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徐洪波
姓名 徐洪波 性别 徐洪波
学校 哈尔滨工业大学 部门 化工与化学学院
学位 徐洪波 学历 徐洪波
职称 联系方式 18346032764
邮箱 iamxhb@hit.edu.cn    
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徐洪波

基本信息(Personal information) 科学研究(Research) 教育教学(Teaching) 论文专著(Publication) 新建主栏目 基本信息 名称 2020.01-至今 哈尔滨工业大学 副教授 2011.07-2019.12 哈尔滨工业大学 讲师 教育经历 标题 起讫时间 2002.09-2006.07 所学专业 应用化学 学习机构 吉林大学 学历 本科 简单介绍 标题 起讫时间 2006.09-2011.12 所学专业 物理化学 学习机构 吉林大学 学历 博士 简单介绍 标题 起讫时间 2012.09-2014.09 所学专业 材料工程与科学学院 学习机构 新加坡南洋理工 学历 博士后 简单介绍 主要任职 任职名称 超材料学会青年委员 任职时间 2019-2022 简单介绍 科研项目 名称 1. MOF光子晶体的构筑及其用于识别分子尺寸和手性的研究,国家自然基金面上项目,59万,2021-2024,主持 2. 介孔光子晶体传感器的制备及其对有机同系物识别的研究,国家自然基金青年基金项目,23万,2018-2020,主持 3. 介孔光子晶体传感器的可控制备及制备机理研究,中国博士后科学基金面上资助,5万,2016-2018,主持 4. 微纳米复合抗反射结构构筑及其光伏性能研究,黑龙江省博士后资助,5万,2016-2018,主持。 讲授课程 名称 本科生课程:分离工程 32学时 本科生课程:光电转换薄膜与器件 20学时 硕士生课程:化工系统工程 16学时 招生信息 名称 表面微结构结构加工及热辐射调控 MOF光子晶体制备及传感器性能研究 发表论文 名称 Xin Li, Zhenmin Ding, Jiupeng Zhao*, Lorenzo Pattelli*, Hongbo Xu* Recent progress in organic-based radiative cooling materials: fabrication methods and thermal management properties, Materials Advances, 2023, 4, 804. Zhenmin Ding, Xin Li, Hulin Zhang, Dukang Yan, J′er′emy Werl′e, Ying Song, Lorenzo Pattelli ,*, Jiupeng Zhao, Hongbo Xu*, Yao Li * Robust radiative cooling via surface phonon coupling-enhanced emissivity from SiO2 micropillar arrays,International Journal of Heat and Mass Transfer 2024,220, 125004 Zhenmin Ding, Honglin Li, Xin Li, Xueying Fan, Juliana Jaramillo-Fernandez, Lorenzo Pattelli,* Jiupeng Zhao, Shichao Niu, Yao Li,* and Hongbo Xu*,Designer SiO2 Metasurfaces for Efficient Passive RadiativeCooling, Adv. Mater. Interfaces 2023, 2300603(1-14). Xueying Fan, Miao Xu, Lorenzo Pattelli*, Aleksandr Kuchmizhak*,Yao Li*,Hongbo Xu* Resolving molecular size and homologues with a self-assembled metal-organic framework photonic crystal sensor, ACS Mateials Letter, 2023, 5, 1703?1709 Xin Li, Jiupeng Zhao*, Hongbo Xu*, Yao Li*, et al., Strain-adjustable Reflectivity of Polyurethane Nanofiber Membrane for Thermal Management Applications. Chemical Engineering Journal, 2023, 142095. Zhenmin Ding, Yao Li*, Hongbo Xu* A Review of the development of colored radiative cooling surfaces, Carbon Capture Science & Technology 2022, 4 100066. Zhenmin Ding, Hongbo Xu*, Yao Li*, Ronggui Yang*, et al., Daytime Radiative Cooling with No Absorption Peaks in the Visible Range, Small, 2022, online. Qun Zhang, Hongbo Xu*, Lei Pan, Aleksandr Kuchmizhak*, Lei Wang, A Highly loaded, excellent recyclable nanosheet catalyst Au@mesoporous SiO2, Applied Organometallic Chemistry, 2022 online. Mengyao Pan, Hongbo Xu*, Jiupeng Zhao*, Yao Li*, Dual Optical Information-Encrypted/Decrypted InvisiblePhotonic Patterns Based on Controlled Wettability, Advanced Optical Materials, 2022, 10, 2101268 Zhongping Yao, Kunlun Yu, Mengyao Pan, Hongbo Xu *, et al., A mechanically durable, excellent recyclable 3D hierarchical Ni3S2@Ni foam photothermal membrane, Green Energy & Environment, 2022, 3,492-499. Shuliang Dou#, Hongbo Xu#(共同一作), Yao Li*, et al., Bio-inspired micro-structured materials for optical and thermal