基本信息

朱锋锋 男 硕导 中国科学院上海微系统与信息技术研究所
电子邮件: f.zhu@mail.sim.ac.cn
通信地址: 上海市长宁路865号
邮政编码: 200050
电子邮件: f.zhu@mail.sim.ac.cn
通信地址: 上海市长宁路865号
邮政编码: 200050
研究领域
朱锋锋青年研究员长期从事低维拓扑材料和二维磁性材料领域研究工作,利用多种晶体生长手段探索磁性与拓扑量子材料的融合方式,并结合衍射、能谱学等方法研究磁性拓扑体系的原子结构、电子结构、磁结构及其他新奇拓扑物态。
代表性科研成果一:类石墨烯二维晶体锡烯生长及其能带结构研究
实现了类石墨烯二维原子晶体锡烯薄膜外延生长并确定其原子和电子结构, 为锡烯的实验研究推开了大门【 Nat. Mat. 14, 1020 (2015)】
代表性科研成果二:玻色磁子二维拓扑绝缘体
实现拓扑能隙可调潜力的玻色磁子“二维拓扑绝缘体”,为无耗散磁 振子学器件研发提供了新的平台。【Sci. Adv. 7, abi7532 (2021)】
代表性科研成果三:磁性拓扑材料的磁结构及其调控
发现了 反铁磁二维 Dirac半金属中磁性子晶格间强耦合 的证据, 为实现拓扑材料中磁结构调控的提供了新思路。 【 Phys. Rev. Res. 2, 043100 (2020)】
招生信息
招生专业
080903-微电子学与固体电子学
招生方向
类石墨烯二维材料,二维磁性材料,磁性拓扑材料及其异质结构
教育背景
2011-09--2017-06 上海交通大学 博士2007-09--2011-06 上海交通大学 学士
工作经历
工作简历
2022-02~现在, 中国科学院上海微系统与信息技术研究所, 青年研究员2021-02~2021-12,上海交通大学, 兼职2017-11~2020-11,德国于利希研究中心, 博士后
出版信息
发表论文
[1] Kunya Yang, Hong Wu, Zefang Li, Chen Ran, Xiao Wang, Fengfeng Zhu, Xiangnan Gong, Yan Liu, Guiwen Wang, Long Zhang, Xinrun Mi, Aifeng Wang, Yisheng Chai, Yixi Su, Wenhong Wang, Mingquan He, Xiaolong Yang, Xiaoyuan Zhou. Spin-Phonon Scattering-Induced Low Thermal Conductivity in a van der Waals Layered Ferromagnet Cr2Si2Te6. Advanced Functional Materials[J]. 2023, https://onlinelibrary.wiley.com/doi/10.1002/adfm.202302191.[2] Qingyong Ren, Mayanak K. Gupta, Min Jin, Jingxuan Ding, Jiangtao Wu, Zhiwei Chen, Siqi Lin, Oscar Fabelo, Jose Alberto Rodríguez-Velamazán, Maiko Kofu, Kenji Nakajima, Marcell Wolf, Fengfeng Zhu, Jianli Wang, Zhenxiang Cheng, Guohua Wang, Xin Tong, Yanzhong Pei , Olivier Delaire, Jie Ma. Extreme phonon anharmonicity underpins superionic diffusion and ultralow thermal conductivity in argyrodite Ag8SnSe6. Nature Materials[J]. 2023, https://www.nature.com/articles/s41563-023-01560-x.[3] Vasudevan, Rathinam, Zhang, Lijuan, Ren, Qingyong, Wu, Jiangtao, Cheng, Zhengxiang, Wang, Jianli, Lin, Siqi, Zhu, Fengfeng, Zhang, Yao, Holzel, Markus, Pei, Yanzhong, Tong, Xin, Ma, Jie. Secondary phase effect on the thermoelectricity by doping Ag in SnSe. JOURNAL OF ALLOYS AND COMPOUNDS[J]. 2022, 923: http://dx.doi.org/10.1016/j.jallcom.2022.166251.[4] Shen, Jingdong, Jiang, Wenxiang, Zhu, Fengfeng, Wang, Guanyong, Li, Huayao, Zhao, Gan, Li, Qian, Yan, Wensheng, Yang, Wanli, Chuang, YiDe, Jia, Jinfeng, Qian, Dong, Wray, L Andrew, Miao, Lin. Robust Fe divalent state in one-unit-cell FeSe/SrTiO3 thin films. PHYSICAL REVIEW B[J]. 