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王穗東,現(xiàn)任蘇州大學(xué)功能納米與軟物質(zhì)研究院教授、博士生導(dǎo)師。
已在IEEE Electron Device Letters、Applied Physics Letters、Advanced Functional Materials、Energy & Environmental Science等期刊上發(fā)表SCI論文160多篇;擔(dān)任IEEE Journal on Flexible Electronics編輯、IEEE Electron Devices Society納米技術(shù)委員會(huì)委員。
已主持國家自然科學(xué)基金項(xiàng)目5項(xiàng),國家重點(diǎn)研發(fā)計(jì)劃重點(diǎn)專項(xiàng)項(xiàng)目1項(xiàng)、重點(diǎn)專項(xiàng)課題1項(xiàng),江蘇省“青藍(lán)工程”優(yōu)秀教學(xué)團(tuán)隊(duì)等。
獲國家級(jí)教學(xué)成果獎(jiǎng)二等獎(jiǎng)、省級(jí)教學(xué)成果獎(jiǎng)特等獎(jiǎng)、省級(jí)自然科學(xué)獎(jiǎng)二等獎(jiǎng)、蘇州大學(xué)“高尚師德”獎(jiǎng)等獎(jiǎng)項(xiàng),入選江蘇省333高層次人才培養(yǎng)工程。
教育及工作經(jīng)歷:
2000年浙江大學(xué)物理學(xué)學(xué)士。
2004年香港城市大學(xué)物理學(xué)與材料科學(xué)博士。
2004至2006年日本名古屋大學(xué)博士后。
2007至2008年,先后在日本國立理化研究所(RIKEN)和日本國立產(chǎn)業(yè)技術(shù)綜合研究所(AIST)任研究員。
2008年底回國加入蘇州大學(xué)功能納米與軟物質(zhì)研究院(FUNSOM)和納米科學(xué)技術(shù)學(xué)院(CNST)任教授、博導(dǎo),主要從事新型半導(dǎo)體器件研究。
課題組介紹:
課題組現(xiàn)有教授2位(王穗東、高旭),副教授2位(徐建龍、仲亞楠),博士后1位,博士研究生3名、碩士研究生16名以及本科生12名。已有多位研究生赴美國、英國、加拿大和日本等地開展學(xué)術(shù)交流或繼續(xù)深造。課題組從事多學(xué)科交叉(以物理、電子為主,并涉及材料、化學(xué)、生物)的應(yīng)用基礎(chǔ)研究。招收物理學(xué)、電子類、材料類等相關(guān)專業(yè)的碩士生、博士生及博士后,歡迎感興趣的同學(xué)來咨詢和交流。
教學(xué)事跡:
王穗東老師自2008年9月回國加入蘇州大學(xué)功能納米與軟物質(zhì)研究院和納米科學(xué)技術(shù)學(xué)院任教授,以培養(yǎng)戰(zhàn)略性新興產(chǎn)業(yè)創(chuàng)新人才為己任,從教十一年,作為本科生導(dǎo)師已指導(dǎo)本科畢業(yè)論文24人,作為研究生導(dǎo)師已培養(yǎng)碩士21人、博士5人。2013年至今,他擔(dān)任學(xué)院副院長分管本科教學(xué),主持國家試點(diǎn)學(xué)院的教學(xué)改革任務(wù)和江蘇省品牌專業(yè)的專業(yè)建設(shè)任務(wù),并組織推動(dòng)學(xué)院的國際化、信息化教學(xué)發(fā)展。
王穗東老師堅(jiān)持以理想信念教育為核心,以愛國主義教育為重點(diǎn),以思想道德建設(shè)為基礎(chǔ),以大學(xué)生全面發(fā)展為目標(biāo),全面落實(shí)立德樹人根本任務(wù),培養(yǎng)德才兼?zhèn)、積極踐行社會(huì)主義核心價(jià)值觀的納米科學(xué)與技術(shù)領(lǐng)域創(chuàng)新人才。他堅(jiān)持“德才兼?zhèn)、以德為先,通識(shí)為體、專業(yè)為用”的育人理念,充分發(fā)揮納米專業(yè)學(xué)科優(yōu)勢,發(fā)掘?qū)I(yè)課程中思想政治教育元素,例如在講述科學(xué)前沿知識(shí)時(shí)將眾多科學(xué)家愛國奉獻(xiàn)的精神融入到專業(yè)教學(xué)之中,在做科學(xué)研究時(shí)將國家需求和專業(yè)特色有機(jī)融合。以此不斷提升專業(yè)內(nèi)涵,推動(dòng)專業(yè)特色發(fā)展。
