--2001-06   北京大学外国语学院   德语辅修
1996-09--2000-06   北京大学   化学学士

工作经历

工作简历
2015-09~2017-09,牛津大学, 玛丽居里访问学者
2010-09~现在, 中国科学院宁波材料技术与工程研究所, 副研究员
2007-12~2010-07,美国标准与技术研究院, 客座研究员
2007-11~2007-12,德国马克斯-普朗克高分子研究所, 博士后
2007-02~2007-04,德国德固赛公司(Degussa), 学生兼职咨询
社会兼职
2013-06-01-今,Journal of Materials Chemistry A 审稿人,
2013-01-01-今,Journal of Materials Chemistry B 审稿人,
2013-01-01-今,RSC Advances 审稿人,
2013-01-01-今,European Journal of Inorganic Chemsitry 审稿人,
2013-01-01-今,ACS Applied Materials & Interfaces 审稿人,
2013-01-01-今,ChemSusChem 审稿人,

教授课程

德国锡根大学硕士研究生实习指导

专利与奖励

   
专利成果
[1] 夏永高, 程亚军, 左秀霞. 一种纳米化合金型负极材料及其制备方法. CN: CN112018368B, 2022-01-28.

[2] 夏永高, 程亚军, 左秀霞. 一种可脱碱金属离子材料及其制备方法. CN: CN112018330B, 2022-01-28.

[3] 夏永高, 王梅梅, 程亚军. 一种集流体及其制备方法和应用. CN: CN111048788B, 2021-06-01.

[4] 夏永高, 程亚军, 左秀霞. 可嵌入碱金属离子正极材料或金属单质的制备方法. CN: CN112018370A, 2020-12-01.

[5] 夏永高, 左秀霞, 程亚军. 一种废旧动力电池电解液的无害化处理方法与系统. CN: CN110416654A, 2019-11-05.

[6] 夏永高, 左秀霞, 程亚军. 一种废旧动力电池电解液的无害化回收方法. CN: CN110380150A, 2019-10-25.

[7] 程亚军, 姬青, 朱锦, 夏永高. 一种纳米二氧化铌/碳锂离子电池负极材料的制备方法. CN: CN110021744A, 2019-07-16.

[8] 程亚军, 尹珊珊, 方凯, 谢双, 姬青, 朱锦. 一种含有银纳米棒的硅银碳纳米杂化材料及其制备方法和应用. CN: CN106941160A, 2017-07-11.

[9] 程亚军, 尹珊珊, 方凯, 谢双, 姬青, 朱锦. 一种硅银碳纳米杂化材料及其制备方法和应用. CN: CN106941156A, 2017-07-11.

[10] 程亚军, 方凯, 王梅梅, 尹珊珊, 谢双, 朱锦. 一种硅铜碳纳米杂化材料及其制备方法和应用. CN: CN106784746A, 2017-05-31.

[11] 程亚军, 左秀霞, 朱锦. 一种蜂窝状三维多孔硅材料及其制备方法. CN: CN106115710A, 2016-11-16.

[12] 程亚军, 左秀霞, 朱锦. 一种蜂窝状三维连续多孔硅材料及其制备方法. CN: CN106115708A, 2016-11-16.

[13] 程亚军, 左秀霞, 朱锦. 一种二氧化硅微球嵌在连续多孔硅基质中的多层次结构材料及其制备方法. CN: CN106129345A, 2016-11-16.

[14] 程亚军, 左秀霞, 朱锦. 一种蜂窝状三维多孔硅碳复合材料及其制备方法. CN: CN105977478A, 2016-09-28.

[15] 程亚军, 左秀霞, 朱锦. 一种蜂窝状多孔硅碳复合材料及其制备方法. CN: CN105958047A, 2016-09-21.

[16] 程亚军, 班建珍, 朱锦. 一种氧化锰/碳/碳纳米管纳米杂化材料及其制备方法和应用. CN: CN105702923A, 2016-06-22.

[17] 程亚军, 张毅, 王梅梅, 朱锦. 一种硅/碳氧化硅/碳负极材料及其制备方法和应用. CN: CN105552323A, 2016-05-04.

