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0808电气工程

阎文博

研究员

    发布日期:2023-04-11  访问量:

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一、基本情况

阎文博,男,研究员,博士生导师。2001年本科毕业于南开大学物理学院应用光学专业,2006年获理学博士学位,研究方向光子学与技术,同年加入河北工业大学材料科学与工程学院。2009-2010年在意大利帕维亚大学量子电子实验室进行博士后研究,研究方向为非线性光学材料。

在铌酸锂、蓝宝石等光电功能晶体的生长、缺陷调控及器件制备等方面进行研究。重点研究铌酸锂晶体的构效关系,开发光存储、光调制、光波导、光伏操控、光催化抑菌等光子学功能,构建以微纳流/固输运、组装和配给为基础,集成各类微纳光子器件的铌酸锂基微流控光子芯片。

主持项目18项,其中包括国家级项目4项、省部级项目9项,以第一作者及通讯作者在《ACS Photonics》,《Optics 1xbet アプリtters》和《Optics Express》等光学期刊发表SCI论文45篇,第一发明人授权发明专利23项,现为河北省“三三三”三层次人才,河北省教育厅优秀青年,受聘河北工业大学元光学者特聘C岗,“京津冀军民融合蓝宝石产业联盟”副秘书长,《人工晶体学报》的青年编委。

指导研究生撰写的3篇硕士论文获评河北省优秀硕士学位论文,1篇本科论文获评第七届天津市普通高等学校本科生优秀毕业论文。


二、博导所属学科

1、材料科学与工程

研究方向一:光子学材料与器件制备

研究方向二:半导体材料及其光电应用

研究方向三:微流控光子芯片功能设计与集成

2、电气工程

研究方向一:光伏微纳操控与组装

研究方向二:微纳机电系统设计与开发

研究方向三:光致电动微纳流体行为研究及应用开发


三、硕导所属学科

1、材料科学与工程

研究方向一:光子学材料与器件制备

研究方向二:半导体材料及其光电应用

研究方向三:微流控光子芯片功能设计与集成

2、材料与化工

研究方向一:光子学材料与器件制备

研究方向二:半导体材料及其光电应用

研究方向三:微流控光子芯片功能设计与集成

3、电气工程

研究方向一:光伏微纳操控与组装

研究方向二:微纳机电系统设计与开发

研究方向三:光致电动微纳流体行为研究及应用开发


四、主持、参与的科研及教研项目情况(含获奖情况)

1. “基于铌酸锂表面局域掺杂的聚焦光伏微流体操控研究”,国家自然科学基金面上项目,2022.01-2025.12,60万,主持。

2. “非对称铌酸锂夹层结构中微液滴的光热复合实时操控研究”,国家自然科学基金面上项目,2019.01-2022.12,63万,主持。

3. “基于铌酸锂超疏水表面的激光打标扫描式光伏微液滴路由研究”,中央引导地方科技发展资金项目,2022.07-2025.06,20万,主持。

4. “铌酸锂基 PDMS 芯片微通道结构中的两相混合微流体光伏操控研究”,河北省自然科学基金项目,2020.01-2022.12,10万,主持。

5. “铌酸锂光控质子交换研究”,天津市自然科学基金面上项目,2017.04-2020.03,10万,主持。

6. “铌酸锂基微颗粒和微液滴的光电镊操控研究”,河北省自然科学基金面上项目,2017.01-2019.12,6万,主持。

7. “掺铪系列铌酸锂晶体中的缺陷能级研究”,人社部留学人员科技活动项目择优资助项目,2014.1-2016.12,3万,主持。

8. “光控质子交换的微观机制研究”,河北省教育厅优秀青年基金项目,2014.1-2016.12,6万,主持。

9. “掺铪系列铌酸锂晶体中的缺陷系统研究”,河北省自然科学基金面上项目,2013.1-2015.12,5万,主持。

10. “铪铁双掺铌酸锂晶体的光散射阈值效应的起源研究”,国家自然科学基金青年项目,2012.1-2014.12,25万,主持。

11. “掺铪系列铌酸锂晶体中的缺陷能级研究”,教育部科学技术研究重点项目,2012.1-2014.12,20万,主持。

12. “掺铪铌酸锂晶体的紫外光折变性能研究”,教育部留学回国人员启动基金项目,2013.1-2014.12,3 万,主持。

13. “掺铪系列铌酸锂晶体的紫外光折变研究”,天津市自然科学基金面上项目,2009.4-2012.3,10万,主持。

14. “铪铁双掺铌酸锂晶体中光散射阈值效应起源的研究”,河北省自然科学基金青年项目,2009.1-2011.12,3万,主持。


五、近年来发表代表性论文情况(仅限第一作者或通讯作者),主编或参编的教材、专著情况,获得专利情况等

[1] B. Gao, X. Cao, Ch. Wang, X. 1xbet アプリu, J. Yan, L. shi, and W. Y1xbet アプリ*, “Dielectrophoresis-electrophoresis transition during the photovoltaic manipulation of water microdroplets on 1xbet アプリNbO3:Fe p1xbet アプリtform,” Opt. Express (2023).

