侯仰龙 照片

侯仰龙

教授

所属大学: 中山大学

所属学院: 材料学院

邮箱:
hou@mail.sysu.edu.cn

个人主页:
https://materials.sysu.edu.cn/teacher/549

个人简介

教育背景 1996.09 – 1998.07,哈尔滨工业大学,应用化学,硕士 1998.09 – 2000.10,哈尔滨工业大学,材料学,博士 工作履历 2000.10–2002.10,北京大学化学与分子工程学院,博士后 2002.10–2005.10,东京大学化学系,JSPS外国人研究员 2005.10–2007.11,布朗大学化学系,博士后研究助理 2007.12–2012.06,北京大学工学院,特聘研究员 2012.07–2020.12,北京大学工学院,长聘教授 2021.01–2023.05,北京大学材料科学与工程学院,长聘教授 2015.01–2019.12,北京大学,教育部国家级高层次人才 2020.01–2023.05,北京大学,博雅特聘教授 2023.05– 至今,中山大学材料学院,讲席教授

研究领域

(1) 材料设计合成:维数可控(异质)纳米材料的化学合成及其磁学、电磁吸波性能 (2) 生物医用材料:磁性纳米颗粒的功能化及其在医学成像与疾病治疗等领域的应用 (3) 新型能源材料:高效能量存储和转换应用先进纳米结构的设计、构筑与自旋调控研究

