教师个人主页

王晓栋

  • 副教授
  • 教师英文名称: Xiaodong Wang
  • 教师拼音名称: wangxiaodong
  • 电子邮箱:
  • 学科:物理学
    凝聚态物理
  • 2020当选:同济大学优秀硕士学位论文指导教师
  • 2014-12-31曾获荣誉当选:上海市晨光计划

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个人简介

王晓栋,博士,副教授,博士生导师,Gels》期刊编委和客座编辑,《材料工程》《航空材料学报》青年编委。主要从事轻质纳米多孔气凝胶和薄膜材料在光学、热学、力学等方面的研究。近年来在耐高温气凝胶、生物质气凝胶、气凝胶的功能化、化学法减反膜、新型纳米材料的拉曼光谱、SERS研究方面取得了许多重要进展,在Adv. Mater.、Adv. Funct. Mater.ACS NanoChem. Mater.CEJACS AMI等高水平期刊发表论文百余篇,申请并授权国家发明专利十余项。主持国家自然科学基金面上项目、青年项目、上海市自然科学基金面上项目、上海航天科技创新基金重点项目等科研项目十余项,作为主要骨干参与国家重点研发计划重点专项、国家科技支撑计划等重大科研项目多项,并入选2014年度上海市晨光人才计划。

代表性论文:

[1]     X. Zhang, X. Wang*, J. Zeng, Z. Zhang, S. Zhao*, J. Shen, Evolution-driven bio-composite aerogels for self-adaptive thermal regulation and energy storage, Adv. Mater., 2026, 38(45): e73935.

[2]     B. Zhou, X. Wang*, Y. Tian, X. Zhang, Y. Wang, Z. Zhang, J. Shen, Chitosan-templated ultrahigh temperature resistant and compressible alumina aerogels, Chem. Eng. J., 2026, 529: 172930.

[3]     X. Wang*, Y. Wang, Z. Zhang, Z. Zhao, T. Liu, Y. Tian, X. Zhang, S. Burkule, W. J. Malfait, S. Zhao*, Z. Zhang, J. Shen*, Strong and ultrahigh temperature-resistant metal oxide nanobelt aerogels, Adv. Funct. Mater., 2025, 35(5): 2414592.

[4]     C. Li, X. Wang*, C. Zhang, Z. Zhang, B. Zhou, J. Shen, Elastic, flexible, and tough hierarchical polyimide aerogels with dynamic reversible physical entanglement structure, Chem. Eng. J., 2025, 509:161429.

[5]     Y. Liu, X. Wang*, C. Zhang, X. Zhang, Z. Zhang, Y. Wang, B. Zhou, J. Shen, Seed strategy synthesis of porous NASICON structured NaTi2(PO4)3/carbon aerogel nanocomposites for high-performance hybrid capacitive deionization, Sep. Purif. Technol., 2025, 354: 129092.

[6]     X. Wang*, C. Zhang, H. Jiang, H. Wang, J. Shen, Nano-silica-based double-layer antireflective coatings with mildew resistance and moisture resistance for KDP Crystals, Small Methods, 2024, 8 (12): 2400544.

[7]     Y. Wang, S. Xi, B. Zhou, G. Zu, X. Liang, X. Zhang, J. Shen, X. Wang*, Superhydrophobic highly flexible triple-network polyorganosiloxane-based aerogels for thermal insulation, oil-water separation and strain/pressure sensing, ACS Appl. Mater. Interfaces, 2024, 16 (23): 30324–30335.

[8]     C. Zhang, H. Wang, J. Shen, X. Wang*, Dominant factors for moisture resistance of sol–gel silica coatings: Surface chemical composition or inner microstructure?, Appl. Surf. Sci., 2024, 642: 158616.

[9]     X. Zhang, X. Wu, X. Wang*, Y. Liu, B. Zhou, Y. Wang, Q. Zhu, J. Shen*, Core-shell Fe3O4@carbon aerogels assembled aqueous zinc-ion hybrid supercapacitor with ultra-wide voltage window, J. Energy Storage, 2023, 72: 108798.

[10]  S. Xi, Y. Wang, X. Zhang, K. Cao, J. Su, J. Shen*, X. Wang*, Fire-resistant polyimide-silica aerogel composite aerogels with low shrinkage, low density and high hydrophobicity for aerospace applications, Polym. Test., 2023, 129: 108259.

[11]  X. Wang*, Z. Zhang, Y. Wang, W. J. Malfait, S. Zhao*, Y. Tian, T. Liu, X. Zhang, A. Du, J. Shen*, Flexible, high-temperature-resistant silica-polymer aerogel hybrids by templating polymethylsilsesquioxane microstructure with trace polyimide, Adv. Compos. Hybrid Mater., 2023, 6 (1): 32. (ESI高被引2023)

[12]  C. Zhang, H. Zhao, Y. Su, H. Wang, J. Shen*, X. Wang*, Embedding constructed broadband refractive index graded antireflective coating with high abrasion resistance and environmental stability for polycarbonate glass, J. Colloid Interf. Sci., 2022, 680: 13–21.

[13]  Z. Zhang, X. Wang*, T. Liu, L. Liu, C. Yu, Y. Tian, X. Zhang, J. Shen*, Al3+ coordinated chitosan hydrogel with ultrahigh water absorbency and environmental response, Mater. & Des., 2022, 214: 110390.

[14]  X. Wang*, Y. Tian, C. Yu, L. Liu, Z. Zhang, Y. Wu, J. Shen*, Organic/inorganic double-precursor cross-linked alumina aerogel with high specific surface area and high-temperature resistance, Ceram. Int., 2022, 48 (12): 17261–17269.