王穗東老師在平凡的教學(xué)和管理崗位上勤勤懇懇工作、兢兢業(yè)業(yè)耕耘,始終堅(jiān)持以學(xué)生為中心、以教學(xué)為中心。擔(dān)任納米材料與技術(shù)專業(yè)的大類基礎(chǔ)課程《半導(dǎo)體器件物理》的任課老師,每學(xué)年的教學(xué)課程測評(píng)均為優(yōu)秀,深受廣大師生的喜愛,曾獲“蘇州工業(yè)園區(qū)優(yōu)秀教育工作者”稱號(hào)。通過王老師的引導(dǎo)和幫助,很多學(xué)生對(duì)納米專業(yè)的認(rèn)可度和熱愛更加深厚,更加明確信念和目標(biāo),彰顯了正能量文化素質(zhì)教育與思政教育的有機(jī)結(jié)合。
王穗東老師為推動(dòng)國家試點(diǎn)學(xué)院的教學(xué)改革,適應(yīng)學(xué)生個(gè)性化培養(yǎng)的需求,組建了一支專業(yè)教學(xué)團(tuán)隊(duì),該教學(xué)團(tuán)隊(duì)榮獲蘇州市首批優(yōu)秀教學(xué)團(tuán)隊(duì)和江蘇省高校“青藍(lán)工程”優(yōu)秀教學(xué)團(tuán)隊(duì)。助力學(xué)院制定了一系列的教學(xué)規(guī)章制度,例如《蘇州大學(xué)納米科學(xué)技術(shù)學(xué)院本科教學(xué)規(guī)范細(xì)則》、《蘇州大學(xué)納米科學(xué)技術(shù)學(xué)院本科生課程方向分流實(shí)施辦法》、《蘇州大學(xué)納米科學(xué)技術(shù)學(xué)院本科生導(dǎo)師制實(shí)施辦法》等。以王穗東老師帶頭的教學(xué)團(tuán)隊(duì),結(jié)合納米專業(yè)的創(chuàng)新性、學(xué)科交叉性和前沿性特征,提出了“具有創(chuàng)新思維能力、具備學(xué)科交叉優(yōu)勢、擁有國際化視野”的創(chuàng)新人才培養(yǎng)理念,并基于此構(gòu)建了立足教科融合、學(xué)科融合、國際融合的“三融合”創(chuàng)新人才培養(yǎng)模式,探索出一條適應(yīng)國家戰(zhàn)略性新興產(chǎn)業(yè)相關(guān)工科專業(yè)創(chuàng)新人才培養(yǎng)的有效路徑。該教學(xué)成果引起了國內(nèi)外的廣泛關(guān)注,國際頂級(jí)學(xué)術(shù)期刊Nature的自然指數(shù)特刊于2016年11月17日以“中國高等教育的創(chuàng)新先鋒”(Innovative Pioneer of Higher Education in China)為題對(duì)本成果進(jìn)行了專題報(bào)道;《光明日?qǐng)?bào)》于2017年2月14日以“立體培養(yǎng)納米專業(yè)創(chuàng)新人才”為題對(duì)本成果進(jìn)行了報(bào)道推介。該教學(xué)成果先后榮獲2017年江蘇省教學(xué)成果獎(jiǎng)特等獎(jiǎng)和2018年國家級(jí)教學(xué)成果獎(jiǎng)二等獎(jiǎng)。
王穗東老師狠抓本科教學(xué)規(guī)范,聚全院之力組織開展ABET國際工程教育專業(yè)認(rèn)證,力爭本專業(yè)的教學(xué)水平更上新臺(tái)階。大力推動(dòng)全英文教學(xué)改革的進(jìn)程,創(chuàng)建學(xué)院具有特色的英語語言中心,引進(jìn)國際化教學(xué)師資,建立本科生全程導(dǎo)師制,為學(xué)生們打造了一個(gè)國際化、高起點(diǎn)的學(xué)習(xí)平臺(tái)。相關(guān)教學(xué)理論成果《新工科教育的融合創(chuàng)新與路徑突破—蘇州大學(xué)納米科技創(chuàng)新人才培養(yǎng)的案例研究》發(fā)表于高等教育權(quán)威期刊《高等教育研究》。
相比于“王院長”,納米學(xué)院的學(xué)生們更愿意親切地喚他一聲“王老師”。王老師相信與學(xué)生交心是育人的法寶,時(shí)常利用學(xué)生沒課的晚上和周末時(shí)間與學(xué)生們面對(duì)面談心交流。與新生們談學(xué)業(yè)的規(guī)劃、理想之追求;與老生們談事業(yè)的起點(diǎn)、國家之需求。無論多么微小的事情,王老師總是第一時(shí)間親自幫同學(xué)們聯(lián)系解決。都說“教育是植根于愛的事業(yè)”,正是王老師這份對(duì)學(xué)生無私的愛,感染著身邊的每一個(gè)人,并將影響更多的人。
研究領(lǐng)域:
面向人工智能硬件開發(fā)及應(yīng)用的新型信息器件研究,包括有機(jī)/雜化神經(jīng)形態(tài)器件、憶阻器、憶容器、記憶晶體管、成像元件等。
承擔(dān)科研項(xiàng)目:
資料更新中……
發(fā)明專利:
[1]徐建龍, 張軒屹, 王穗東, 劉艷花, 高旭. 一種透明柔性參比電極及其制備方法[P]. 江蘇省: CN118641600A, 2024-09-13.
