钱小石
教授所在系所:前瞻交叉研究中心
电子邮件:xsqian@sjtu.edu.cn
通讯地址:350vip8888新葡的京集团机械A楼811室
个人主页:
教育背景
2010-2015 宾夕法尼亚州立大学 电子工程系 博士
2007-2010 南京大学 材料科学与工程系 硕士
2003-2007 南京大学 材料科学与工程系 学士
工作经历
2023.07- 今 350vip8888新葡的京集团 特聘教授
2022.07- 今 350vip8888新葡的京集团 教授
2018.07-2022.07 350vip8888新葡的京集团 教轨副教授,副教授
2017.03-2018.06 加州大学洛杉矶分校 博士后
2016.01-2017.02 Nascent Devices Inc. 副总裁& 首席技术官
2015.05-2016.01 宾夕法尼亚州立大学 博士后
研究方向
电卡制冷材料与器件设计;
人工带隙材料与超构材料系统;
介电、铁电材料与器件;
磁电传感与换能器设计;
柔性电子材料与智能器件;
学术兼职
中国稀土学会“磁制冷材料与技术专业委员会”委员(2019-)
中国物理学会“电介质物理专委会”委员(2023-)
中国仪表功能材料学会“电子元器件关键材料与技术专委会”委员(2023-)
担任以下SCI期刊审稿人:Nature, Science, Joule, Nature Communications, Nano Energy, Advanced Energy Materials, Advanced Functional Materials, Energy, Applied Materials Today, Applied Physics Letters, Journal of Materials Chemistry A, Journal of Materials Chemistry C 等30余个学术期刊。
国际学术会议分会场组织人/分会场主席:
IWPMA, 2021,分会场主席
中国电介质物理大会,2021,分会场主席
IEEE MMM on the Nanoscale 2019, 分会召集人与分会场主席;
第十一届中日铁电大会,2019, 分会场主席;
全国电介质物理大会暨固态制冷国际研讨会 2018, 分会场主席;
IEEE MMM on the Nanoscale 2018,分会场主席;
SPIE Smart Structures NDE, 2015, Keynote报告,分会场主席.
工程学导论 (2020 -)秋季;
学术写作、规范与伦理 (2019-) 春季 ;
本科生科研导师制2021年1人,2022年2人;
校企联合本科毕业设计导师2019年2项目7人;
校企联合本科毕业设计导师2020年2项目6人;
国际校企联合本科毕业设计导师2022年1项目3人;
科研项目
2023-2026, "交大2030"项目,负责人;
2022-2025, 上海市科委“基础研究领域”项目,负责人;
2020-2025, 国家重点研发计划“变革性技术关键科学问题”专项课题,负责人;
2021-2024, 国家自然科学基金面上项目,负责人;
2020-2023, 上海市科委“原创探索”项目,负责人;
2020-2023, 基础加强计划重点项目,交大方负责人;
2021-2022, 国家重点实验室自主课题,负责人;
2020-2022, 350vip8888新葡的京集团“深蓝计划”面上项目,负责人;
2019-2021, 350vip8888新葡的京集团“重点前瞻布局基金”项目,负责人;
2019-2021, 350vip8888新葡的京集团医工交叉项目,交大方负责人;
2018-2021, 国家高层次引进人才计划青年项目(第十四批),负责人;
代表性论文专著
专注于介电、压电、铁电、磁电、电热(电卡)材料与多功能器件方面的研究。
全职归国工作后的研究成果以第一或通讯作者发表(或接收)于:Nature (2), Science (2), Nature Nanotechnology (2), Joule (3), Nature Communications等学术刊物。
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1. D. Han et al. Nature, (2024) (Sole Corresponding Author) https://www.nature.com/articles/s41586-024-07375-3
2. Qiang Li, Luqi Wei, Ni Zhong, Xiaoming Shi, Donglin Han, Shanyu Zheng, Feihong Du, Junye Shi, Jiangping Chen, Houbing Huang, Chungang Duan, Xiaoshi Qian*, Low-k nano-dielectrics facilitate electric-field induced phase transition in high-k ferroelectric polymers for sustainable electrocaloric refrigeration, Nature Communications, 15, Article Number: 702 (2024) (Sole Corresponding Author)
3. Guodong Hou, Xu Zhang, Feihong Du, Yadong Wu, Xing Zhang, Zhijie Lei, Wei Lu, Feiyu Zhang, Guang Yang, Huamiao Wang, Zhenyu Liu, Rong Wang, Qi Ge, Jiangping Chen, Guang Meng, Nicholas X Fang*, Xiaoshi Qian*, Self-regulated underwater phototaxis of a photoresponsive hydrogel-based phototactic vehicle, Nature Nanotechnology, 19, 77–84 (2024) (Last Corresponding Author)
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4. Shanyu Zheng, Feihong Du, Lirong Zheng, Donglin Han, Qiang Li, Junye Shi, Jiangping Chen, Xiaoming Shi, Houbing Huang, Yaorong Luo, Yurong Yang, Padraic O’Reilly, Linlin Wei, Nicolas de Souza, Liang Hong, Xiaoshi Qian*, Colossal electrocaloric effect in an interface-augmented ferroelectric polymer,Science, 382, 1020–1026 (2023) (Sole Corresponding Author)