regulation, Advance Materials, 2020, Online, DOI: 10.1002/adma.202000697 Liuting Gong, Miao Xu, Renping Ma*, Gang Shi*, Hongbo Xu*, High-performance Supercapacitor Based on MOF Derived Porous NiCo2O4 nanoparticle, Sci China Tech Sci, 2020, 63, 1470-1477. M. Y. Pan, X. B. Li, Hongbo Xu*, Jiupeng Zhao*, Yao Li*, et al., Robust and flexible colloidal photonic crystal films with bending strain-independent structural colors for anti-counterfeiting, Particle and Particle Systems Characterization, 2020, 1900495(1-8). Sheng Yu Zhou, Hongbo Xu*, Jiupeng Zhao*, et al., Electrochromic Supercapacitor Based on MOF Derived Hierarchical-Porous NiO Film, Nanoscale, 2020, 12, 8934-8941. Hongbo Xu, Liuting Gong, Shengyu Zhou, et al., Enhancing the electrochromic stability of Prussian blue based on TiO2 nanorod arrays, New Journal of Chemistry, 2020, 44, 2236-2240. Hongbo Xu, Lliuting Gong, Shengyu Zhang, et al., Biomimetic moth-eye anti-reflective poly-(methyl methacrylate) nanostructural coating, Journal of Bionic Engineering, 2019, 16, 1030-1038. Hongbo Xu, Lingxiao Liu, et al., Emission Enhancement of Fluorescent Molecules by Antireflective Arrays, Research, 2019, 3495841(1-8). Chunxia Hua#, Hongbo Xu#(共同一作), et al., Bionic SiO2@Fc(COCH3)2 core-shell nanostructure for enhancing the electrochromic properties of ferrocene, Chemical Engineering Journal, 2019, 360, 591-599. Hongbo Xu, Shuong Bao, et al., Superhydrophobic engineering materials provide a rapid and simple route for highly efficient self-driven crude oil spill cleanup, RSC Advances, 2018, 38363-38369. Chengjia Xiong, Hongbo Xu*, Yao Li*, et al., Trace detection of homologues and isomers based on hollow mesoporous silica sphere photonic crystals, Materials Horizons, 2017, 862-868. Xintong Zhang, Hongbo Xu*, Wei Wang*, et al., Robust phosphate capture over inorganic adsorbents derived from lanthanum metal organic frameworks, Chemical Engineering Journal, 2017, 326, 1086-1094. Haowei Yang, Yao Li*, Hongbo Xu,* J. P. Zhao*, et al., A visual water vapor photonic crystal sensor with PVA/SiO2 opal structure, Applied Surface Science, 2017, 423, 421-425. Hongbo Xu, Lingxiao Liu, et al., Fabrication of biomimetic patterns for high transmission and antifogging property, RSC Advances, 2015, 28014-28018. Jian Hao, Hongbo Xu*, Jiupeng Zhao, et al, Ionic liquid electrodeposition of germanium/carbon nanotube composite anode material for lithium ion batteries, Material Letters, 2015, 144, 50-53. Hongbo Xu, Nan Lu*, D. P. Qi, L. F. Chi*, et al., Biomimetic antireflective hierarchical arrays, Langmuir, 2011, 27, 4963-4967. Hongbo Xu, Nan Lu*, Dianpeng Qi, Lifeng Chi*, et al., Broadband antireflective Si nanopillar arrays produced by nanosphere lithography, Microelectronic Engineering, 2009, 86, 850-852. Hongbo Xu, Nan Lu*, L. F. Chi, et al., Biomimetic antireflective Si nanopillar arrays, Small, 2008, 4, 1972-1975. 专利 名称 [1] 徐洪波;李垚;赵九蓬;杨昊巍 “一种快速高灵敏的光子晶体湿度传感器的制备方法”中国 ZL201610227483.8 [2] 徐洪波;张群;赵九蓬;李垚 “一种单分散钴镍复合的MOF-74的制备方法”ZL201611021525.9 [3] 徐洪波;韩莹平;赵九蓬;李垚“一种泡沫镍上原位生长Ni-MOF-74的方法”ZL2017110958646 [4] 徐洪波;巩柳婷;赵九蓬;李垚 “一种ZIF-8光子晶体传感器的制备方法”中国 CN201910012088.1