[2]張中達(dá), 王穗東, 仲亞楠, 高旭, 徐建龍. 一種柔性薄膜記憶晶體管及其制備方法[P]. 江蘇省: CN117597018A, 2024-02-23.
[3]高旭, 殷子懿, 王穗東, 朱晨輝, 徐建龍, 仲亞楠. 一種紫外輻射劑量監(jiān)測器及其制備方法[P]. 江蘇省: CN114784190A, 2022-07-22.
[4]肖靜, 姜慧慧, 王穗東, 高旭. 一種倒置底發(fā)射式OLED的ITO電極修飾方法[P]. 山東省: CN113258024A, 2021-08-13.
[5]徐建龍, 張景越, 陳彤, 王穗東, 高旭. 一種基于鈣鈦礦-碳納米管體異質(zhì)結(jié)的寬譜光電探測器[P]. 江蘇省: CN110718633A, 2020-01-21.
[6]高旭, 王穗東, 劉艷花, 徐建龍, 仲亞楠, 張中達(dá). 一種薄膜晶體管存儲(chǔ)器及其多值存儲(chǔ)方法[P]. 江蘇: CN107978603A, 2018-05-01.
[7]王穗東, 高旭, 徐建龍, 董彬, 劉杰, 張精宇. 一種納米復(fù)合體晶體管存儲(chǔ)器及其制備方法[P]. 江蘇: CN107968151A, 2018-04-27.
[8]王穗東, 劉長海, 高旭, 孫旭輝, 李述湯. 金屬納米顆粒與碳材料復(fù)合物的自組裝可控制備方法[P]. 江蘇省: CN102554244B, 2014-04-09.
[9]王穗東, 劉長海, 高旭, 孫旭輝, 李述湯. 金屬納米顆粒與碳材料復(fù)合物的自組裝可控制備方法[P]. 江蘇: CN102554244A, 2012-07-11.
主要期刊論文:
1. Z. Y. Yin#, J. Yang#, X. Gao*, Z. D. Zhang, J. T. Ye, Z. N. Lu, C. Qian, Y. N. Zhong, J. L. Xu, and S. D. Wang*, “Low-voltage electronic dosimeter for portable UV exposure monitoring”, IEEE Electron Device Letters, 2024, 45, 1285-1288.
2. Z. Y. Yin#, G. Xu#, J. Xiao*, Y. Y. Zhang, J. Y. Zhang, Y. N. Zhong, X. Gao, J. L. Xu*, and S. D. Wang*, “Antisolvent-free metal halide perovskite thin-film photodetectors”, IEEE Electron Device Letters, 2024, 45, 1209-1212.
3. H. Lei#, Z. Y. Yin#, P. Huang, X. Gao, C. Zhao, Z. Wen*, X. Sun*, and S. D. Wang*, “Intelligent tribotronic transistors toward tactile near-sensor computing”, Advanced Functional Materials, 2024, 2401913.
4. S. Ren#, X. Pan#, Y. Zhang, J. L. Xu*, Z. Liu, X. Zhang, X. Li*, X. Gao, Y. Zhong, S. Chen, and S. D. Wang*, “Conductive MXene/polymer composites for transparent flexible supercapacitors”, Small, 2024, 2401346.
5. Z. N. Lu, J. T. Ye, Z. D. Zhang, J. W. Cai, X. Y. Pan, J. L. Xu, X. Gao, Y. N. Zhong*, and S. D. Wang*, “Memristor-based input delay reservoir computing system for temporal signal prediction”, Microelectronic Engineering, 2024, 293, 112240.
6. Chen, Weinan; Zong, Hao; Xie, Yujie; Xu, Jianping; Cai, Jia-Wei; Wang, Sui-Dong*; Zhou, Gang*, “Polycyclic aromatic hydrocarbons containing antiaromatic chalcogenopyrano[3,2-b]-chalcogenopyrans”, Organic Chemistry Frontiers, 2024, 11, 390-400.
7. Yang, Qian; Huang, Hao-Wen; Xu, Gao; Yuan, Yu; Jiang, Meng-Ting; Zhong, Ya-Nan; Gao, Xu; Xu, Jian-Long*; Wang, Sui-Dong*, “Self-formed interfacial oxide layer minimizes reverse bias dark current in PbS colloidal quantum dot photodiodes”, Applied Physics Letters, 2023, 123(21): 213302.
8. Zhu, Kaichen; Vescio, Giovanni; Gonzalez-Torres, Sergio; Lopez-Vidrier, Julia; Frieiro, Juan Luis; Pazos, Sebastian; Jing, Xu; Gao, Xu; Wang, Sui-Dong; Ascorbe-Muruzabal, Joaquin; Ruiz-Fuentes, Juan A.; Cirera, Albert; Garrido, Blas; Lanza, Mario*.Inkjet-printed h-BN memristors for hardware security.Nanoscale, 2023, 15(23): 9985-9992.