近期论文

Q. Wang, Y. Zeng, K. Yuan, Q. Zeng, P. Gu, X. Xu, H. Wang, Z. Han, K. Nomura, W. Wang, E. Liu*, Y. Hou*, and Y. Ye*,Magnetism Modulation in Co3Sn2S2 by Current-assisted Domain Wall Motion, Nat. Electron., 6 (2023), 119–125. Z. Zhao, Z. Fang, X. Han, S. Yang, C. Zhou, Y. Zeng, B. Zhang, W. Li, Z. Wang, Y. Zhang, J. Zhou, J. Zhou, Y. Ye, X. Hou, X. Zhao*, S. Gao, and Y. Hou*, A general thermodynamics-triggered competitive growth model to guide the synthesis of two-dimensional nonlayered materials. Nat. Commun. 4 (2023), 958. B. Zhang, Y. Zhu, Y. Zeng, Z. Zhao, X. Huang, D. Qiu, Z. Fang, J. Wang, J. Xu, R. Wang, S. Gao, and Y. Hou*, General Approach for Two-Dimensional Rare-Earth Oxyhalides with High Gate Dielectric Performance, J. Am. Chem. Soc., 145 (2023), 19758−19769. Z. Sun, T. Wang, J. Wang, J. Xu, T. Shen, T. Zhang, B. Zhang, S. Gao, C. Zhao, M. Yang, F. Sheng, J. Yu*, and Y. Hou*, Self-propelled Janus Nanocatalytic Robots Guided by Magnetic Resonance Imaging for Enhanced Tumor Penetration and Therapy, J. Am. Chem. Soc., 145 (2023), 11019–11032. Z. Wang, S. Wang, X. Zhang, Z. Li, Z. Ali, D. Yu, H. Zhang, F. Sheng, S. Gao, and Y. Hou*, Temperature and tumor microenvironment dual responsive mesoporous magnetic nanospheres for magnetothermal effect induced cancer theranostics, CCS Chem., 5 (2023), 469–485. H. Tian, Y. Ma, Z. Li, M. Cheng, S. Ning, E. Han, M. Xu, P. Zhang, K. Zhao, R. Li, Y. Zou , P. Liao, S. Yu, X. Li, J. Wang, S. Liu, Y. Li, X. Huang, Z. Yao, D. Ding, J. Guo, Y. Huang, J. Lu, Y. Han, Z. Wang, Z. Cheng, J. Liu, Z. Xu, K. Liu, P. Gao, Y. Jiang, L. Lin, X, Zhao, L. Wang, X. Bai, W. Fu, J. Wang, M. Li, T. Lei, Y. Zhang, Y. Hou, J. Pei, S. Pennycook, E. Wang, J. Chen*, W. Zhou*, and L. Liu*, Disorder-tuned conductivity in amorphous monolayer carbon, Nature, 615 (2023), 56-61. B. Zhang, C. Yun, H. Wu, Z. Zhao, Y. Zeng, D. Liang, T. Shen, J. Zhang, X. Huang, J. Song, J. Xu, Q. Zhang, P. Tan, S. Gao, and Y. Hou*, Two-Dimensional Wedge-Shaped Magnetic EuS: Insight on the Substrate Step-Guided Epitaxial Synthesis on Sapphire, J. Am. Chem. Soc., 144 (2022), 19758−19769. M. Bian, L. Zhu, X. Wang, J. Choi, S. Wei, L. Wu, Ch. Huai, A. Marga, Q. Yang, F, Yao, T. Yu, S. A. Crooker, X. Cheng, R. F. Sabirianov, S. Zhang, J. Lin*, Y. Hou*, and H. Zeng*, Dative Epitaxy of Commensurate Monocrystalline Covalent-van der Waals moiré Supercrystal, Adv. Mater., 34 (2022), 2200117. W. Li, X. Qiu, B. Lv, B, Zhang, J. Tang, J. Xu, K. Tian, Z. Zhao, Y. Zeng, X. Huang, H. Du, and Y. Hou*, Free-standing 2D ironene with magnetic vortex structure at room temperature, Matter, 5 (2022), 291−301. Z. Zhao, J. Zhou, L. Liu, N. Liu, J. Huang, B. Zhang, W. Li, Y. Zeng, T. Zhang, W. Ji, T. Yang*, Z. Zhang, S. Li*, and Y. Hou*, Two-dimensional room-temperature magnetic nonstoichiometric Fe7Se8 Nanocrystals: controllable synthesis and magnetic behavior, Nano Lett., 22 (2022), 1242–1250. J. Xu, W. Li, B. Zhang, L. Zha, W. Hao, S. Hu, J. Yang, S, Li, S. Gao, and Y. Hou*, Free-standing 2D non-van der Waals antiferromagnetic hexagonal FeSe semiconductor: halide-assisted chemical synthesis and Fe2+ related magnetic transitions, Chem. Sci., 13 (2022), 203−209. S. Wang, Z. Wang, Z. Li, X. Zhang, H. Zhang, T. Zhang, X. Meng, F. Sheng, and Y. Hou*, Amelioration of systemic antitumor immune responses in cocktail therapy by immunomodulatory nanozymes, Sci. Adv., 8 (2022), eabn3883. S. Wang, J. Xu, W. Li, S. Sun, S. Gao, and Y. Hou*, Magnetic nanostructures: rational design and fabrication strategies toward diverse applications, Chem. Rev., 122 (2022), 5411−5475. J. Wang, Z. Sun, S. Wang, C. Zhao, J. Xu, S. Gao, M. Yang, F. Sheng, S Gao, and Y. Hou*, Biodegradable Ferrous Sulfide-Based Nanocomposites for Tumor Theranostics through Specific Intratumoral Acidosis-Induced Metabolic Symbiosis Disruption, J. Am. Chem. Soc., 144 (2022), 19884−19895. Z. Sun, Z. Wang, T. Wang, J. Wang, H. Zhang, Z. Li, S. Wang, F. Sheng, J. Yu, and Y. Hou*, Biodegradable MnO-based nanoparticles with engineering surface for tumor therapy: simultaneous fenton-like ion delivery and immune activation, ACS Nano, 16, (2022), 11862–11875. J. Zhou*, W. Zhang, Y. Lin, J. Cao, Y. Zhou, W. Jiang, H. Du, B. Tang, J. Shi, B. Jiang, X. Cao, B. Lin, Q. Fu, C. Zhu, W. Guo, Y. Huang, Y. Yao, S. S. P. Parkin, J. Zhou, Y. Gao, Y. Wang, Y. Hou, Y. Yao*, K. Suenaga*, X. Wu*, and Z. Liu*, Heterodimensional superlattice with in-plane anomalous Hall effect, Nature, 609 (2022), 46–51. H. Zhao, J. X. Liu, C. Yang, S. Yao, HY. Su, Z. Gao, M. Dong, J. Wang, and Y. Hou*, W. Li *, and D. Ma*, Synthesis of iron-carbide nanoparticles: identification of the active phase and mechanism of Fe-based fischer–tropsch synthesis, CCS Chem., 3 (2021), 2712−2724. Z. Yang, H. Zhang, J. Xu, R. Ma, T. Sasaki, Y. Zeng, S. Ruan, and Y. Hou*, Anisotropic Fluoride Nanocrystals Modulated by Facet-Specific Passivation and Their Disordered Surfaces, Natl. Sci. Rev., 7 (2020), 841–848. K. Tian, J. Wang, L. Cao, W. Yang, W. Guo*, S. Liu, W. Li, F. Wang, X. Li, Z Xu, Z Wang, H. Wang*, and Y. Hou*, Single-site pyrrolic-nitrogen-doped sp2-hybridized carbon materials and their pseudocapacitance, Nat. Commun., 11 (2020), 3884. Z. Wang, Z. Li, Z. Sun, S. Wang, Z. Ali, S. Zhu, S. Liu, Q. Ren, F. Sheng, B. Wang, and Y. Hou*, Visualization nanozyme based on tumor microenvironment “unlocking” for intensive combination therapy of breast cancer, Sci. Adv., 6 (2020), eabc8733.