[18] 程亚军, 王晓艳, 王梅梅, 班建珍, 张毅, 朱锦. 一种超小纳米二氧化钛杂化材料的制备方法. CN: CN105314674A, 2016-02-10.

[19] 程亚军, 谢双, 方凯, 尹珊珊, 姬青, 王梅梅, 王晓艳, 朱锦. 一种硅/金属纳米复合材料的制备方法及其应用. CN: CN105206818A, 2015-12-30.

[20] 程亚军, 王梅梅, 朱锦. 一种碳氧化硅/碳复合微纳米材料的制备方法及其应用. CN: CN105098136A, 2015-11-25.

[21] 程亚军, 姬青, 朱锦. 一种低体积收缩、抗菌牙科树脂复合材料的制备方法. CN: CN104887535A, 2015-09-09.

[22] 程亚军, 姬青, 程婷, 王梅梅, 朱锦. 一种硅/碳纳微米球粉体的制备方法及其应用. CN: CN104821395A, 2015-08-05.

[23] 程亚军, 程婷, 朱锦. 一种二氧化钛/碳纳微米球粉体的制备方法及其应用. CN: CN104549204A, 2015-04-29.

[24] 程亚军, 肖颖, 付俊. 一种纳米二氧化钛粉体的制备方法. 中国: CN103588243A, 2014-02-19.

[25] 陈思汕, 程亚军, 沈杰, 付俊. 一种含聚磷酸盐抗铜剂聚丙烯复合材料及其制备方法. CN: CN103554653A, 2014-02-05.

[26] 陈思汕, 程亚军, 沈杰, 聂磊, 付俊. 一种含氨基羧酸型抗铜剂聚丙烯复合材料及其制备方法. CN: CN103554651A, 2014-02-05.

[27] 陈思汕, 程亚军, 沈杰, 聂磊, 付俊. 一种含聚磷酸盐有机无机复配抗铜剂聚丙烯复合材料及其制备方法. CN: CN103554654A, 2014-02-05.

[28] 陈思汕, 程亚军, 沈杰, 聂磊, 付俊. 一种含氨基羧酸型有机无机复配抗铜剂聚丙烯复合材料及其制备方法. CN: CN103554652A, 2014-02-05.

[29] 程亚军, 肖颖, 付俊. 一种纳米稀土金属氧化物粉体的制备方法. CN: CN103539191A, 2014-01-29.

[30] 程亚军, 沈杰, 付俊. 一种含有碳纤维复配成核剂的混凝土增强用高强度聚丙烯粗纤维及其制备方法. CN: CN103541036A, 2014-01-29.

[31] 程亚军, 肖颖, 付俊. 一种纳米过渡金属氧化物粉体的制备方法. CN: CN103539074A, 2014-01-29.

[32] 程亚军, 肖颖, 付俊. 一种纳米二氧化锡粉体的制备方法. CN: CN103508483A, 2014-01-15.

[33] 程亚军, 沈杰, 付俊. 一种含有粘胶纤维复配成核剂的混凝土增强用高强度聚丙烯粗纤维及其制备方法. CN: CN103510181A, 2014-01-15.

[34] 沈国璋, 程亚军, 肖颖, 付俊. 一种含有新型抗氧化剂的耐磨尼龙66的制备方法. CN: CN103483812A, 2014-01-01.

[35] 沈国璋, 程亚军, 沈杰, 付俊. 一种具有高握裹力中性笔笔头固定圈专用料及其制备方法. CN: CN103483783A, 2014-01-01.

[36] 沈国璋, 程亚军, 肖颖, 付俊. 一种含有新型抗氧化剂的耐磨尼龙1010的制备方法. CN: CN103483813A, 2014-01-01.

[37] 沈国璋, 程亚军, 肖颖, 付俊. 一种含有新型抗氧化剂的耐磨尼龙6的制备方法. CN: CN103483810A, 2014-01-01.

[38] 夏永高, 王梅梅, 程亚军. 一种柔性集流体及其制备方法和应用. CN: CN103426634A, 2013-12-04.

[39] 付俊, 沈杰, 程亚军. 一种抗氧化人工关节假体. CN: CN202843852U, 2013-04-03.