9. Huang, Hai-Tian; Luo, Jie; Wu, Jia-Ling; Han, Xue-Er; Zhang, Zhong-Da; Cai, Jia-Wei; Gao, Xu; Xu, Jian-Long; Zhong, Ya-Nan; Dong, Bin; Morozova, Sofia M.; Wang, Sui-Dong*, “Solution-processed organic memristor matrix with behavior of clustered synaptic plasticity”, IEEE Electron Device Letters, 2023, 44(10): 1724-1727.
10. Yin, Zhao-Yang; Chen, Yang; Zhang, Yang-Yang; Yuan, Yu; Yang, Qian; Zhong, Ya-Nan; Gao, Xu; Xiao, Jing; Wang, Zhao-Kui; Xu, Jian-Long*; Wang, Sui-Dong*, “Probing into Reverse Bias Dark Current in Perovskite Photodiodes: Critical Role of Surface Defects”, Advanced Functional Materials, 2023, 33, 2302199.
11. Jiang, Meng-Ting; Yang, Qian; Xu, Jian-Long*; Yuan, Yu; Zhang, Jing-Yue; Zhong, Ya-Nan; Gao, Xu; Wang, Sui-Dong*, “Monolithically Integrated PbS Colloidal Quantum Dot Photodetector Crossbar Array for Short-Wavelength Infrared Imaging”, Advanced Optical Materials, 2023, 11(14): 2202990.
12. Zhu, Chen-Hui; Gao, Xu*; Huang, Hai-Tian; Li, Li-Xing; Xu, Jian-Long; Zhong, Ya-Nan; Tang, Wei; Guo, Xiao-Jun; Wang, Sui-Dong*, “Organic Photonic Synaptic Devices with UV-Stimulated Inhibition and Adaptive Short-Term Plasticity”, Advanced Materials Technologies, 2023, 8, 2300187.
13. Luo, Jie; Tian, Guo; Zhang, Ding-Guo; Zhang, Xing-Chen; Lu, Zhen-Ni; Zhang, Zhong-Da; Cai, Jia-Wei; Zhong, Ya-Nan; Xu, Jian-Long; Gao, Xu*; Wang, Sui-Dong*, “A voltage-mode ferroelectric synapse for neuromorphic computing”, ACS Applied Materials & Interfaces, 2023, 15(41): 48452-48461.
14. Zong, Hao; Wang, Min; Chen, Weinan; Zhang, Zhong-Da; Cai, Jia-Wei; Shen, Cong; Li, Li-Xing; Kang, Shui-Long; Fang, Yuan; Zhou, Gang*; Wang, Sui-Dong*, “Reducing Contact Resistance in Organic Field-Effect Transistors: A Comprehensive Comparison between 2D and Microrod Single Crystals”, ACS Applied Materials & Interfaces, 2023, 15(5): 19300-19306.
15. Chen, Jian-Ru; Lu, Zhen-Ni; Zhu, Chen-Hui; Cai, Jia-Wei; Zhang, Zhong-Da; Zhong, Ya-Nan; Xu, Jian-Long; Gao, Xu*; Wang, Sui-Dong*, “Humidity-dependent synaptic characteristics in gelatin-based organic transistors”, Microelectronic Engineering, 2023, 277: 112028.
16. Zhang, Zhong-Da; Zhong, Ya-Nan*; Shen, Cong; Huang, Hai-Tian; Lu, Zhen-Ni; Xu, Jian-Long; Gao, Xu; Wang, Sui-Dong*, “A hybrid memristor with oxide-polymer heterojunction”, Applied Physics Letters, 2022, 121(19): 191905.
17. Zhang, Xuan-Yi; Xu, Jian-Long*; Ren, Shan; Yang, Qian; Liu, Mei-Jia; Chang, Xing-Hua; Sun, Yi-Lin; Gao, Xu; Zhong, Ya-Nan; Liu, Yan-Hua*; Wang, Sui-Dong*, “Flexible and transparent composite electrode with 3D freestanding architecture for dopamine monitoring”, Advanced Electronic Materials, 2022, 8, 2200610.
18. Li, Li-Xing; Cai, Jia-Wei; Zhong, Ya-Nan; Gao, Xu; Xu, Jian-Long; Wang, Sui-Dong*, “Organic Thin-Film Memcapacitive Device With Analog and Nonvolatile Memory Effect”, IEEE Electron Device Letters, 2022, 43(9): 1539-1542.
19. Yuan, Yu; Xu, Jian-Long*; Zhang, Jing-Yue; Gao, Xu; Zhong, Ya-Nan; Wang, Sui-Dong*, “Interface Engineering for High Photoresponse in PbS Quantum-Dot Short-Wavelength Infrared Photodiodes”, IEEE Electron Device Letters, 2022, 43(8): 1275-1278.
20. Z. D. Zhang, X. Gao*, J. Luo, Y. N. Zhong, J. L. Xu, and S. D. Wang*, “UV-enabled multibit organic transistor memory with high controllability and stability”, IEEE Electron Device Letters, 2022, 43, 124-127.
21. Z. D. Zhang, Y. N. Zhong, J. L. Xu, X. Gao, and S. D. Wang*, “Soft memtransistor with ion transfer interface”, Flexible and Printed Electronics, 2022, 7, 014015.
