邓人仁
教授
个人简介
邓人仁,理学博士,长聘教授,博士生导师。 邓人仁,浙江大学求是特聘教授,国家“计划”科技创新领军人才,国家高层次青年人才计划,国家优秀青年科学基金获得者,国家重点研发计划青年首席科学家(稀土新材料专项)。担任中国稀土学会发光专业委员会和光电材料与器件专业委员会委员,中国颗粒学会发光颗粒专业委员会常务委员。2009年本科毕业于浙江大学化学系,2014年获得新加坡国立大学化学系博士学位,2014-2016年先后于新加坡国立大学化学系,英国剑桥大学卡文迪许实验室从事博士后研究工作。2016年受聘浙大计划研究员,随后加入浙江大学材料科学与工程学院。主要从事复合结构纳米发光材料的设计制备,以及微纳米结构能量转换器件的研究。重点开展稀土掺杂上转换发光纳米材料和其他结构组元进行复合结构构筑及可控合成研究,在上转换纳米材料的纳米光学特性上的高度可控技术方面,取得了若干具有开创性的原创成果。近年来在Nature, Nature Nanotech., Nature Photon., Nature Mater., Nature Chem., Chem等高水平国际学术期刊上发表论文40余篇。论文总引用超过10000余次。 研究方向 (1)稀土掺杂发光纳米材料的可控合成及生物医学应用; (2)纳米发光材料的复合结构构筑设计与制备; (3)纳米材料自主装及功能化器件设计。 教育经历 2009–2013 新加坡国立大学化学系,理学博士,导师刘小钢教授 博士研究论文“Functional Lanthanide-doped Upconversion Nanocrystals Optical Properties and Mechanism Study” 2005–2009 浙江大学理学院化学系,化学类,理学学士 研究工作经历 2024–至今 长聘教授 浙江大学材料与工程学院 2016–2023 研究员 浙江大学材料与工程学院 2015–2016 博士后研究员 剑桥大学卡文迪许实验室 2013–2015 博士后研究员 新加坡国立大学化学系 ---------------------------------------------------------------------------- 课题组招收博士后以及博士、硕士研究生,欢迎具有化学、材料、物理、光电工程等背景且有志从事稀土纳米材料相关研究的同学报考加盟,也欢迎对基础科学研究感兴趣的本科同学加入研究组参与科研项目。 联系方式 rdeng@zju.edu.cn 获奖情况 · 国家“计划”科技创新领军人才(2022) · Sturge Prize (International Conference on Dynamical Processes in Excited States of Solids, 2022) · 国家优秀青年基金获得者(2021) · 浙江省杰出青年项目资助 (2019) · 浙江大学“计划”资助 (2016) · Rising Star Award at CEMS International Symposium (RIKEN, Japan, 2014) · Best Poster Presentation at International Conference on Coordination Chemistry (ICCC) (Singapore, 2014) · 中国国家优秀自费留学生奖学金(2013)
研究领域
无机纳米化学 发光纳米材料 纳米生物医药 纳米光电
近期论文
2023 [39] J. Cai, J. Peng, J. Feng, R. Li, P. Ren, X. Zang, Z. Wu, Y. Lu, L. Luo, Z. Hu, J.-Y. Wang, X. Dai, P. Zhao, J. Wang, M. Yan, J. Liu, R. Deng*, D. Wang*, "Antioxidant hepatic lipid metabolism can be promoted by orally administered inorganic nanoparticles", Nature Commun. 14, 3643 (2023). [38] K. R. Mun, J. Kyhm, J. Y. Lee, S. Shin, Y. Zhu, G. Kang, D. Kim, R. Deng*, H. S. Jang*, "Elemental-migration-assisted full-color-tunable upconversion nanoparticles for video-rate three-dimensional volumetric displays", Nano Lett. 23, 3014-3022 (2023). [37] D. Cen, Q. Zheng, B. Zheng, R. Zhou, X. Xiao, T. Zhang, Z. Huang, T. Yan, J. Yu*, X. Li*, R. Deng*, X. Cai*, “A near-infrared light-responsive ROS cascade nanoplatform for synergistic therapy potentiating antitumor immune responses”, Adv. Funct. Mater. 33, 2211402 (2023). 2022 [36] J. Cai, J. Peng, X. Zang, J. Feng, R. Li, P. Ren, B. Zheng, J.Y. Wang, J. Wang, M. Yan, J. Liu, R. Deng*, D. Wang*, “Mammary leukocyte-assisted nanoparticle transport enhances targeted milk trace mineral delivery”, Adv. Sci. 9, 2200841 (2022). [35] W. Chen, Y. Song, W. Zhang, R. Deng, Y. Zhuang*, R. Xie*, “Time-gated imaging of latent fingerprints with level 3 details achieved by persistent luminescent fluoride nanoparticles”, ACS Appl. Mater. Interfaces 14, 28230-28238 (2022). [34] X. Xiao, B. Zheng, Q. Zheng, Z. Lu, D. Cen, X. Cai, X. Li*, R. Deng*, “NIR light-triggered peroxynitrite anion production via direct lanthanide-triplet photosensitization for enhanced photodynamic therapy”, J. Mater. Chem. B 10, 4501-4508 (2022). [33] B. Zheng, J. Fan, B. Chen, X. Qin, J. Wang*, F. Wang*, R. Deng*, X. Liu*, “Rare-earth doping in nanostructured inorganic materials”, Chem. Rev. 122, 5519-5603 (2022). 