2022, 106(24): [5] Jiangtao Wu, Jianshu Li, Zheng Zhang, Changle Liu, Yong Hao Gao, Erxi Feng, Guochu Deng, Qingyong Ren, Zhe Wang, Rui Chen, Embs Jan Peter, Fengfeng Zhu, Qing Huang, Ziji Xiang, Lu Chen, Yan Wu, E.S. Choi, Zhe Qu, Lu Li, Junfeng Wang, Haidong Zhou, Yixi Su, Xiaoqun Wang, Gang Chen, Qingming Zhang, Jie Ma. Magnetic field effects on the quantum spin liquid behaviors of NaYbS2. Quantum Frontiers[J]. 2022, https://link.springer.com/article/10.1007/s44214-022-00011-z.[6] Zhang, LiChuan, Zhu, Fengfeng, Go, Dongwook, Lux, Fabian R, dos Santos, Flaviano Jose, Lounis, Samir, Su, Yixi, Bluegel, Stefan, Mokrousov, Yuriy. Interplay of Dzyaloshinskii-Moriya and Kitaev interactions for magnonic properties of Heisenberg-Kitaev honeycomb ferromagnets. PHYSICAL REVIEW B[J]. 2021, 103(13): http://dx.doi.org/10.1103/PhysRevB.103.134414.[7] Su, Yixi, Zhu, Fengfeng, Wang, Xiao. Topology Meets Correlation: Neutron Scattering from Correlated Topological Materials. NEUTRON NEWS[J]. 2021, 32(4): 23-25, https://doi.org/10.1080/10448632.2021.1997310.[8] Wu, Peng, Xia, Kang, Peng, Kunling, Honda, Takashi, Ikeda, Kazutaka, Liu, Fengguang, Vallobra, Pierre, Fan, Fengren, Song, Jiuhui, Zhang, Deming, Yu, Fanghang, Ying, Jianjun, Zhu, Fengfeng, Otomo, Toshiya, Kamiyama, Takashi, Zhao, Weisheng. Strong anharmonicity in tin monosulfide evidenced by local distortion, high-energy optical phonons, and anharmonic potential. PHYSICAL REVIEW B[J]. 2021, 103(19): http://dx.doi.org/10.1103/PhysRevB.103.195204.[9] Zhu, Fengfeng, Zhang, Lichuan, Wang, Xiao, dos Santos, Flaviano Jose, Song, Junda, Mueller, Thomas, Schmalzl, Karin, Schmidt, Wolfgang F, Ivanov, Alexandre, Park, Jitae T, Xu, Jianhui, Ma, Jie, Lounis, Samir, Bluegel, Stefan, Mokrousov, Yuriy, Su, Yixi, Brueckel, Thomas. Topological magnon insulators in two-dimensional van der Waals ferromagnets CrSiTe3 and CrGeTe3: Toward intrinsic gap-tunability. SCIENCE ADVANCES[J]. 2021, 7(37): [10] Liu, Benqiong, Wang, Liming, Radelytskyi, Igor, Zhang, Yun, Meven, Martin, Deng, Hao, Zhu, Fengfeng, Su, Yixi, Zhu, Xiegang, Tan, Shiyong, Schneidewind, Astrid. Neutron scattering study of commensurate magnetic ordering in single crystal CeSb2. JOURNAL OF PHYSICS-CONDENSED MATTER[J]. 2020, 32(40): http://dx.doi.org/10.1088/1361-648X/ab9bcd.[11] Yang, Meng, Yi, Changjiang, Zhu, Fengfeng, Wang, Xiao, Yan, Dayu, Miao, Shanshan, Su, Yixi, Shi, Youguo. Physical properties and magnetic structure of a layered antiferromagnet PrPd0.82Bi2. CHINESE PHYSICS B[J]. 2020, 29(6): 479-486, http://lib.cqvip.com/Qikan/Article/Detail?id=7102153228.