5. Donglin Han, Feihong Du, Yingjing Zhang, Lirong Zheng, Jie Chen, Xingyi Huang, Qiang Li, Shanyu Zheng, Junye Shi, Jiangping Chen, Jiajia Dong, Xiaoshi Qian*, Molecular interface regulation enables order-disorder synergy in electrocaloric nanocomposites, Joule 7, 1-17 (2023) (Sole Corresponding Author)
6. Liqi Kang, Donglin Han, Liang Hong, Lirong Zheng*, Xiaoshi Qian*, Statistical Mechanical Model of the Giant Electrocaloric Effect in Ferroelectric Polymers. ACS Macro Letters, 12, 848-853 (2023) (Last Corresponding Author)
7. Xiaoshi Qian†, Xin Chen†, Lei Zhu, QM Zhang*, Fluoropolymer ferroelectrics: Multifunctional platform for polar-structured energy conversion. Science, 380, eadg0902 (2023) (First Author, Equal Contribution)
8. Jie Chen†, Yao Zhou†, Xingyi Huang†*, Chunyang Yu, Donglin Han, Ao Wang, Yingke Zhu, Kunming Shi, Qi Kang, Pengli Li, Pingkai Jiang, Xiaoshi Qian, Hua Bao, Shengtao Li, Guangning Wu, Xinyuan Zhu & Qing Wang*. Ladderphane copolymers for high-temperature capacitive energy storage. Nature 615, 62–66 (2023) (Contributing Author)
9. FeiHong Du, ZhiWu Song, YuTao Xu, DongLin Han, Qiang Li, ShanYu Zheng, JiaHe Shen, XiaoShi Qian*, Multi-element B-site substituted perovskite ferroelectrics exhibit enhanced electrocaloric effect. Science China Technological Science. 66: 1119–1128, https://doi.org/10.1007/s11431-022-2282-4 (2023) (Sole Corresponding Author)
10. Shian Dong, Weihang Gao, Kunming Shi, Qi Kang, Zhenli Xu, Jinkai Yuan, Yingke Zhu, Hongfei Li, Jie Chen, Pingkai Jiang, Guangning Wu, Qiulong Wei, Jieshan Qiu, Xiaoshi Qian*, Xingyi Huang*, Dielectric-electrolyte supercapacitors. Cell Reports Physical Science, 4, 101284. (2023) (Corresponding Author)
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11. Yu Cai, Qiang Li, Feihong Du, Jiawang Feng, Donglin Han, Shanyu Zheng, Shihao Yang, Yingjing Zhang, Binbin Yu, Junye Shi, Xiaoshi Qian*, Polymeric nanocomposites for electrocaloric refrigeration. Frontiers in Energy (2022) https://doi.org/10.1007/s11708-022-0858-0 (Sole Corresponding Author)
12. Xiaojun Wang, Xuhao Wan, Xianxian Qin, Chi Chen, Xiaoshi Qian, Yuzheng Guo, Qunjie Xu, Wen-Bin Cai, Hui Yang, Kun Jiang, Electronic Structure Modulation of RuO2 by TiO2 Enriched with Oxygen Vacancies to Boost Acidic O2 Evolution. ACS Catalysis (2022) (Contributing Author)
13. Xiaoshi Qian*, Pumping into a cool future: electrocaloric materials for zero-carbon refrigeration, Frontiers in Energy, 16, 19-22 (2022) Invited Paper (Sole Corresponding Author)
14. Xin Chen†, Hancheng Qin†, Xiaoshi Qian, Wenyi Zhu, Bo Li, Bing Zhang, Wenchang Lu, Ruipeng Li, Shihai Zhang, Lei Zhu, Fabrice Domingues Dos Santos, J Bernholc, QM Zhang*, Relaxor ferroelectric polymer exhibits ultrahigh electromechanical coupling at low electric field. Science, 375 (6587), 1418-1422 (2022) (Contributing Author)