[15]  C. Feng, X. Wang*, J. Yang, S. Xi, M. Jia, J. Shen*, Silver nanoparticle-decorated chitosan aerogels as three-dimensional porous surface-enhanced Raman scattering substrates for ultrasensitive detection, ACS Appl. Nano Mater., 2022, 5 (4): 5398–5406.

[16]  G. Zu*, K. Kanamori, X. Wang*, K. Nakanishi, J. Shen. Superelastic triple-network polyorganosiloxane-based aerogels as transparent thermal superinsulators and efficient separators, Chem. Mater., 2020, 32 (4): 1595–1604.

[17]  G. Zu*, X. Wang*, K. Kanamori, K. Nakanishi. Superhydrophobic highly flexible doubly cross-linked aerogel/carbon nanotube composites as strain/pressure sensors, J. Mater. Chem. B, 2020, 8(22): 4883–4889.

[18]  X. Wang*, H. Zhao, Y. Su, C. Zhang, C. Feng, Q. Liu, J. Shen*. Low-temperature preparation of mechanically robust and contamination-resistant antireflective coatings for flexible polymeric glasses via embedding of silica nanoparticles and HMDS modification, ACS Appl. Mater. Interfaces, 2019, 11 (40): 37084–37093.

[19]  X. Wang*, H. Zhao, Y. Cao, Y. Su, H. Hui*, J. Shen*. Surface free energy and microstucture dependent environmental stability of sol–gel SiO2 antireflective coatings: effect of combined vapor phase surface treatment, J. Colloid Interf. Sci., 2019, 555: 124–131.

[20]  Z. Zhang, X. Wang*, G. Zu*, K. Kanamori, K. Nakanishi, J. Shen*. Resilient, fire-retardant and mechanically strong polyimide-polyvinylpolymethylsiloxane composite aerogel prepared via stepwise chemical liquid deposition, Mater. & Des., 2019, 183: 108096.

[21]  C. Zhang, X. Wang*, H. Wang, X. Wu, J. Shen*. A positive-negative alternate adsorption effect for capacitive deionization in nano-porous carbon aerogel electrodes to enhance desalination capacity, Desalination, 2019, 458: 45–53.

[22]  W. Zou, X. Wang*, Y. Yang, Y. Wu, G. Zu, L. Zou, J. Shen*. Porous alumina aerogel with tunable pore structure for facile, ultrasensitive and reproducible SERS platform, J. Raman Spectrosc., 2019, 50 (10): 1429–1437.

[23]  W. Zou, X. Wang*, Y. Wu, G. Zu, L. Zou, D. Chen, J. Shen*. Opacifier embedded and fiber reinforced alumina-based aerogel composites for ultra-high temperature thermal insulation, Ceram. Int., 2019, 45 (1): 644–650.

[24]  X. Wang*, H. Zhao, Y. Cao, Y. Niu, J. Shen*. Sol–Gel preparation of laser damage resistant and moisture-proof antireflective coatings for KDP crystals, Langmuir, 2018, 34 (35): 10262–10269.

[25]  B. Tian, X. Wang*, Y. Niu, J. Zhang, Q. Zhang, Z. Zhang, G. Wu, B. Zhou, J. Shen. Preparation and stress evolution of sol-gel SiO2 antireflective coatings for small-size anisotropic lithium triborate crystals, AIP Adv., 2016, 6 (4): 045208.

[26]  G. Zu*, J. Shen, L. Zou, F. Wang, X. Wang*, Y. Zhang, X. Yao. Nanocellulose-derived highly porous carbon aerogels for supercapacitors, Carbon, 2016, 99: 203–211. (ESI高被引2021–2022)

[27]  X. Wang*, I. Zardo*, D. Spirkoska, S. Yazji, K. W. Ng, W. S. Ko, C. J. Chang-Hasnain, J. J. Finley, G. Abstreiter. Valence band splitting in wurtzite InGaAs nanoneedles studied by photoluminescence excitation spectroscopy, ACS Nano, 2014, 8 (11): 11440–11446.

[28]  X. Wang*, G. Wu, B. Zhou, J. Shen*. Improvement on laser-induced damage threshold of sol-gel ZrO2 coatings by crystal structure tuning, Opt. Express, 2012, 20 (22): 24482–24487.

[29]  X. Wang, J. Shen*. A review of contamination-resistant antireflective sol-gel coatings, J. Sol-Gel Sci. Technol., 2012, 61 (1): 206–212.

[30]  X. Wang, J. Shen* and Q. Pan. Raman spectroscopy of sol–gel derived titanium oxide thin films, J. Raman Spectrosc., 2011, 42 (7): 1578–1582.

[31]  X. Wang, J. Shen*. Sol–gel derived durable antireflective coating for solar glass, J. Sol-Gel Sci. Technol., 2010, 53 (2): 322–327.

教育经历

[1] 2010.6 -- 2011.6
德国慕尼黑工业大学       Walter Schottky Institute 访问博士生( 欧盟Erasmus-TANDEM 奖学金) 导师:德国国家科学与工程院院士:Prof. Gerhard Abstreiter

[2] 2007.9 -- 2012.3
同济大学       材料物理与化学       博士研究生毕业       博士学位

[3] 2003.9 -- 2007.6
电子科技大学       无线电技术       大学本科毕业       学士学位

工作经历

[1] 2014.3 -- 至今
同济大学

[2] 2012.4 -- 2014.3
同济大学      师资博士后

社会兼职

[1] 2024.8 -- 至今
《Gels》Board Member,Special Issue Editor

[2] 2020.1 -- 至今
《材料工程》青年编委