22. Zhang, Ding-Guo; Gao, Xu*; Tang, Wei; Zhong, Ya-Nan; Xu, Jian-Long; Wang, Sui-Dong*, “Ferroelectric polymer thin-film memristors with asymmetric top electrodes”, Applied Physics Express, 2022, 15(7): 071006.
23. Shen, Cong; Gao, Xu*; Chen, Cheng; Ren, Shan; Xu, Jian-Long; Xia, Yi-Dong*; Wang, Sui-Dong*, “ZnO nanowire optoelectronic synapse for neuromorphic computing”, Nanotechnology, 2022, 33(6): 065205.
24. Kumar, Pratik; Zhu, Kaichen; Gao, Xu; Wang, Sui-Dong; Lanza, Mario*; Thakur, Chetan Singh*.Hybrid architecture based on two-dimensional memristor crossbar array and CMOS integrated circuit for edge computing.npj 2D Materials and Applications, 2022, 6(1): 8.
25. Wu, Jia-Ling; Zhang, Zhong-Da; Huang, Hai-Tian; Gao, Xu; Xu, Jian-Long; Wang, Sui-Dong*, “Polymer thin film memtransistors based on ion-carrier exchange heterojunction”, IEEE Electron Device Letters, 2021, 42(10): 1528-1531.
26. Zhang, Yang-Yang; Xu, Jian-Long*; Zhang, Jing-Yue; Yuan, Yu; Gao, Xu; Wang, Sui-Dong*, “Small-Area Perovskite Photodiodes With High Detectivity and Stability”, IEEE Electron Device Letters, 2021, 42(8): 1200-1203.
27. M. T. Tan#, T. Wang#, X. Gao*, Y. N. Zhong, J. Y. Zhang, J. L. Xu, C. Li, and S. D. Wang*, “Egg-white based polymer memristors with competing electronic-ionic effect and timescale dependent current modulation”, IEEE Electron Device Letters, 2021, 42, 228-231.
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54. Xu, Jian-Long*; Liu, Yan-Hua*; Gao, Xu; Sun, Yilin; Shen, Su; Cai, Xinlei; Chen, Linen; Wang, Sui-Dong*, “Embedded Ag Grid Electrodes as Current Collector for Ultraflexible Transparent Solid-State Supercapacitor”, ACS Applied Materials & Interfaces, 2017, 9(33): 27649-27656.
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61. Xu Gao; Lin, Meng-Fang; Mao, Bao-Hua; Shimizu, Maki; Mitoma, Nobuhiko; Kizu, Takio; Wei Ou-Yang; Nabatame, Toshihide; Zhi Liu; Tsukagoshi, Kazuhito*; Wang, Sui-Dong*, “Correlation between active layer thickness and ambient gas stability in IGZO thin-film transistors”, Journal of Physics D: Applied Physics , 2017, 50(2): 025102.
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81.Liu, Chang-Hai*; Liu, Rui-Hua; Sun, Qi-Jun; Chang, Jian-Bing; Gao, Xu; Liu, Yang; Lee, Shuit-Tong; Kang, Zhen-Hui; Wang, Sui-Dong*, “Controlled synthesis and synergistic effect of graphene-supported PdAu bimetallic nanoparticles with tunable catalytic properties”, Nanoscale, 2015, 7(14): 6356-6362.
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83. Yang, Peipei; Xu, Yong; Chen, Lei; Wang, Xuchun; Mao, Baohua; Xie, Z*******; Wang, Sui-Dong; Bao, Feng; Zhang, Qiao.Encapsulated Silver Nanoparticles Can Be Directly Converted to Silver Nanoshell in the Gas Phase.Nano Letters, 2015, 15(12): 8397-8401.
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90. Liang, Houjie; Wang, Xinxin; Zhang, Xingye; Liu, Zhiyang; Ge, Ziyi*; Ouyang, Xinhua; Wang, Suidong*, “Saturated deep-blue emitter based on spiro[benzoanthracene-fluorene]-linked phenanthrene derivative for non-doped organic light-emitting diodes”, New Journal of Chemistry, 2014, 38(10): 4696-4701.
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94. Peng, Jun; Wang, Xinxin; Liu, Jie; Huang, Xiaodong; Xiao, Jing; Wang, Sui-Dong*; Wang, Hai-Qiao*; Ma, Wanli*, “A facile solution-processed alumina as efficient electron-injection layer for inverted organic light-emitting diodes”, Journal of Materials Chemistry C, 2014, 2(5): 864-869.
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115. Peng, Yingjing; Liu, Changhai; Pan, Congtao; Qiu, Lihua; Wang, Suidong; Yan, Feng*.PPyNT-lm-PtAu Alloy Nanoparticle Hybrids with Tunable Electroactivity and Enhanced Durability for Methanol Electrooxidation and Oxygen Reduction Reaction.ACS Applied Materials & Interfaces, 2013, 5(7): 2752-2760.