15. Zhijie Lei, Xiaoshi Qian*, Kun Jiang, and Guang Meng, Highly band-selective meta-surfaces exhibiting perfect near infrared absorption and concurrent visible band sensing: A numerical study. Science China: Technological Sciences, . 65. (2022)https://doi.org/10.1007/s11431-021-1982-y (Sole Corresponding Author)
16. HengCui†, Quan Zhang†, Yiwen Bo, Peijia Bai, Mengyan Wang, Chunyang Zhang, Xiaoshi Qian*, Rujun Ma*, Flexible microfluidic electrocaloric cooling capillary tube with giant specific device cooling power density, Joule, 6, 258, (2022) (Corresponding Author)
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17. Xiaoshi Qian*†, Donglin Han†, Lirong Zheng†, Jie Chen†, Madhusudan Tyagi, Qiang Li, Feihong Du, Shanyu Zheng, Xingyi Huang*, Shihai Zhang, Junye Shi, Houbing Huang*, Xiaoming Shi, Jiangping Chen, Hancheng Qin, Jerzy Bernholc, Xin Chen, Long-Qing Chen, Liang Hong*, QM Zhang, High-entropy polymer produces a giant electrocaloric effect at low fields. Nature, 600, 664–669 (2021) (First Author, and Corresponding Author, Equal Contribution)
18. Jie Chen, Zhonghui Shen, Qi Kang, Xiaoshi Qian, Shengtao Li, Pingkai Jiang, Xingyi Huang*, Chemical adsorption on 2D dielectric nanosheets for matrix free nanocomposites with ultrahigh electrical energy storage, Science Bulletin, https://doi.org/10.1016/j.scib.2021.10.011 (2021) (Contributing Author)
19. Qiang Li, Junye Shi, Donglin Han, Feihong Du, Jiangping Chen, Xiaoshi Qian*, Concept design and numerical evaluation of a highly efficient rotary electrocaloric refrigeration device. Applied Thermal Engineering, 116806, (2021) (Sole Corresponding Author)
20. 李子超, 施骏业,陈江平,钱小石*,电卡制冷材料与系统发展现状与展望, 制冷学报 42, 1 (2021) (Sole Corresponding Author)
21. Junye Shi, Qiang Li, Tianyuan Gao, Donglin Han, Yuanyuan Li, Jiangping Chen, Xiaoshi Qian*, Numerical evaluation of a kilowatt-level rotary electrocaloric refrigeration system. International Journal of Refrigeration, 121, 279-288 (2021) (Sole Corresponding Author)
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22. Jie Liu, Zhonghui Shen, Wenhan Xu, Yu Zhang, Xiaoshi Qian*, Zhenhua Jiang, Yunhe Zhang*, Interface‐Strengthened Polymer Nanocomposites with Reduced Dielectric Relaxation Exhibit High Energy Density at Elevated Temperatures Utilizing a Facile Dual Crosslinked Network. Small 2000714, (2020) (Corresponding Author)
23. Chao Zhang, Quanpei Du, Wenru Li, Dong Su, Meng Shen, Xiaoshi Qian, Bing Li, Haibo Zhang, Shenglin Jiang, Guangzu Zhang*, High electrocaloric effect in barium titanate-sodium niobate ceramics with core-shell grain assembly. Journal of Materiomics, 6, 618, https://doi.org/10.1016/j.jmat.2020.05.002 (2020) (Contributing Author)