[40] 程亚军, 方超, 肖颖, 付俊. 一种纳米硫酸钡粉体的原位可控合成方法. CN: CN102863002A, 2013-01-09.

[41] 程亚军, 方超, 肖颖, 付俊. 一种表面改性纳米硫酸钡粉体的原位可控合成方法. CN: CN102863003A, 2013-01-09.

[42] 程亚军, 肖颖, 方超, 付俊. 一种牙科树脂复合材料的制备方法. CN: CN102860921A, 2013-01-09.

[43] 程亚军, 方超, 肖颖, 付俊. 一种含有表面改性纳米硫酸钡骨水泥的合成方法. CN: CN102863166A, 2013-01-09.

[44] 侯瑞霞, 付俊, 程亚军, 张国花. 一种高强度连续梯度复合支架及其制备方法. CN: CN102861361A, 2013-01-09.

[45] 侯瑞霞, 付俊, 程亚军, 张国花. 一种连续梯度复合支架及其制备方法. CN: CN102861362A, 2013-01-09.

[46] 付俊, 沈杰, 程亚军. 一种抗氧化人工关节假体及其制备方法. CN: CN102824232A, 2012-12-19.

[47] 付俊, 钟翔, 高国荣, 程亚军. 一种抗氧化交联聚合物及其制备方法. CN: CN102604188A, 2012-07-25.

[48] 程亚军, 付俊, 邵仕军, 魏星, 杜高来. 一种抗菌剂的制备方法. 中国: CN102499261A, 2012-06-20.

[49] 程亚军, 付俊, 邵仕军, 魏星, 杜高来. 一种用于抗菌塑料制品的抗菌剂制备方法. CN: CN102504615A, 2012-06-20.

[50] 付俊, 程亚军, 魏星, 肖颖, 邵仕军. 一种聚丙烯粗纤维及其制备方法. CN: CN102383214A, 2012-03-21.