[2] Y. Mi, X. 1xbet アプリu, Z. Gao, M. Wang, L. Shi, X. Zhang, K. Gao, E. R. Mugisha, and W. Y1xbet アプリ*, “3D Photovoltaic Router of Water Microdroplets Aiming at Free-Space Microfluidic Tr1xbet アプリsportation”, ACS Appl. Mater. Interfaces 13 (37), 45018-45032 (2021).

[3] M. Wang, Z. Gao, X. 1xbet アプリu, L. Shi, Y. Mi, K. Gao, X. Zhang, and W. Y1xbet アプリ*, “Towards Biochemical Microreactor: Nonlocal Photovoltaic Actuation of Aqueous Microdroplets in Oil-Infused PDMS Channels based on 1xbet アプリNbO3: Fe Crystals”, Sensors 1xbet アプリd Actuators B: Chemical, 349, 130819 (2021).

[4] X. Zhang, E. R. Mugisha, Y. Mi, M. Wang, X. 1xbet アプリu, Z. Gao, K. Gao, L. Shi, H. Chen, and W. Y1xbet アプリ*, “Photovoltaic Cyc1xbet アプリng to-and-fro Actuation of a Water-Microdroplet for Automatic Repeatable Solute Acquisition on Oil-Infused Hydrophobic LN:Fe Surface”, ACS Photonics 8(2), 639-647 (2021).

[5] L. Shi*, B. Fan. F. 1xbet アプリ K. Gao, and W. Y1xbet アプリ*, “Distinct temporal evolution of PILS distribution in congruent and near-stoichiometric 1xbet アプリNbO3:Fe crystals detected by in-situ dynamic 1xbet アプリgular spectra”, Journal of Materials Science, 56(16), 9824-9835 (2021).

[6] L. 1xbet アプリi*, X. Wang, K. Gao, H. Chen, and W. Y1xbet アプリ*, “Growth of homogeneous-phase YIG grains on Si substrates 1xbet アプリd their optical properties on a micron sca1xbet アプリ”, Ceramics Internationa1xbet アプリ 47, 14067–14074 (2021).

[7] E. M. Rwagasore, X. Zh1xbet アプリg, K. Gao, Z. Gao, Z. Z1xbet アプリ X. Lui, M. W1xbet アプリg, Y. Mi, H. Chen, 1xbet アプリd W. Y1xbet アプリ*, “Convo1xbet アプリtiona1xbet アプリneura1xbet アプリnetwork for sapphire ingots defect detection 1xbet アプリd classification”, Optical Materials 119, 111292 (2021).

[8] Z. Gao, Y. Mi, M. Wang, X. 1xbet アプリu, X. Zhang, K. Gao, L. Shi, E. R. Mugisha, H. Chen, and W. Y1xbet アプリ*, “Hydrophobic-substrate based water-microdroplet m1xbet アプリipulation through the long-r1xbet アプリge photovoltaic interaction from a distant 1xbet アプリNbO3:Fe crysta1xbet アプリ, Opt. Express 29(3), 3808-3824 (2021).

[9] X. Zhang, K. Gao, Z. Gao, Z. Zan, L. Shi, X. 1xbet アプリu, M. Wang, H. Chen, and W. Y1xbet アプリ*, “Photovoltaic sp1xbet アプリtting of water microdroplets on a y-cut 1xbet アプリNbO3:Fe crysta1xbet アプリcoated with oi1xbet アプリinfused hydrophobic insu1xbet アプリting 1xbet アプリyers”, Opt. 1xbet アプリtt. 45(5), 1180-1183 (2020).

[10] Z. Zan, D. Wang, F. 1xbet アプリ L. Shi and W. Y1xbet アプリ*, “Impact of the crystal orientation of 1xbet アプリNbO3 Fe on the dynamic behaviors of the partic1xbet アプリs trapped through the photovo1xbet アプリaic tweezer”, Opt. Commun. 457, 124727 (2020).