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24. Junye Shi†, Donglin Han†, Zichao Li†, Lu Yang, Sheng-Guo Lu, Zhifeng Zhong, Jiangping Chen, QM Zhang, Xiaoshi Qian*, Electrocaloric Cooling Materials and Devices for Zero-Global-Warming-Potential, High-Efficiency Refrigeration. Joule 5, 1200 (2019) (Sole Corresponding Author)
25. Xiaoshi Qian†, Yusen Zhao†, Yousif Alsaid†, Xu Wang, Mutian Hua, Tiphaine Galy, Hamsini Gopalakrishna, Yunyun Yang, Jinsong Cui, Ning Liu, Michal Marszewski, Laurent Pilon, Hanqing Jiang, Ximin He*, Artificial Phototropism for Omnidirectional Tracking and Harvesting of Light. Nature Nanotechnology, 14, 1048 (2019) (First Author, Equal Contribution)
26. Wenhan Xu, Jie Liu, Tianwu Chen, Xiangyu Jiang,* Xiaoshi Qian*, Yu Zhang, Zhenhua Jiang, and Yunhe Zhang*, Bioinspired Polymer Nanocomposites Exhibit Giant Energy Density and High Efficiency at High Temperature. Small, 1901582 (2019) (Corresponding Author)
27. Yusen Zhao, Chen Xuan, Xiaoshi Qian, Yousif Alsaid, Mutian Hua, Lihua Jin, Ximin He*, Soft phototactic swimmer based on self-sustained hydrogel oscillator. Science Robotics. 4, eaax7112 (2019) (Contributing Author)
--------------------Before Join SJTU------------------------------
28. Qiulong Wei, Yalong Jiang, Xiaoshi Qian, Liang Zhang, Qidong Li, Shuangshuang Tan, Kangning Zhao, Wei Yang, Qinyou An*, Jinghua Guo, Liqiang Mai*, Sodium Ion Capacitor Using Pseudocapacitive Layered Ferric Vanadate Nanosheets Cathode. iScience 6, 212 (2018)
29. Meng Qin, Mo Sun, Ruobing Bai, Yiqi Mao, Xiaoshi Qian, Dipika Sikka, Yuan Zhao, Hang Jerry Qi, Zhigang Suo, Ximin He*. Bioinspired Hydrogel Interferometer for Adaptive Coloration and Chemical Sensing. Advanced Materials 30, 1800468 (2018);
30. Lu Yang†, Xiaoshi Qian*†, Chongming Koo, Ying Hou, Tian Zhang, Yue Zhou, Minren Lin, Jin-Hao Qiu, Q.M. Zhang*, Graphene enabled percolative nanocomposites with large electrocaloric efficient under low electric fields over a broad temperature range, Nano Energy, 22, 461–467 (2016) *Co-first Author and Co-corresponding Author
31. Xiaoshi Qian et al., Internal biasing in relaxor ferroelectric polymer to enhance the electrocaloric effect. Adv. Funct. Mater., 32, 5134–5139, (2015)
32. Xiao-Shi Qian†, Hui-Jian Ye†, Ying-Tang Zhang, Haiming Gu, Xinyu Li, C. A. Randall and Q. M. Zhang*. Giant Electrocaloric Response Over A Broad Temperature Range in Modified BaTiO3 Ceramics. Adv. Funct. Mater. , 9, 1300, (2014). (Back Cover Featured)
33. Xiao-Shi Qian, S. G. Lu, Xinyu Li, Haiming Gu, L-C Chien, Q. M. Zhang*. Large Electrocaloric Effect in A Dielectric Liquid Possessing A Large Dielectric Anisotropy Near the Isotropic-Nematic Transition. Adv. Funct. Mater. 23, 2894, (2013).
34. Hao Xi†, XiaoShi Qian*†, Meng-Chien Lu , Lei Mei , Sebastian Rupprecht , Qing X. Yang, Q. M. Zhang*, A Room Temperature Ultrasensitive Magnetoelectric Susceptometer for Quantitative Tissue Iron Detection. Scientific Reports, 29740 (2016) *Co-first Author and Co-corresponding Author.