出版信息

   
发表论文
[1] Liang, Suzhe, Cheng, YaJun, Wang, Xiaoyan, Xu, Zhuijun, Ma, Liujia, Xu, Hewei, Ji, Qing, Zuo, Xiuxia, MuellerBuschbaum, Peter, Xia, Yonggao. Impact of CO2 activation on the structure, composition, and performance of Sb/C nanohybrid lithium/sodium-ion battery anodes. NANOSCALE ADVANCES[J]. 2021, 3(7): 1942-1953, https://www.webofscience.com/wos/woscc/full-record/WOS:000637218000013.
[2] Xiong, Jianwei, Zheng, Tianle, Cheng, YaJun, Sun, Jialong, Cao, Ruiguo, Xia, Yonggao. Sulfur is a New High-Performance Additive toward High-Voltage LiNi0.5Co0.2Mn0.3O2 Cathode: Tiny Amount, Huge Impact. ACS APPLIED MATERIALS & INTERFACES[J]. 2021, 13(16): 18648-18657, http://dx.doi.org/10.1021/acsami.1c00391.
[3] Liang, Suzhe, Chen, Wei, Yin, Shanshan, Schaper, Simon J, Guo, Renjun, Drewes, Jonas, Carstens, Niko, Strunskus, Thomas, Gensch, Marc, Schwartzkopf, Matthias, Faupel, Franz, Roth, Stephan, V, Cheng, YaJun, MuellerBuschbaum, Peter. Tailoring the Optical Properties of Sputter-Deposited Gold Nanostructures on Nanostructured Titanium Dioxide Templates Based on In Situ Grazing-Incidence Small-Angle X-ray Scattering Determined Growth Laws. ACS APPLIED MATERIALS & INTERFACES[J]. 2021, 13(12): 14283-14295, http://dx.doi.org/10.1021/acsami.1c00972.
[4] Zheng, Tianle, Xiong, Jianwei, Shi, Xiaotang, Zhu, Bingying, Cheng, YaJun, Zhao, Hongbin, Xia, Yonggao. Cocktail therapy towards high temperature/high voltage lithium metal battery via solvation sheath structure tuning. ENERGY STORAGE MATERIALS[J]. 2021, 38: 599-608, http://dx.doi.org/10.1016/j.ensm.2021.04.002.
[5] 程亚军. Si/Cu/C Nanohybrid Lithium-Ion Battery Anode with in Situ Incorporation of Nonagglomerated Super-Small Copper Nanoparticles Based on Epoxy Resin. Energy & Fuels. 2021, [6] Zheng, Tianle, Xiong, Jianwei, Zhu, Bingying, Shi, Xiaotang, Cheng, YaJun, Zhao, Hongbin, Xia, Yonggao. From-20 degrees C to 150 degrees C: a lithium secondary battery with a wide temperature window obtained via manipulated competitive decomposition in electrolyte solution dagger. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2021, 9(14): 9307-9318, http://dx.doi.org/10.1039/d1ta00895a.
[7] Ban, Jianzhen, Wang, Xiaoyan, Yin, Shanshan, Cheng, YaJun, Ji, Lianmin, MuellerBuschbaum, Peter, Gao, Jie, Xia, Yonggao. Super-Small TiO2 Nanoparticles Homogeneously Embedded in Mesoporous Carbon Matrix Based on Dental Methacrylates and KOH Activation. CHEMISTRYSELECT[J]. 2021, 6(7): 1508-1518, http://dx.doi.org/10.1002/slct.202004770.
[8] Ji, Qing, Xu, Zhuijun, Gao, Xiangwen, Cheng, YaJun, Wan, Xiaoyan, Zuo, Xiuxia, Chen, George Z, Hu, Binjie, Zhu, Jin, Bruce, Peter G, Xia, Yonggao. Carbon-emcoating architecture boosts lithium storage of Nb2O5. SCIENCE CHINA-MATERIALS[J]. 2021, 64(5): 1071-1086, http://dx.doi.org/10.1007/s40843-020-1532-0.
[9] Xie, Shuang, Ji, Qing, Xia, Yonggao, Fang, Kai, Wang, Xiaoyan, Zuo, Xiuxia, Cheng, YaJun. Mutual Performance Enhancement within Dual N-doped TiO2/Si/C Nanohybrid Lithium-Ion Battery Anode. CHEMISTRYSELECT[J]. 2021, 6(2): 141-153, https://www.webofscience.com/wos/woscc/full-record/WOS:000607604000001.
[10] Yin, Shanshan, Song, Lin, Xia, Senlin, Cheng, Yajun, Hohn, Nuri, Chen, Wei, Wang, Kun, Cao, Wei, Hou, Shujin, MuellerBuschbaum, Peter. Key Factors for Template-Oriented Porous Titania Synthesis: Solvents and Catalysts. SMALL METHODS[J]. 2020, 4(3): https://www.webofscience.com/wos/woscc/full-record/WOS:000507321300001.