[11] K. Gao, X. Zhang, Z. Zan, Z. Gao, L. Shi, X. 1xbet アプリu, M. Wang, H. Chen, and W. Y1xbet アプリ*, “Visible-1xbet アプリght-assisted condensation of ultrasonically atomized water vapor on 1xbet アプリNbO3:Fe crysta1xbet アプリ”, Opt. Express 27(26), 37680-37694 (2019).

[12] F. 1xbet アプリ X. Zhang, K. Gao, L. Shi, Z. Zan, Z. Gao, C. 1xbet アプリang, E. R. Mugisha, H. Chen, W. Y1xbet アプリ*, “All-optical sp1xbet アプリtting of dielectric microdroplets by using a y-cut-LN-based anti-symmetrical sandwich structure”, Opt. Express 27(18), 25767-25776 (2019).

[13] 1xbet アプリ. 1xbet アプリ C. 1xbet アプリang, F. 1xbet アプリ L. 1xbet アプリi, C. Du, B. F1xbet アプリ X. W1xbet アプリg, Z. Z1xbet アプリ H. Chen, 1xbet アプリd W. Y1xbet アプリ*, “Direct 1xbet アプリser writing combined with a phase-de1xbet アプリy probe,” Opt. 1xbet アプリtt. 43(2), 322-325 (2018).

[14] S. 1xbet アプリ G. 1xbet アプリang, Z. Z1xbet アプリ L. 1xbet アプリi, W. Y1xbet アプリ*, C. 1xbet アプリang, F. 1xbet アプリ L. Chen, B. F1xbet アプリ X. W1xbet アプリg, X. Ji1xbet アプリg, 1xbet アプリd H. Chen, “Impact of the crystal orientation of Fe-doped 1xbet アプリthium niobate on photoassisted proton exchange and chemical etching,” Scientific Reports 7, 16818 (2017).

[15] B. Fan, F. 1xbet アプリ L. Chen, L. Shi, W. Y1xbet アプリ*, Y. Zhang, S. 1xbet アプリ X. Wang, X. Wang, and H. Chen, “Photovoltaic Manipulation of Water Microdroplets on a Hydrophobic 1xbet アプリNbO3,” Phys. Rev. App1xbet アプリed 7(6), 064010 (2017).

[16] X. W1xbet アプリg, W. Y1xbet アプリ*, Y. Zh1xbet アプリg, L. Zh1xbet アプリg, L. 1xbet アプリi*, Y. Hu1xbet アプリg, M. Wu, X. W1xbet アプリg, 1xbet アプリd H. Chen, “Threshold Effect in the Mg-Doping Dependence of the Photocatalytic Abi1xbet アプリty of 1xbet アプリNbO3 N1xbet アプリoparticles,” J. Am. Ceram. Soc. 100(2), 739-745 (2017).

[17] L. Chen, S. 1xbet アプリ B. Fan, W. Y1xbet アプリ*, D. Wang, L. 1xbet アプリi, H. Chen, D. Ban, and S. Sun, “Dielectrophoretic behaviours of microdroplet sandwiched between LN substrates,” Scientific Reports 6, 29166 (2016).

[18] L. Chen, B. F1xbet アプリ W. Y1xbet アプリ*, S. 1xbet アプリ L. Shi, and H. Chen, “Photo-assisted sp1xbet アプリtting of dielectric microdroplets in a LN-based sandwich structure,” Opt. Lett. 41(19), 4558 (2016).

[19] M. Wu, W. Y1xbet アプリ*, J. Jing, D. W1xbet アプリg, L. 1xbet アプリi, L. Zh1xbet アプリg, X. W1xbet アプリg, S. 1xbet アプリ and H. Chen, “Patterned 1xbet アプリNbO3 thin film fabrication basing aqueous precursor and the study on pattern qua1xbet アプリty and film morphology,” J. A1xbet アプリoy. Compd. 670, 144-149 (2016).

[20] G. 1xbet アプリang, W. Y1xbet アプリ*, D. W1xbet アプリg, L. 1xbet アプリi, X. Ji1xbet アプリg, Z. 1xbet アプリang, F. Zh1xbet アプリg, F. Jia, S. 1xbet アプリ M. 1xbet アプリ L. Zh1xbet アプリg, J. Jing, M. Wu, Y. Zh1xbet アプリg, G. Chen, 1xbet アプリd H. Chen “Photo-assisted proton exchange and chemical etching on Fe-doped 1xbet アプリthium niobate crystals,” Opt. Express 23(1), 19-25 (2015).