35. Xiaoshi Qian, Tiannan Yang, Tian Zhang, Long-Qing Chen and Q. M. Zhang, Anomalous negative electrocaloric effect in a relaxor/normal ferroelectric polymer blend with controlled nano- and meso-dipolar couplings. Appl. Phys. Lett. 108, 142902 (2016) Editor's Pick
36. Xiaoshi Qian*, Shan Wu, Eugene Furman, Ji Su, Qiming Zhang*, Ferroelectric polymers as multi-functional electroactive materials: recent advances, potential, and challenges, MRS Communications, 115-129, Review paper, *corresponding author, (2015)
37. Xinyu Li*, Xiao-Shi Qian*, Haiming Gu, Xiangzhong Chen, S. G. Lu, Minren Lin, Fred Bateman, and Q. M. Zhang. Giant electrocaloric effect in ferroelectric poly(vinylidenefluoride trifluoroethylene) copolymers near a first-order ferroelectric transition. Appl. Phys. Lett. 101, 132903(2012). *Co-first Authors
38. Xiao-shi Qian, Hao Wu, Qin Wang, Zi-Yan Yu, Fei Xu, Yan-Qing Lu, and Yan-Feng Chen. Electro-optic tunable optical isolator in periodically poled LiNbO3. J. Appl. Phys. 109, 053111 (2011).
39. Xiao-Shi Qian, Jing-Ping Li, Ming-Hui Lu, Yan-Qing Lu, and Yan-Feng Chen. Acousto-optic interaction in photonic crystals with defects. J. Appl. Phys. 106, 043107 (2009).
40. Tian Zhang, Xiao-Shi Qian, Haiming Gu, Ying Hou, QM Zhang, An electrocaloric refrigerator with direct solid to solid regeneration, Appl. Phys. Lett. 110, 243503 (2017);
41. Jinglei Li, Xiaobo Zhao, Zhuo Xu, Tian Zhang, Xiaoshi Qian, Ying Hou, Lu Yang, Shujun Zhang, Electrocaloric effect in lead-free relaxor (1-x)(Sr 0.7 Bi 0.2) TiO 3+ x (Na 0.5 Bi 0.5) TiO 3 material system, Materials Letter, 187, 68-71, 2017
42. Jinglei Li, Xiaobo Zhao, Tian Zhang, Xiaoshi Qian, Ying Hou, Lu Yang, QM Zhang, Electrocaloric response in a relaxor ferroelectric polymer at temperatures far below the dielectric maximum, Phase Transitions, 90, 99-103, 2017
43. Y Hou, L Yang, X Qian, T Zhang, QM Zhang, Electrocaloric response near room temperature in Zr-and Sn-doped BaTiO3 systems. Phil. Trans. R. Soc. A 374 (2074), 20160055
44. Ying Hou, Lu Yang, Xiaoshi Qian, Tian Zhang, QM Zhang, Enhanced electrocaloric effect in composition gradient bilayer thick films. Appl. Phys. Lett. 108, 133501 (2016)
45. Hui-Jian Ye, Xiao-Shi Qian, Jinhuang Lu, Haiming Gu, Shujun Zhang, QM Zhang, Dae-Yong Jeong, Wen-Zhu Shao, Liang Zhen, Dielectric and electrocaloric responses of Ba (Zr 0.2 Ti 0.8) O 3 bulk ceramics and thick films with sintering aids. IEEE Transactions on Dielectrics and Electrical Insulation, 3, 1501-1505 (2015)
46. Haiming Gu, Xiao-Shi Qian, Hui-Jian Ye, QM Zhang, An electrocaloric refrigerator without external regenerator, Appl. Phys. Lett. 105, 162905 (2014); Editor's Pick
47. Hui-Jian Ye, Xiao-Shi Qian, Dae-Yong Jeong, Shujun Zhang, Yue Zhou, Wen-Zhu Shao, Liang Zhen and Q. M. Zhang, Giant electrocaloric effect in BaZr0.2Ti0.8O3 thick film. Appl. Phys. Lett. 105, 152908 (2014);
48. Xiang-Zhong Chen, Xinyu Li, Xiao-Shi Qian, Minren Lin, Shan Wu, Qun-Dong Shen, Q.M. Zhang, A nanocomposite approach to tailor electrocaloric effect in ferroelectric polymer. Polymer, 54, 5299, (2013).