[11] 徐隹军, 潘捷苗, 陈亮, 程亚军. 先进隔膜材料在锂离子电池中的研究进展. 高分子通报. 2020, 63-73, http://lib.cqvip.com/Qikan/Article/Detail?id=7103752438.
[12] Zuo, Xiuxia, Wen, Yi, Qiu, Yike, Cheng, YaJun, Yin, Shanshan, Ji, Qing, You, Zhong, Zhu, Jin, MuellerBuschbaum, Peter, Ma, Lifeng, Bruce, Peter G, Xia, Yonggao. Rational Design and Mechanical Understanding of Three-Dimensional Macro-/Mesoporous Silicon Lithium-Ion Battery Anodes with a Tunable Pore Size and Wall Thickness. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(39): 43785-43797, https://www.webofscience.com/wos/woscc/full-record/WOS:000577111700045.
[13] Liang, Suzhe, Cheng, YaJun, Zhu, Jin, Xia, Yonggao, MuellerBuschbaum, Peter. A Chronicle Review of Nonsilicon (Sn, Sb, Ge)-Based Lithium/Sodium-Ion Battery Alloying Anodes. SMALL METHODSnull. 2020, 4(8): https://www.webofscience.com/wos/woscc/full-record/WOS:000531353100001.
[14] Fan, Xi, Wen, Rongjiang, Xia, Yonggao, Wang, Jinzhao, Liu, Xiaohui, Huang, Huihui, Li, Yuan, Zhu, Weiya, Cheng, Yajun, Ma, Liujia, Fang, Junfeng, Tsai, Hsinhan, Nie, Wanyi. Vacuum-Free, All-Solution, and All-Air Processed Organic Photovoltaics with over 11% Efficiency and Promoted Stability Using Layer-by-Layer Codoped Polymeric Electrodes. SOLAR RRL[J]. 2020, 4(6): https://www.webofscience.com/wos/woscc/full-record/WOS:000530147700001.
[15] Ma, Liujia, Meng, Jianqiang, Pan, Ying, Cheng, YaJun, Ji, Qing, Zuo, Xiuxia, Wang, Xiaoyan, Zhu, Jin, Xia, Yonggao. Microporous Binder for the Silicon-Based Lithium-Ion Battery Anode with Exceptional Rate Capability and Improved Cyclic Performance. LANGMUIR[J]. 2020, 36(8): 2003-2011, https://www.webofscience.com/wos/woscc/full-record/WOS:000518234900018.
[16] Wang, Xiaoyan, Cheng, YaJun, Ji, Qing, Liang, Suzhe, Ma, Liujia, Xu, Zhuijun, Zuo, Xiuxia, Meng, JianQiang, Zhu, Jin, MuellerBuschbaum, Peter, Xia, Yonggao. In Situ Incorporation of Super-Small Metallic High Capacity Nanoparticles and Mesoporous Structures for High-Performance TiO2/SnO2/Sn/Carbon Nanohybrid Lithium-Ion Battery Anodes. ENERGY TECHNOLOGY[J]. 2020, 8(6): https://www.webofscience.com/wos/woscc/full-record/WOS:000527408500001.
[17] Ma, Liujia, Meng, JianQiang, Cheng, YaJun, Gao, Jie, Wang, Xiaoyan, Ji, Qing, Wang, Meimei, Zuo, Xiuxia, Zhu, Jin, Xia, Yonggao. Epoxy Resin Enables Facile Scalable Synthesis of CuO/C Nanohybrid Lithium-Ion Battery Anode with Enhanced Electrochemical Performance. CHEMISTRYSELECT[J]. 2020, 5(18): 5479-5487, https://www.webofscience.com/wos/woscc/full-record/WOS:000532796500015.
[18] Ma, Liujia, Meng, JianQiang, Cheng, YaJun, Ji, Qing, Zuo, Xiuxia, Wang, Xiaoyan, Zhu, Jin, Xia, Yonggao. Poly(siloxane imide) Binder for Silicon-Based Lithium-Ion Battery Anodes via Rigidness/Softness Coupling. CHEMISTRY-AN ASIAN JOURNAL[J]. 2020, 15(17): 2674-2680, https://www.webofscience.com/wos/woscc/full-record/WOS:000548861400001.
[19] Guo, Lianzhen, Li, Xinyan, Xu, Zhuijun, Zhou, Shenglin, Zhang, Xiaohua, Ni, Jiangfeng, Cheng, Yajun, Yang, Zhaohui. Spatial Effects between Two 3D Self-Supported Carbon-Nanotube-Based Skeleton as Binder-Free Cathodes for Lithium-Sulfur Batteries. CHEMISTRYSELECT[J]. 2020, 5(36): 11383-11390, http://dx.doi.org/10.1002/slct.202002090.
[20] Hohn, Nuri, Wang, Xiaoyan, Giebel, Michael A, Yin, Shanshan, Mueller, David, Hetzenecker, Andreas E, Biessmann, Lorenz, Kreuzer, Lucas P, Moehl, Gilles E, Yu, Haoyang, Veinot, Jonathan G C, Faessler, Thomas F, Cheng, YaJun, MuellerBuschbaum, Peter. Mesoporous GeOx/Ge/C as a Highly Reversible Anode Material with High Specific Capacity for Lithium-Ion Batteries. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(41): 47002-47009, http://dx.doi.org/10.1021/acsami.0c13560.