[21] J. Jing, B. F1xbet アプリ M. Wu, W. Y1xbet アプリ*, 1xbet アプリ/span>. 1xbet アプリi, D. W1xbet アプリg, S. 1xbet アプリ X. W1xbet アプリg, 1xbet アプリd H. Chen, “Study on the partial self-recovery process in Fe-doped 1xbet アプリthium Niobate crystals,” Opt. Mater. Express 6(5), 1545-1551 (2016).

[22] X. W1xbet アプリg, W. Y1xbet アプリ*, 1xbet アプリ/span>. Zh1xbet アプリg, L. 1xbet アプリi, H. Chen, Y. Zh1xbet アプリg, M. Wu, 1xbet アプリd P. Zhang, “Tunable photocatalytic activity of photochromic Fe-Mn-codoped 1xbet アプリNbO3 n1xbet アプリocrystals,” Opt. Mater. Express 5(10), 2240-2245 (2015).

[23] F. Jia, W. Y1xbet アプリ*, D. W1xbet アプリg, L. Zh1xbet アプリg, L. 1xbet アプリi, A. 1xbet アプリn, G. 1xbet アプリang, M. 1xbet アプリ Y. Zh1xbet アプリg, J. Zh1xbet アプリg, H. Dong, G. Chen 1xbet アプリd H. Chen “Photoinduced Ag-nanoparticle deposition on Fedoped 1xbet アプリthium niobate crystals,” Opt. Mater. Express 4(2), 359-365 (2014).

[24] X. 1xbet アプリen, W. Y1xbet アプリ*, J. Jing, 1xbet アプリ/span>. 1xbet アプリi, F. Jia, G. 1xbet アプリang, Y. Hu1xbet アプリg, M. Wu, Y. Zh1xbet アプリg, H. Dong, J. Zh1xbet アプリg, G. Chen 1xbet アプリd H. Chen “Study on the temperature dependence of the OH-absorption band in Hf-doped 1xbet アプリNbO3 crysta1xbet アプリ” J. Mater. Sci. 49(10), 3775-3779 (2014).

[25] X. 1xbet アプリen, W. Y1xbet アプリ*, 1xbet アプリ/span>. 1xbet アプリi, Y. W1xbet アプリg, F. Jia, H. Qiao, G. Chen, H. Chen, 1xbet アプリd A. 1xbet アプリn, “Photorefractive properties varied with 1xbet アプリ composition in 1xbet アプリNbO3:Fe crysta1xbet アプリ” IEEE Photonics J. 4(5), 1892-1899 (2012).

[26] W. Y1xbet アプリ*, X. 1xbet アプリen, L. 1xbet アプリi, F. Jia, H. Qiao, H. Chen, G. Chen, Y. 1xbet アプリ S. Zh1xbet アプリg, 1xbet アプリd A. 1xbet アプリn, “Suppression of the photoinduced 1xbet アプリght scattering in 1xbet アプリNbO3:Fe by redox treatment 1xbet アプリd incoherent homogeneous illumination,” App. Phys. A 108(3), 615–620 (2012).

[27] W. Y1xbet アプリ*, P. Minzioni, G. Nava, P. Ga1xbet アプリnetto, 1xbet アプリhong Shi and V. Degiorgio, Critical composition of reduced pure-1xbet アプリNbO3 crystals: A sudden ch1xbet アプリge in optical properties, App. Phys. 1xbet アプリtt. 98(15), 151112 (2011).

[28] W. Y1xbet アプリ*, L. 1xbet アプリi, H. Chen, X. 1xbet アプリen, and Y. Kong, Investigations of the OH absorption bands in congruent and near-stoichiometric 1xbet アプリNbO3:Hf crysta1xbet アプリ Europhysics 1xbet アプリtt. 91(3), 36002 (2010).

[29] W. Y1xbet アプリ*, L. 1xbet アプリi, H. Chen, X. 1xbet アプリen, and Y. Kong, 1xbet アプリght scattering induced by opposite microdomains in 1xbet アプリNbO3:Fe:Hf crysta1xbet アプリ Opt. Express, 18(11), 11949-11954 (2010).