[12] Schiavone, MariaMaddalena, Lamparelli, David Hermann, Zhao, Yue, Zhu, Fengfeng, Revay, Zsolt, Radulescu, Aurel. The Effects of Temperature and Humidity on the Microstructure of Sulfonated Syndiotactic-polystyrene Ionic Membranes. MEMBRANES[J]. 2020, 10(8): https://doaj.org/article/7951dce8f4fb419882086c3af335c47c.[13] Zhu, Fengfeng, Wang, Xiao, Meven, Martin, Song, Junda, Mueller, Thomas, Yi, Changjiang, Ji, Wenhai, Shi, Youguo, Ma, Jie, Schmalzl, Karin, Schmidt, Wolfgang F, Su, Yixi, Brueckel, Thomas. Magnetic structures, spin-flop transition, and coupling of Eu and Mn magnetism in the Dirac semimetal EuMnBi2. PHYSICALREVIEWRESEARCH[J]. 2020, 2(4): http://dx.doi.org/10.1103/PhysRevResearch.2.043100.[14] Jiang, Wenxiang, Zhu, Fengfeng, Li, Ping, Li, Yunlong, Wang, Guohua, Jing, Qiang, Gao, Wenshuai, Tian, Mingliang, Ma, Jie, Zhang, Wentao, Luo, Weidong, Qian, Dong. Electronic structure of non-centrosymmetric PtBi2 studied by angle-resolved photoemission spectroscopy. JOURNAL OF APPLIED PHYSICS[J]. 2020, 128(13): http://dx.doi.org/10.1063/5.0020622.[15] Fu, Chenguang, Yao, Mengyu, Chen, Xi, Maulana, Lucky Zaehir, Li, Xin, Yang, Jiong, Imasato, Kazuki, Zhu, Fengfeng, Li, Guowei, Auffermann, Gudrun, Burkhardt, Ulrich, Schnelle, Walter, Zhou, Jianshi, Zhu, Tiejun, Zhao, Xinbing, Shi, Ming, Dressel, Martin, Pronin, Artem, V, Snyder, G Jeffrey, Felser, Claudia. Revealing the Intrinsic Electronic Structure of 3D Half-Heusler Thermoelectric Materials by Angle-Resolved Photoemission Spectroscopy. ADVANCED SCIENCE[J]. 2020, 7(1): https://doaj.org/article/c825952d22c44ced9eae5a6aa3cb98d7.[16] Jing, Qiang, Jiang, Wenxiang, Yang, ZhongQiang, Wang, J. F., Yao, Mengyu, Zhu, Fengfeng, Li, Y. L., Li, S. B., Hu, J. Y., Xu, C. H., Liu, B., Qian, Dong. Topological phase transition of Bi(2–x)In(x)Te-3. EPL[J]. 2020, 128(3): 37001-, https://iopscience.iop.org/article/10.1209/0295-5075/128/37001.[17] Cheng, Yao, Brenk, Janik, Friedrich, Bernd, Persson, Joerg, Maraytta, Nour, Gibson, James S KL, KorteKerzel, Sandra, Roth, Georg, Su, Yixi, Zhu, Fengfeng, Paulrnann, Carsten, Grzechnik, Andrzej. Ni-Cr-Al Alloy for neutron scattering at high pressures. MATERIALS SCIENCE AND TECHNOLOGY[J]. 2020, 36(9): 949-954, http://dx.doi.org/10.1080/02670836.2019.1578077.[18] Miao, Ping, Wang, Rui, Zhu, Weiming, Liu, Jiajie, Liu, Tongchao, Hu, Jiangtao, Li, Shuankui, Tan, Zhijian, Koda, Akihiro, Zhu, Fengfeng, Feng, Erxi, Su, Yixi, Kamiyama, Takashi, Xiao, Yinguo, Pan, Feng. Revealing magnetic ground state of a layered cathode material by muon spin relaxation and neutron scattering experiments. APPLIED PHYSICS LETTERS[J]. 