[21] Li, Jianding, Zhao, Huajun, Wang, Meimei, Zhu, Yongyang, Li, Bo, Yu, Xueqing, Xu, Jincheng, Cheng, Yajun, Ouyang, Liuzhang, Shao, Huaiyu. Rational design of 3D N-doped carbon nanosheet framework encapsulated ultrafine ZnO nanocrystals as superior performance anode materials in lithium ion batteries. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2019, 7(43): 25155-25164, https://www.webofscience.com/wos/woscc/full-record/WOS:000496150500045.
[22] Fan, Xi, Nie, Wanyi, Tsai, Hsinhan, Wang, Naixiang, Huang, Huihui, Cheng, Yajun, Wen, Rongjiang, Ma, Liujia, Yan, Feng, Xia, Yonggao. PEDOT:PSS for Flexible and Stretchable Electronics: Modifications, Strategies, and Applications. ADVANCED SCIENCEnull. 2019, 6(19): https://doaj.org/article/f440b5c99d504a8d81e1245fc063ffd7.
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[74] 程亚军. 具有特殊性能的新型牙科高分子复合材料. 2012年全国高分子材料科学与工程研讨会null. 2012, 502—504-, http://www.irgrid.ac.cn/handle/1471x/755798.
[75] Cheng, YaJun, Antonucci, Joseph M, Hudson, Steven D, Lin, Nancy J, Zhang, Xinran, LinGibson, Sheng. Controlled In Situ Nanocavitation in Polymeric Materials. ADVANCED MATERIALS[J]. 2011, 23(3): 409-413, https://www.webofscience.com/wos/woscc/full-record/WOS:000285980500007.
[76] Cheng, YaJun, Zeiger, Diana N, Howarter, John A, Zhang, Xinran, Lin, Nancy J, Antonucci, Joseph M, LinGibson, Sheng. In situ formation of silver nanoparticles in photocrosslinking polymers. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS[J]. 2011, 97B(1): 124-131, https://www.webofscience.com/wos/woscc/full-record/WOS:000288413900014.
[77] Zeiger, Diana N, Stafford, Christopher M, Cheng, Yajun, Leigh, Stefan D, LinGibson, Sheng, Lin, Nancy J. Effects of Sample Preparation on Bacterial Colonization of Polymers. LANGMUIR[J]. 2010, 26(4): 2659-2664, https://www.webofscience.com/wos/woscc/full-record/WOS:000274342200070.
[78] Sun, Zaicheng, Cheng, Yajun, Lechmann, Maria, Li, Jiaoli, Li, Jixue, Wu, Jishan, Grimsdale, Andrew, Muellen, Klaus, Butt, HansJuergen, Gutmann, Jochen S. Exciton diffusion controlled quantum efficiency in hybrid dye sensitized solar cells. PHYSICAL CHEMISTRY CHEMICAL PHYSICS[J]. 2009, 11(10): 1604-1609, https://www.webofscience.com/wos/woscc/full-record/WOS:000263837200016.
[79] LinGibson, Sheng, Sung, Lipiin, Forster, Aaron M, Hu, Haiqing, Cheng, Yajun, Lin, Nancy J. Effects of filler type and content on mechanical properties of photopolymerizable composites measured across two-dimensional combinatorial arrays. ACTA BIOMATERIALIA[J]. 2009, 5(6): 2084-2094, http://dx.doi.org/10.1016/j.actbio.2009.01.043.
[80] Yin, Meizhen, Cheng, Yajun, Liu, Miaoyin, Gutmann, Jochen S, Muellen, Klaus. Nanostructured TiO2 Films Templated by Amphiphilic Dendritic Core-Double-Shell Macromolecules: From Isolated Nanorings to Continuous 2D Mesoporous Networks. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2008, 47(44): 8400-8403, https://www.webofscience.com/wos/woscc/full-record/WOS:000260622700010.
[81] Cheng, YaJun, Zhi, Linjie, Steffen, Werner, Gutmann, Jochen S. Surface-Supported, Highly Ordered Macroporous Crystalline TiO2 Thin Films Robust up to 1000 degrees C. CHEMISTRY OF MATERIALS[J]. 2008, 20(21): 6580-6582, https://www.webofscience.com/wos/woscc/full-record/WOS:000260658100002.