49. Haiming Gu, Xiaoshi Qian, Xinyu Li, Brent Craven, Wenyi Zhu, Ailan Cheng, S. C. Yao, Q. M. Zhang. A Chip Scale Solid State Electrocaloric Effect Based Cooling Device. Appl. Phys. Lett. 102, 122904 (2013).
50. Haiming Gu, Brent Craven, Xiaoshi Qian, Xinyu Li, Ailan Cheng, and Q. M. Zhang. Simulation of chip-size electrocaloric refrigerator with high cooling-power density. Appl. Phys. Lett. 102, 112901 (2013).
51. Xiang-Zhong Chen, Xinyu Li, Xiao-Shi Qian, Shan Wu, Sheng-Guo. Lu, Hai-Ming Gu, Minren Lin, Qun-Dong Shen, and Q. M. Zhang. A polymer blend approach to tailor the ferroelectric responses in P(VDF-TrFE) based copolymers. Polymer, 54, 2373 (2013).
52. Xinyu Li,Sheng-Guo Lu,Xiang-Zhong Chen,Haiming Gu, Xiao-Shi Qian and Q. M. Zhang. Pyroelectric and electrocaloric materials, J. Mater. Chem. C. 1, 23 (2013) (Feature Article, DOI: 10.1039/c2tc00283c (Invited)).
53. Xiang-zhong Chen, Xiao-shi Qian, Xinyu Li, S.G. Lu, Haiming Gu,Minren Lin, Qun-dong Shen, and Q. M. Zhang. Enhanced electrocaloric effect in poly(vinylidene fluoride- trifluoroethylene)-based terpolymer/copolymer blends. Appl. Phys. Lett. 100 222902 (2012).
54. V. Bobnar, X. Li, G. Casar, A. Erste, S. Glinsek, X. Qian, and Q. M. Zhang. Tailoring electrically-induced properties by stretching relaxor polymer. J. Appl. Phys. 111, 083512 (2012).
55. Xinyu Li, Xiao-shi Qian, S. G. Lu, Jiping Cheng, Zhao Fang and Q. M. Zhang. Tunable Temperature Dependence of Electrocaloric Effect in Ferroelectric RelaxorP(VDF-TrFE-CFE) Terpolymer. Appl. Phys. Lett. 99, 052907 (2011).
56. Zi-yan Yu, Fei Xu, Xiao-wen Lin, Xiao-shi Song, Xiao-shi Qian, Qin Wang, and Yan-qing Lu. Tunable broadband isolator based on electro-optically induced linear gratings in a nonlinear photonic crystal. Optics Letters, 35, 3327(2010).
57. Shu-yi Zhang, Qi Zhong, Xiao-shi Qian, Xiao-wen Lin, Fei Xu, Wei Hu, and Yan-qing Lu. A three-beam path photonic crystal fiber modal interferometer and its sensing applications. J. Appl. Phys. 108, 023107 (2010).
58. Cheng He, Xiao-Lin Chen, Ming-Hui Lu, Xue-Feng Li, Wei-Wei Wan, Xiao-Shi Qian, Ruo-Cheng Yin, and Yan-Feng Chen. Left-handed and right-handed one-way edge modes in a gyromagnetic photonic crystal. J. Appl. Phys. 107, 123117 (2010).
59. Qin Wang, Fei Xu, Zi-yan Yu, Xiao-shi Qian, Xi-kui Hu, Yan-qing Lu, and Hui-Tian Wang. A bidirectional tunable optical diode based on periodically poled LiNbO3. Optics Express, 18, 7340, (2010).
60. Cheng He, Xiao-Lin Chen, Ming-Hui Lu, Xue-Feng Li, Wei-Wei Wan, Xiao-Shi Qian, Ruo-Cheng Yin, Yan-Feng Chen. Tunable one-way cross-waveguide splitter based on gyromagnetic photonic crystal. Appl. Phys. Lett., 96, 111111 (2010).
61. Zi-Yan Yu, Fei Xu, Fei Leng, Xiao-Shi Qian, Xiang-Fei Chen, Yan-Qing Lu. Acousto-optic tunable second harmonic generation in periodically poled LiNbO3. Optics Express, 17, 11965(2009).
62. Hao Wu, Zhang-Di Huang, Zi-Yan Yu, Xiao-Shi Qian, Beckham Chen and Yan-qing Lu. Aberration Analysis and Efficiency Improvement of a Bidirectional Optical Subassembly. Optical Engineering, 48, 105008 (2009).