2019, 114(20): https://www.webofscience.com/wos/woscc/full-record/WOS:000470153700020.[19] Zhou, Y, Miao, L, Wang, P, Zhu, F F, Jiang, W X, Jiang, S W, Zhang, Y, Lei, B, Chen, X H, Ding, H F, Zheng, Hao, Zhang, W T, Jia, Jinfeng, Qian, Dong, Wu, D. Antiferromagnetic Order in Epitaxial FeSe Films on SrTiO3. PHYSICAL REVIEW LETTERS[J]. 2018, 120(9): http://dx.doi.org/10.1103/PhysRevLett.120.097001.[20] Zhu, Fengfeng, Jiang, W X, Li, P, Yang, Z Q, Man, H Y, Li, Y Y, Liu, Canhua, Guan, Dandan, Jia, JinFeng, Ning, F L, Luo, Weidong, Qian, Dong. Electronic structure of Ba (Zn0.875Mn0.125)(2)As-2. APPLIED PHYSICS LETTERS[J]. 2017, 111(6): http://dx.doi.org/10.1063/1.4998450.[21] Sun, HaoHua, Wang, MeiXiao, Zhu, Fengfeng, Wang, GuanYong, Ma, HaiYang, Xu, ZhuAn, Liao, Qing, Lu, Yunhao, Gao, ChunLei, Li, YaoYi, Liu, Canhua, Qian, Dong, Guan, Dandan, Jia, JinFeng. Coexistence of Topological Edge State and Superconductivity in Bismuth Ultrathin Film. NANO LETTERS[J]. 2017, 17(5): 3035-3039, http://dx.doi.org/10.1021/acs.nanolett.7b00365.[22] Yao, MengYu, Zhu, Fengfeng, Han, C Q, Guan, D D, Liu, Canhua, Qian, Dong, Jia, Jinfeng. Topologically nontrivial bismuth(111) thin films. SCIENTIFIC REPORTS[J]. 2016, 6: https://www.webofscience.com/wos/woscc/full-record/WOS:000370371700006.[23] Zhu, Fengfeng, Chen, Weijiong, Xu, Yong, Gao, Chunlei, Guan, Dandan, Liu, Canhua, Qian, Dong, Zhang, ShouCheng, Jia, Jinfeng. Epitaxial growth of two-dimensional stanene. NATURE MATERIALS[J]. 2015, 14(10): 1020-+, http://dx.doi.org/10.1038/NMAT4384.[24] Han, C Q, Li, H, Chen, W J, Zhu, Fengfeng, Yao, MengYu, Li, Z J, Wang, M, Gao, Bo F, Guan, D D, Liu, Canhua, Gao, C L, Qian, Dong, Jia, JinFeng. Electronic structure of a superconducting topological insulator Sr-doped Bi2Se3. APPLIED PHYSICS LETTERS[J]. 2015, 107(17): https://www.webofscience.com/wos/woscc/full-record/WOS:000364234200011.[25] Miao, Lin, Yao, MengYu, Ming, Wenmei, Zhu, Fengfeng, Han, C Q, Wang, Z F, Guan, D D, Gao, C L, Liu, Canhua, Liu, Feng, Qian, Dong, Jia, JinFeng. Evolution of the electronic structure in ultrathin Bi(111) films. PHYSICAL REVIEW B[J]. 2015, 91(20): https://www.webofscience.com/wos/woscc/full-record/WOS:000354365100004.[26] Yu, D J, Yang, F, Miao, Lin, Han, C Q, Yao, MengYu, Zhu, Fengfeng, Song, Y R, Zhang, K F, Ge, J F, Yao, X, Zou, Z Q, Li, Z J, Gao, B F, Liu, Canhua, Guan, D D, Gao, C L, Qian, Dong, Jia, Jinfeng. Fully gapped s-wave-like superconducting state and electronic structure in Ir0.95Pd0.05Te2 single crystals with strong spin-orbital coupling. PHYSICAL REVIEW B[J]. 