[82] Berger, R, Cheng, Y, Foerch, R, Gotsmann, B, Gutmann, J S, Pakula, T, Rietzler, U, Schaertl, W, Schmidt, M, Strack, A, Windeln, J, Butt, H J. Nanowear on polymer films of different architecture. LANGMUIR[J]. 2007, 23(6): 3150-3156, https://www.webofscience.com/wos/woscc/full-record/WOS:000244650000033.
[83] Perlich, J, Schulz, L, Abu Kashem, M M, Cheng, YJ, Memesa, M, Gutmann, J S, Roth, S V, MuellerBuschbaum, P. Modification of the morphology of P(S-b-EO) templated thin TiO2 films by swelling with PS homopolymer. LANGMUIR[J]. 2007, 23(20): 10299-10306, https://www.webofscience.com/wos/woscc/full-record/WOS:000249560100051.
[84] Cheng, YaJun, MuellerBuschbaum, Peter, Gutmann, Jochen S. Ultrathin anatase TiO2 films with stable vesicle morphology templated by PMMA-b-PEO. SMALL[J]. 2007, 3(8): 1379-1382, https://www.webofscience.com/wos/woscc/full-record/WOS:000248641600013.
[85] Memesa, Mine, Cheng, Yajun, Perlich, Jan, MuellerBuschbaum, Peter, Gutmann, Jochen S. Integrated spin-on barrier layers a reasonable idea?. SYNTHESIS AND REACTIVITY IN INORGANIC METAL-ORGANIC AND NANO-METAL CHEMISTRY[J]. 2007, 37(5): 315-320, https://www.webofscience.com/wos/woscc/full-record/WOS:000247728200003.
[86] Cheng, YaJun, Zhou, Shaoying, Gutmann, Jochen S. Morphology transition in ultrathin titania films: From pores to lamellae. MACROMOLECULAR RAPID COMMUNICATIONS[J]. 2007, 28(13): 1392-1396, https://www.webofscience.com/wos/woscc/full-record/WOS:000247979300002.
[87] Cheng, YJ, Gutmann, JS. Morphology phase diagram of ultrathin anatase TiO2 films templated by a single PS-b-PEO block copolymer. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2006, 128(14): 4658-4674, https://www.webofscience.com/wos/woscc/full-record/WOS:000236770300057.
[88] Wolkenhauer, Markus, Bumbu, GinaGabriela, Cheng, Yajun, Roth, Stephan V, Gutmann, Jochen S. Investigation of micromechanical cantilever sensors with microfocus grazing incidence small-angle X-ray scattering. APPLIED PHYSICS LETTERS[J]. 2006, 89(5): http://dx.doi.org/10.1063/1.2245310.
[89] FarshchiTabrizi, M, Kappl, M, Cheng, YJ, Gutmann, J, Butt, HJ. On the adhesion between fine particles and nanocontacts: An atomic force microscope study. LANGMUIR[J]. 2006, 22(5): 2171-2184, https://www.webofscience.com/wos/woscc/full-record/WOS:000235744500036.
[90] Cheng, YJ, Renker, S, Sun, ZC, Gutmann, JS. Fabrication of metal-block-copolymer composite films by a palladium-catalyzed electroless nickel-plating process. MACROMOLECULAR RAPID COMMUNICATIONS[J]. 2005, 26(8): 613-619, https://www.webofscience.com/wos/woscc/full-record/WOS:000228797700007.
[91] Cheng, YJ, Wang, ZM, Liao, CS, Yan, CH. Novel sheet-like supramolecular architectures constructed from infinite hydrogen-bonded, protonated adenine water halide and polyiodide ribbons. NEW JOURNAL OF CHEMISTRY[J]. 2002, 26(10): 1360-1364, https://www.webofscience.com/wos/woscc/full-record/WOS:000178139400019.
[92] Wang, ZM, Cheng, YJ, Liao, CS, Yan, CH. The first supramolecular architectures assembled by infinite hydrogen-bonded, protonated nucleobase-water ribbons and unusual polyiodide frameworks. CRYSTENGCOMM[J]. 2001, https://www.webofscience.com/wos/woscc/full-record/WOS:000172444400001.
[93] Tianle Zheng, Jianwei Xiong, Xiaotang Shi, Bingying Zhu, YaJun Cheng, Hongbin Zhao, Yonggao Xia. nCocktail Therapy towards High Temperature/High Voltage Lithium Metal Battery via Solvation Sheath Structure Tuning. Energy Storage Materials. http://dx.doi.org/10.1016/j.ensm.2021.04.002.