116. Peng, Yingjing; Wu, Xiao; Qiu, Lihua; Liu, Changhai; Wang, Suidong; Yan, Feng*.Synthesis of carbon-PtAu nanoparticle hybrids originating from triethoxysilane-derivatized ionic liquids for methanol electrooxidation and the catalytic reduction of 4-nitrophenol.JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1(32): 9257-9263.
117. J. Xiao, X. X. Wang, H. Zhu,X. Gao, Z. H. Yang, X. H. Zhang*, and S. D. Wang*, “Efficiency enhancement utilizing hybrid charge generation layer in tandem organic light-emitting diodes”, Applied Physics Letters, 2012, 101(1): 013301.
118. J. Xiao, H. Zhu,X. X. Wang, X. Gao, Z. H. Yang, X. H. Zhang*, and S. D. Wang*, “Space charge induced electroluminescence spectra shift in organic light-emitting diodes”, Journal of Applied Physics, 2012, 112(1): 014513.
119. She Xiao-Jian; Liu Chang-Hai; Sun Qi-Jun; Go Xu; Wang Sui-Dong*, “Morphology control of tunneling dielectric towards high-performance organic field-effect transistor nonvolatile memory”, Organic Electronics, 2012, 13: 1908-1915.
120. Que, Ronghui; Shao, Qi; Li, Qinliang; Shao, Mingwang*; Cai, Shiduan; Wang, Sui-Dong*; Lee, Shuit-Tong*, “Flexible nanogenerators based on graphene oxide films for acoustic energy harvesting”, Angewandte Chemie International Edition, 2012, 51(22): 5418-5422.
121. Liu, Chang-Hai; Mao, Bao-Hua; Gao, Jing; Zhang, Shuai; Gao, Xu; Liu, Zhuang; Lee, Shuit-Tong; Sun, Xu-Hui; Wang, Sui-Dong*, “Size-controllable self-assembly of metal nanoparticles on carbon nanostructures in room-temperature ionic liquids by simple sputtering deposition”, Carbon, 2012, 50(8): 3008-3014.
122.Deng, Ping; Yan, Yan; Wang, Sui-Dong*; Zhang, Qing*, “Naphthoylene(trifluoromethylbenzimidazole)-dicarboxylic acid imides for high-performance N-type organic field-effect transistors”, Chemical Communications, 2012, 48(20): 2591-2593.
123. Zhong, Jun; Deng, Jiu-Jun; Mao, Bao-Hua; Xie, Tian; Sun, Xu-Hui; Mou, Zhi-Gang; Hong, Cai-Hao; Yang, Ping; Wang, Sui-Dong*, “Probing solid state N-doping in graphene by X-ray absorption near-edge structure spectroscopy”, Carbon, 2012, 50(1): 335-338.
124. Chang, Rui; Hong, Young Pyo; Axnanda, Stephanus; Mao, Baohua; Jabeen, Naila; Wang, Suidong; Tai, Renzhong; Liu, Zhi*.In-situ photoelectron spectroscopy with online activity measurement for catalysis research.Current Applied Physics, 2012, 12(5): 1292-1296.
125. Wang Sui-Dong.Novel bipolar host materials based on 1,3,5-triazine derivatives for highly efficient phosphorescent OLEDs with extremely low efficiency roll-off.Physical Chemistry Chemical Physics, 2012, 14: 14255-14261.
126. 李欽亮; 王穗東; 孫旭輝.高性能單根硒化銦納米線光探測器.中國化學(xué)會(huì)第28屆學(xué)術(shù)年會(huì)第11分會(huì)場摘要集, 2012.
127. Que, Ronghui; Shao, Mingwang*; Zhuo, Shujuan; Wen, Chunye; Wang, Suidong*; Lee, Shuit-Tong*, “Highly reproducible surface-enhanced Raman scattering on a capillarity-assisted gold nanoparticle assembly”, Advanced Functional Materials, 2011, 21(17): 3337-3343.
128. Q. L. Li, Y. Li, J. Gao, S. D. Wang*, and X. H. Sun*, “High performance single In2Se3 nanowire photodetector”, Applied Physics Letters, 2011, 99(24): 243105. (selected by Virtual Journal of Nanoscale Science & Technology)
129. H. Zhu, Q. L. Li, X. J. She, and S. D. Wang*, “Surface roughening evolution in pentacene thin film growth”, Applied Physics Letters, 2011, 98(24): 243304.
130. Y. Yan, X. J. She, H. Zhu, and S. D. Wang*, “Origin of bias stress induced instability of contact resistance in organic thin film transistors”, Organic Electronics, 2011, 12(5): 823-826.
131. Que, Ronghui; Shao, Mingwang*; Chen, Tao; Xu, Hongyan; Wang, Suidong*; Lee, Shuit-Tong, “Diamond nanoparticles with more surface functional groups obtained using carbon nanotubes as sources”, Journal of Applied Physics, 2011, 110(5): 054321.
132. Mou, Zhigang; Chen, Xiaoye; Du, Yukou; Wang, Xiaomei; Yang, Ping*; Wang, Suidong*, “Forming mechanism of nitrogen doped graphene prepared by thermal solid-state reaction of graphite oxide and urea”, Applied Surface Science, 2011, 258(5): 1704-1710.