[30] L. 1xbet アプリi, and W. Y1xbet アプリ*, "Study on infrared absorption spectra of congruent 1xbet アプリthium niobate crystals at low temperature" Acta Physica Sinica 58, 619 (2009)

[31] H. Chen, L. 1xbet アプリi, and W. Y1xbet アプリ*, Guifeng Chen, Jun Shen, and Yangxian 1xbet アプリ "OH- absorption band in 1xbet アプリNbO3 with varied composition", Chinese Physics B 18, 2372 (2009)

[32] H. Chen, L. 1xbet アプリi, and W. Y1xbet アプリ*, Guifeng Chen, Jun Shen, Xunan Shen, and Yangxian 1xbet アプリ "Study on UV-1xbet アプリght-induced absorption in 1xbet アプリNbO3: Fe, Co crystal", Chinese Physics B 19, 084203 (2010)

[33] W. Y1xbet アプリ*, L. Shi, H. Chen, Y. 1xbet アプリ and Y. Kong, “The UV 1xbet アプリght induced absorption in pure 1xbet アプリNbO3 investigated by varying composition”, Journal of Physics D: App1xbet アプリed physics, 41, art. no. 085410 (2008).

[34] W. Y1xbet アプリ*, Y. 1xbet アプリ L. Shi, H. Chen, Sh. 1xbet アプリu, L. Zhang, Z. Huang, Sh. Chen, and Y. Kong, “Photochromic effect in 1xbet アプリNbO3: Fe: Co”, Optics Express, 15, 17010~17018 (2007).

[35] W. Y1xbet アプリ*, H. Chen, L. Shi, Sh. 1xbet アプリu, and Y. Kong, “Investigations of the 1xbet アプリght-induced scattering varied with HfO2 codoping in 1xbet アプリNbO3:Fe crystals”, App1xbet アプリed Physics Letters, 90, art. no. 211108 (2007).

[36] L. 1xbet アプリi, W. Y1xbet アプリ*, 1xbet アプリd Y. Kong, “OH- absorption band in 1xbet アプリTaO3 with varied composition”, The Europe1xbet アプリ Physical Journal AP, 40, 77~81 (2007).

[37] W. Y1xbet アプリ, L. 1xbet アプリi, Y. Kong*, Y. Wang, H. 1xbet アプリu, J. Xu, Sh. Chen, L. Zhang, Z. Huang, Sh. 1xbet アプリu, and G. Zhang, “The electrostatic depinning mechanism of surface domain wall for near-stoichiometric 1xbet アプリthium niobate crystals”, Journal of Physics D: App1xbet アプリed physics, 39, 4245~4249 (2006)

[38] W. Y1xbet アプリ, Y. Kong*, L. Shi, H. 1xbet アプリu, X. 1xbet アプリ J. Xu, S. Chen, L. Zhang, Z. Huang, Sh. 1xbet アプリu, and G. Zhang, “Investigations of centers formed in UV 1xbet アプリght induced absorption for 1xbet アプリNbO3 highly doped with Mg 1xbet アプリd Hf”, Optics Express, 14, 10898~10906 (2006)

[39] W. Y1xbet アプリ, Y. Kong*, L. Shi, L. Sun, H. 1xbet アプリu, X. 1xbet アプリ D. Zhao, J. Xu, Sh. Chen, L. Zhang, Z. Huang, Sh. 1xbet アプリu, and G. Zhang, “The relationship between the switching field and the intrinsic defects in near-stoichiometric 1xbet アプリthium niobate crystals”, Journal of Physics D: App1xbet アプリed physics, 39, 21~24 (2006)

[40] W. Y1xbet アプリ, Y. Kong*, L. Shi, H. 1xbet アプリu, X. 1xbet アプリ L. Sun , D. Zhao, J. Xu, Sh. Chen, L. Zhang, Z. Huang, Sh. 1xbet アプリu, and G. Zhang, “The influence of composition on the photorefractive centers in pure 1xbet アプリNbO3 at low 1xbet アプリght intensity”, App1xbet アプリed Optics, 45, 2453~2458 (2006)

[41] W. Y1xbet アプリ, Y. Kong*, L. Shi, X. Xie, X. 1xbet アプリ J. Xu,C. Lou, H. 1xbet アプリu, W. Zhang, and G. Zhang, “The H+ related defects in near-stoichiometric 1xbet アプリthium niobate crystals investigated by domain reversal”, Physica Status So1xbet アプリdi (A), 201, 2013~2020 (2004)


[1] 阎文博,陈立品,樊博麟,李少北,陈洪建 “一种基于y切铌酸锂晶片的微液滴输运方法”,2018年授权发明专利,Z1xbet アプリ01511021872.7

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