科研活动

   
科研项目
( 1 ) 新型骨水泥材料, 主持, 市地级, 2010-11--2014-11
( 2 ) 纳米BaSO4显影剂的合成、表征、以及在骨水泥生物材料中的应用, 主持, 省级, 2011-01--2012-12
( 3 ) 高分子量、刚性双酚类单体与牙科填充材料体积收缩的关联性及其机理研究, 主持, 国家级, 2012-01--2014-12
( 4 ) VIP真空绝热板技术开发, 主持, 研究所(学校), 2012-04--2013-04
( 5 ) 高性能复合材料研发, 主持, 研究所(学校), 2012-07--2015-07
( 6 ) 基于新型单体分子的低体积收缩牙科高分子复合材料小试技术开发, 主持, 省级, 2013-07--2014-06
( 7 ) (中国科学院与欧盟科技合作项目伙伴计划)基于热固性高分子的硅/碳纳米杂化锂离子电池负极材料绿色合成, 主持, 部委级, 2016-01--2017-12
( 8 ) 汽车零配件塑料专用料研发, 主持, 研究所(学校), 2014-12--2015-12
( 9 ) 电气设备用绝缘尼龙复合材料研发 , 主持, 研究所(学校), 2014-12--2015-11
参与会议
(1)硅氧化物/碳纳米杂化材料绿色简便合成及锂电性能研究   2015第十八届全国电化学大会   程亚军,王梅梅,夏永高,刘兆平   2015-08-07
(2)基于热固性树脂的氧化锰/碳纳米杂化材料绿色合成及锂电性能研究   中国化学会第九届全国无机化学学术会议   程亚军,王晓艳,朱锦   2015-07-25
(3)基于原位形成聚苯乙烯胶体粒子模板的二氧化钛/碳纳米杂化材料合成及在能源领域中的应用   中国化学会第十五届胶体与界面化学会议   程亚军,程婷,朱锦   2015-07-17
(4)基于原位形成聚苯乙烯胶体粒子模板的二氧化钛/碳纳米杂化材料合成及光催化/锂电性能研究   2015中国材料大会   程亚军,程婷,夏永高,刘兆平,朱锦   2015-07-10
(5)Polymer-Inorganic Nanohybrids Templated by Amphiphilic Block Copolymers   第十五届国际胶体及界面学者研讨会暨第47届德国胶体协会   Ya-JunCheng,Jochen S Gutmann, Werner Steffen,Hans Jürgen Butt, Peter Müller-Buschbaum   2015-05-24
(6)以离子型两亲性嵌段共聚物为模板稀土氧化物介孔薄膜合成、形貌调控及结构表征   2013年度高分子学术会议   程亚军 肖颖 付俊   2013-10-12
(7)具有特殊性能的新型牙科高分子复合材料   2012年全国高分子材料科学与工程研讨会   程亚军*,Joeseph.M.Antonucci,Sheng Lin-Gibson   2012-10-16
(8)可控蛋白释放的多孔微球复合水凝胶支架制备与性能研究   2012年全国高分子材料科学与工程研讨会   张国花,侯瑞霞,程亚军,付俊*   2012-10-16
(9)超高强度纳米复合双网络高分子水凝胶   2012年全国高分子材料科学与工程研讨会   付俊*,王强,侯瑞霞,王强   2012-10-16
(10)高性能透明耐热聚丙烯的加工及性能研究   2012年全国高分子材料科学与工程研讨会   肖颖,付俊,程亚军*   2012-10-16
(11)Morphology control of TiO2 thin films by amphiphilic block copolymers   国际高分子物理会议   程亚军   2012-06-04
(12)具备特殊性能的牙科高分子复合材料   2011中国材料研讨会   程亚军   2011-05-17

指导学生

已指导学生

谢双  硕士研究生  070305-高分子化学与物理  

现指导学生

郑路遥  硕士研究生  085216-化学工程  

左秀霞  博士研究生  070305-高分子化学与物理