2021 [32] H. Xu*, S. Han, R. Deng, Q. Su, Y. Wei, Y. Tang, X. Qin*, X. Liu*, “Anomalous upconversion amplification induced by surface reconstruction in lanthanide sublattices”, Nature Photon. 15, 732-737 (2021). [31] B. Zheng#, D. Zhong#, T. Xie#, J. Zhou#, W. Li, A. Ilyas, Y. Lu, M. Zhou*, R. Deng*, “Near-infrared photosensitization via direct triplet enrgy transfer from lanthanide nanoparticles”, Chem, 7, 1615-1625 (2021). [30] Y. Zhuang*, D. Chen, W. Chen, W. Zhang, X. Su, R. Deng, Z. An, H. Chen, R. Xie*, “X-ray-charged bright persistent luminescence in NaYF4:Ln3+@NaYF4 nanoparticles for multidimensional optical information storage”, Light Sci. Appl., 10, 132 (2021). [29] X. Wang, C. Li, Z. Li, X. Ma, D. Chen, X. Wan, Z. Deng, R. Deng*, X. Peng*, “Near-infrared-light emitting diode driven white light emission: upconversion nanoparticles decorated metal-organic frame-works thin film”, Chem. Eng. J., 409, 128220 (2021). [28] Q. Cao, A. Ilyas, S. Zhang, Z. Ju, F. Sun, T. Liu, Y. M. Yang, Y. Lu*, X. Liu*, R. Deng*, “Lanthanide-doping enables kinetic control growth of deep-blue two-monolayer halide perovskite nanoplatelets”, Nanoscale, 13, 11552-11560 (2021). [27] A. Ilyas, H. Wu*, T. Usman, S. A. Khan*, R. Deng*, “The induction of half-metallicity and enhanced ferromagnetism in a Cr2Ge2Te6 monolayer via electron doping and alkali metal adsorption”, J. Mater. Chem. C, 9, 5952-5960 (2021). [26] A. Ilyas, S. Xiang, M. Chen*, M. Y. Khan, H. Bai*, P. He, Y. Lu, R. Deng*, “Nonvolatile electrical control of 2D Cr2Ge2Te6 and intrinsic half metallicity in multiferroic hetero-structures”, Nanoscale, 13, 1069-1076 (2021). 2020 [25] S. Han, R. Deng*, Q. Gu, L. Ni, U. Huynh, J. Zhang, Z. Yi, B. Zhao, H. Tamura, A. Pershin, H. Xu, Z. Huang, S. Ahmad, M. Abdi-Jalebi, A. Sadhanala, M. L. Tang, A. Bakulin, D. Beljonne, X. Liu*, A. Rao*, “Lanthanide-doped inorganic nanoparticles turn molecular triplet excitons bright”, Nature, 587, 594-599 (2020). [24] J. Zhou, C. Li, D. Li, X. Liu, Z. Mu, W. Gao, J. Qiu, R. Deng*, “Single-molecule photoreaction quantitation through intraparticle-surface energy transfer (i-SET) spectroscopy”, Nature Commun. 11, 4297 (2020). [23] J. Wang, H. Wang, S. Zuo, X. Jin, B. Zheng, R. Deng*, W. Liu, J. Wang*, “Synergistic effects of lanthanide surface adhesion and photon-upconversion for enhanced near-infrared responsive photodegradation of organic contaminants in wastewater”, Environ. Sci. Nano, 7, 3333-3342 (2020).