国际会议会刊
[1] Xiao-Shi Qian, S. G. Lu, Xinyu Li, Haiming Gu, L-C Chien, Q. M. Zhang, Large Electrocaloric Effect from Electrical Field Induced Orientational Order-Disorder Transition in Nematic Liquid Crystals Possessing Large Dielectric Anisotropy. Materials Research Society (MRS) Spring Meeting 2013, San Francisco, CA. April, 2013
[2] H Xi, MC Lu, X Qian, QM Zhang, S Rupprecht, QX Yang, An ultrasensitive magnetoelectric sensor system for the quantitative detection of liver iron. SENSORS, 2016 IEEE, 1-3
[3] XZ Chen, XS Qian, X Li, DSG Lu, H Gu, M Lin, QD Shen, Q Zhang, Enhanced Electrocaloric Effect in Poly (vinylidene fluoride-trifluoroethylene)-based Composites. MRS Proceedings 1490.
[4] Xinyu Li, Haiming Gu, Xiaoshi Qian and Qiming Zhang. Compact cooling devices based on giant electrocaloric effect dielectrics. Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm), 2012 13th IEEE Intersociety Conference on May 30 - June 1, 2012
[5] Haiming Gu, Xinyu Li, S. G. Lu, Minren Lin, Xiaoshi Qian, J. P. Cheng, Ailan Cheng, Brent Craven and Q. M. Zhang. Compact cooling devices based on giant electrocaloric effect dielectrics, Proceedings of the ASME 2012 summer heat transfer conference, Puerto Rico, 2012.
[6] Xinyu Li, Xiaoshi Qian, Haiming Gu, Shengguo Lu, Qiming Zhang, APS March Meeting 2012 http://meetings.aps.org/link/BAPS.2012.MAR.Y49.14
[7] QM Zhang, DSG Lu, X Li, B Neese, X Qian, Z Kutnjak, B Rozic, R Pirc, Beyond the traditional polarization response in electrets: Some amazing properties of the ferrorelaxor polymers Electrets (ISE), 2011 14th International Symposium on, 59-60
[8] Z Yu, F Xu, F Leng, X Qian, X Chen, Y Lu. Acousto-Optic Tunable Quasi-Phase-Matching Nonlinear Effects in Periodically Poled LiNbO3. Photonics and Optoelectronic (SOPO), 2010 Symposium on, 1-3
[9] H Wu, Z Yu, XS Qian, B Chen, Y Lu. The efficiency improvement of a bidirectional optical subassembly. Communications, 2009. APCC 2009. 15th Asia-Pacific Conference on, 597-600.4
软件版权登记及专利
钱小石 等, 电驱动的固态制冷装置,申请号:CN202310390165.3,2023
钱小石等,具有独立导热支路且保持回热能力的电卡制冷系统,申请号:CN202310390163.4,2023
钱小石, 郑珊瑜,改性聚偏氟乙烯基铁电聚合物低电场制冷性能的方法及其应用 CN202110642335.3,Jun, 2021
钱小石, 施骏业,陈江平,高天元,陆冰清,李园园,一体式落地窗空调集成系统 CN202011404373.7,Dec, 2020
钱小石等; 制冷系统用电子节流装置,CN112555427A 2021
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Materials for Autonomous Tracking, Guiding, Modulating and Harvesting of Energetic Emissions
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Inventors: 陆延青, 林晓雯, 李苏陕, 钱小石, 葛海雄, 胡伟, 徐飞.
CN102768381
2023 上海市青年科技英才
2023 350vip8888新葡的京集团思源学者
2022 年度班主任考核优秀
2021 350vip8888新葡的京集团十大科技进展
2021 350vip8888新葡的京集团科技成果二等奖
2021 350vip8888新葡的京集团优秀班主任
2021 机动学院青教赛二等奖
2021 聘期考核优秀
2018 国家高层次引进人才青年专家(第十四批)
2014 Dr. Nirmal K. Bose Dissertation Excellence Award
指导学生获350vip8888新葡的京集团学术之星,校年度人物,院学术之星,国家奖学金,优秀毕业生,优秀毕业论文等荣誉奖励