133. Mou, Zhigang; Dong, Yupei; Li, Shujin; Du, Yukou; Wang, Xiaomei; Yang, Ping*; Wang, Suidong*, “Eosin Y functionalized graphene for photocatalytic hydrogen production from water”, International Journal of Hydrogen Energy, 2011, 36(15): 8885-8893.
134. Que, Ronghui; Shao, Mingwang*; Wang, Suidong; Ma, Dorothy Duo Duo; Lee, Shuit-Tong.Silicon Nanowires with Permanent Electrostatic Charges for Nanogenerators.Nano Letters, 2011, 11(11): 4870-4873.
135. Peng, Chunzeng; Gao, Jing; Wang, Suidong; Zhang, Xiaohong*; Zhang, Xinping; Sun, Xuhui.Stability of Hydrogen-Terminated Surfaces of Silicon Nanowires in Aqueous Solutions.Journal of Physical Chemistry C, 2011, 115(10): 3866-3871.
136. Huang, Hui; Sun, Xuhui; Wang, Suidong; Liu, Yang; Li, Xiaorui; Liu, Jinglin; Kang, Zhenhui*; Lee, Shuit-Tong.Strong red emission of pure Y2O3 nanoparticles from oxygen related defects.Dalton Transactions, 2011, 40(43): 11362-11366.
138. S. D. Wang*, Y. Yan, and K. Tsukagoshi, “Understanding contact behavior in organic thin film transistors”, Applied Physics Letterss, 2010, 97(6): 63307.
139. S. D. Wang*, Y. Yan, and K. Tsukagoshi, “Transition voltage method for estimating contact resistance in organic thin film transistors”, IEEE Electron Device Letters, 2010, 31(5): 509-511.
140. Shen, Xiaojuan; Sun, Baoquan*; Yan, Feng; Zhao, Jie; Zhang, Fute; Wang, Suidong; Zhu, Xiulin; Lee, Shuittong.High-Performance Photoelectrochemical Cells from Ionic Liquid Electrolyte in Methyl-Terminated Silicon Nanowire Arrays.ACS Nano, 2010, 4(10): 5869-5876.
141. Miyadera, Tetsuhiko; Minari, Takeo; Wang, Sui-Dong; Tsukagoshi, Kazuhito.Pulsed Bias Stress in Pentacene Thin Film Transistors and Effect of Contact Material.Japanese Journal of Applied Physics, 2010, 49(1): 01AB03.
142. S. D. Wang*, T. Minari, T. Miyadera, K. Tsukagoshi*, and J. X. Tang, “Contact resistance instability in pentacene thin film transistors induced by ambient gases”, Applied Physics Letters, 2009, 94(8): 83309.
143. Tang, J. X.; Li, Y. Q.; Wang, S. D.; Lee, C. S.; Lee, S. T.Electronegativity equalization model for interface barrier formation at reactive metal/organic contacts.Applied Physics Letters, 2009, 95(17): 173303.
144. Minari, Takeo; Kano, Masataka; Miyadera, Tetsuhiko; Wang, Sui-Dong; Aoyagi, Yoshinobu; Tsukagoshi, Kazuhito.Surface selective deposition of molecular semiconductors for solution-based integration of organic field-effect transistors.Applied Physics Letters, 2009, 94(9): 093307.
145. S. D. Wang*, T. Miyadera, T. Minari, Y. Aoyagi, and K. Tsukagoshi*, “Correlation between grain size and device parameters in pentacene thin film transistors”, Applied Physics Letters, 2008, 93:043311.
146. S. D. Wang*, T. Minari, T. Miyadera, Y. Aoyagi, and K. Tsukagoshi*, “Bias stress instability in pentacene thin film transistors: Contact resistance change and channel threshold voltage shift”, Applied Physics Letters, 2008, 92:063305.
147. Miyadera, T.; Minari, T.; Wang, S. D.; Tsukagoshi, K.Dynamic bias stress current instability caused by charge trapping and detrapping in pentacene thin film transistors.Applied Physics Letters, 2008, 93(21): 213302.
148. S. D. Wang, T. Minari, T. Miyadera, K. Tsukagoshi*, and Y. Aoyagi, “Contact-metal dependent current injection in pentacene thin film transistors”, Applied Physics Letters, 2007, 91:203508.
149. S. D. Wang*, K. Kanai, Y. Ouchi, and K. Seki, “Bottom contact ambipolar organic thin film transistor and organic inverter based on C60/pentacene heterostructure”, Organic Electronics, 2006, 7, 457-464.
150. S. D. Wang*, K. Kanai, E. Kawabe, Y. Ouchi, and K. Seki, “Enhanced electron injection into tris(8-hydroxyquinoline) aluminum (Alq3) thin films by tetrathianaphthacene (TTN) doping revealed by current-voltage characteristics”, Chemical Physics Letters, 2006, 423, 170-173.