2014, 89(10): http://dx.doi.org/10.1103/PhysRevB.89.100501.[27] Han, C Q, Yao, M Y, Bai, X X, Miao, Lin, Zhu, Fengfeng, Guan, D D, Wang, Shun, Gao, C L, Liu, Canhua, Qian, Dong, Liu, Y, Jia, Jinfeng. Electronic structure of black phosphorus studied by angle-resolved photoemission spectroscopy. PHYSICAL REVIEW B[J]. 2014, 90(8): https://www.webofscience.com/wos/woscc/full-record/WOS:000341257100001.[28] Miao, Lin, Wang, Z F, Yao, MengYu, Zhu, Fengfeng, Dil, J H, Gao, C L, Liu, Canhua, Liu, Feng, Qian, Dong, Jia, JinFeng. Orbit- and atom-resolved spin textures of intrinsic, extrinsic, and hybridized Dirac cone states. PHYSICAL REVIEW B[J]. 2014, 89(15): https://www.webofscience.com/wos/woscc/full-record/WOS:000337348500002.[29] Wang, Z F, Yao, MengYu, Ming, Wenmei, Miao, Lin, Zhu, Fengfeng, Liu, Canhua, Gao, C L, Qian, Dong, Jia, JinFeng, Liu, Feng. Creation of helical Dirac fermions by interfacing two gapped systems of ordinary fermions. 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JOURNAL OF APPLIED PHYSICS[J]. 2013, 113(4): http://dx.doi.org/10.1063/1.4788834.[32] Li, H, Song, Y R, Yao, MengYu, Yang, Fang, Mao, Lin, Zhu, Fengfeng, Liu, Canhua, Gao, C L, Qian, Dong, Yao, X, Jia, JinFeng, Shi, Y J, Wu, D. Carriers dependence of the magnetic properties in magnetic topological insulator Sb1.95-xBixCr0.05Te3. APPLIED PHYSICS LETTERS[J]. 2012, 101(7): https://www.webofscience.com/wos/woscc/full-record/WOS:000308263100041.[33] Yang, Fang, Miao, Lin, Wang, Z F, Yao, MengYu, Zhu, Fengfeng, Song, Y R, Wang, MeiXiao, Xu, JinPeng, Fedorov, Alexei V, Sun, Z, Zhang, G B, Liu, Canhua, Liu, Feng, Qian, Dong, Gao, C L, Jia, JinFeng. Spatial and Energy Distribution of Topological Edge States in Single Bi(111) Bilayer. 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科研活动
参与会议
(1)Topological Spin Wave Excitation in 2D Honeycomb Ferromagnetic Insulators CrXTe3 (X=Si,Ge) 2022-03-02(2)Neutron scattering study on magnetic topological materials EuMnBi2 and CrX Te3 (X=Si,Ge) 2021-11-29(3)Elastic and in-elastic neutron scattering study on EuMnBi2 and CrXTe3 (X=S i, Ge) 东南大学物理学院学术报告 2021-03-25(4)Observation of Quasi-One-dimensional Edge State in ZrTe5 by Angle-resolved Photoemission Spectroscopy 2019-11-19(5)Magnetic structure of 2D Dirac fermion antiferromagnet EuMnBi2 2019-06-30(6)Epitaxial growth of 2D stanene 第三十三届国际半导体物理大会 2016-07-31