151. S. D. Wang*, K. Kanai, E. Kawabe, Y. Ouchi, and K. Seki, “Current characteristics of pristine and tetrathianaphthacene-doped tris(8-hydroxyquinoline) aluminum thin films”, Molecular Crystals & Liquid Crystals, 2006, 455, 339-346.
152. S. D. Wang, X. Dong, C. S. Lee, and S. T. Lee*, “Molecular orientation and film morphology of pentacene on native silicon oxide surface”, Journal of Physical Chemistry B, 2005, 109, 9892-9896.
153. S. D. Wang, X. Dong, C. S. Lee, and S. T. Lee*, “Orderly growth of copper phthalocyanine on highly oriented pyrolytic graphite (HOPG) at high substrate temperatures”, Journal of Physical Chemistry B, 2004, 108, 1529-1532.
154. S. D. Wang, M. K. Fung, S. L. Lai, S. W. Tong, C. S. Lee, S. T. Lee*, H. J. Zhang, and S. N. Bao, “Experimental study of a chemical reaction between LiF and Al”, Journal of Applied Physics, 2003, 94, 169-173.
155. Liu, Yang; Gao, Yiyuan; Yang, Qian; Xu, Gao; Zhou, Xingyu; Shi, Guozheng; Lyu, Xingyi; Wu, Hao; Liu, Jun; Fang, Shiwen; Ullah, Muhammad Irfan; Song, Leliang; Lu, Kunyuan; Cao, Muhan; Zhang, Qiao; Li, Tao; Xu, Jianlong; Wang, Suidong; Liu, Zeke*; Ma, Wanli*.Breaking the Size Limitation of Directly-Synthesized PbS Quantum Dot Inks Toward Efficient Short-wavelength Infrared Optoelectronic Applications.Angewandte Chemie - International Edition.
156. Sun, Qi-Jun; Wu, Jinxuan; Zhang, Meng; Yuan, Yu; Gao, Xu; Wang, Sui-Dong; Tang, Zhenhua*; Kuo, Chi-Ching*; Yan, Yan*.Enhanced Electrical Performance and Bias-Stress Stability of Solution-Processed Bilayer Metal Oxide Thin-Film Transistors.Physica Status Solidi A-Applications and Materials Science, 2200311.
157.楊陽, 王穗東, 郁秋亞. 政產(chǎn)學(xué)研用融合創(chuàng)新與高校創(chuàng)新能力提升的路徑突破——基于蘇州納米科技協(xié)同創(chuàng)新中心的案例研究[J]. 中國高?萍, 2020, (Z1): 96-99.
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會(huì)議論文:
[1]楊培培,徐勇,陳磊,王旭春,謝忠治,王穗東... & 張橋. (2016). 從銀核到銀殼:在氣相中發(fā)生的原位氧化刻蝕和還原過程. (eds.) 中國化學(xué)會(huì)第30屆學(xué)術(shù)年會(huì)摘要集-第三十一分會(huì):膠體與界面化學(xué) (pp.253).
2. 毛寶華; 王穗東*; 劉志*.利用近常壓光電子能譜研究銀納米團(tuán)簇的尺寸和襯底效應(yīng). (eds.) 中國化學(xué)會(huì)第29屆學(xué)術(shù)年會(huì)摘要集——第01分會(huì):表面物理化學(xué) (pp.80).
3. 高旭; 佘小健; 劉杰; 王穗東*.有機(jī)納米浮柵型非易失性存儲(chǔ)器. (eds.) 中國化學(xué)會(huì)第29屆學(xué)術(shù)年會(huì)摘要集——第17分會(huì):光電功能器件 (pp.3).
4. 劉長海; 王穗東*. 雙金屬納米顆粒催化活性的同步輻射表征研究. (eds.) 中國化學(xué)會(huì)第29屆學(xué)術(shù)年會(huì)摘要集——第34分會(huì):納米催化 (pp.21).
5. 李欽亮; 王穗東; 孫旭輝.高性能單根硒化銦納米線光探測器. (eds.) 中國化學(xué)會(huì)第28屆學(xué)術(shù)年會(huì)第11分會(huì)場摘要集 (pp.100).
6. Li, Q. L.*; Li, Y.; Gao, J.; Wang, S. D.; Sun, X. H. High Performance Single In2Se3 Nanowire Photodetector.25th International Vacuum Nanoelectronics Conference (IVNC), South Korea, 2012-07-09 to 2012-07-13.
榮譽(yù)獎(jiǎng)勵(lì):
1、江蘇省“青藍(lán)工程”優(yōu)秀教學(xué)團(tuán)隊(duì)。
2、獲國家級(jí)教學(xué)成果獎(jiǎng)二等獎(jiǎng)。
3、江蘇省級(jí)教學(xué)成果獎(jiǎng)特等獎(jiǎng)。
4、江蘇省級(jí)自然科學(xué)獎(jiǎng)二等獎(jiǎng)。
5、蘇州大學(xué)“高尚師德”獎(jiǎng)等獎(jiǎng)項(xiàng)。
6、入選江蘇省333高層次人才培養(yǎng)工程。
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