Research Highlights in 2021

[1] Chang Liu et al, Magnetic-field-induced robust zero Hall plateau state in MnBiTe Chern insulator, Nat. Commun, 12, 4647(2021).

[2] Yu-Te Hsu et al, Unconventional quantum vortex matter state hosts quantum oscillations in the underdoped high temperature cuprate superconductors, PNAS, e2021216118 (2021).

[3] Yu-Xiao Jian et al, Unconventional chiral charge order in kagome superconductor KV3Sb5, Nat. Mater. 20, 1353-1357 (2021).

[4] Xiao-Rong Zhou et al, Negligible oxygen vacancies, low critical current density, electric-field modulation, in-plane anisotropic and high-field transport of a superconducting Nd0.8Sr0.2NiO2/SrTiO3 heterostructure, Rare Metals 40, 2847(2021).

[5] Xiao-kang Li et al, A monomaterial Nernst thermopile with hermaphroditic legs, Adv. Mater. 33, 2100751 (2021).

[6] Jie Zun Ke et al, Nearly fully opened charge density wave gap in the quasi-two dimensional conductor γ-Mo4O11:A comparative study with γ-Mo4O11, Phys. Rev. B 104, 195154 (2021).

[7] Jie Zun Ke et al, Synthesis and physical properties theoretically predicted spin superconductor Li0.9Mo6O17, Ceram. Int. 47, 25229 (2021).

[8] Xu Zhang et al, Quantum criticality tuned by magnetic field in optimally electron-doped cuprate thin films, Phys. Rev. B 103, 014517 (2021).

[9] Yue Sun et al, Comparative study of superconducting and normal-state anisotropy in Fe1+yTe0.6Se0.4 superconductors with controlled amounts of interstitial excess Fe, Phys. Rev. B 103, 224506 (2021).

[10] Peipei Wang et al, Quantum transport properties of β-Bi4I4 near and well beyond the extreme quantum limit, Phys. Rev. B 103, 155201 (2021).

[11] Zhiwei Wang et al, Electronic nature of chiral order in the kagome superconductor CsV3Sb5, Phys. Rev. B 104, 075148 (2021).

[12] Zhen-Yu Liu et al, Charge transfer gap tuning via structural distortion in monolayer 1T-NbSe2, Nano Lett. 21 7005-7011 (2021).

[13] Lin-chao Ding et al, Quantum oscillations, magnetic breakdown and thermal Hall effect in Co3Sn2S2, J. Phys. D: Appl. Phys. 54 454003 (2021).

[14] Yu Dong et al, Observation of a ubiquitous (π,π)-type nematic superconducting order in the whole superconducting dome of ultra-thin BaFe2-xNixAs2 single crystals, Chin. Phys. Letter., 38, 097401 (2021).

[15] Gaoshang Gong et al, Large topological Hall effect near room temperature in noncollinear ferromagnet LaMn2Ge2 single crystal, Phys. Rev. Mater., 5, 034405 (2021).

[16] Sheng-Qun Su et al, Water-oriented magnetic anisotropy transition, Nat. Commun. 12, 2738 (2021).

[17] J. M. Ni et al, Giant isotropic magneto-thermal conductivity of metallic spin liquid candidate Pr2Ir2O7 with quantum criticality, Nat. Commun. 12, 307 (2021).

[18] Jin Wang et al, Opening magnetic hysteresis by axial ferromagnetic coupling: From mono-decker to double-decker metallacrown, Angew. Chem. Int. Ed. 60, 5299 (2021).

[19] Yaxin Gao et al, A family of ionic supersalts with covalent-like directionality and unconventional multiferroicity, Nat. Commun. 12, 1331 (2021).

[20] Wen-Xuan Qiu et al, Efficient method for prediction of the multipolar ordered states and its application in monolayer α-RuX3 (X= Cl, I), Phys. Rev. Lett. 127, 147202. (2021).

[21] J. F. Wang et al, Ferroelectric polarization reversal in multiferroic MnWO4 via a rotating magnetic field up to 52 T, Phys. Rev. B 104, 014415 (2021).

[22] Y. S. Tang et al, Metamagnetic transitions and magnetoelectricity in the spin-1 honeycomb antiferromagnet Ni2Mo3O8, Phys. Rev. B 103, 014112 (2021).

[23] X. P. Jin et al, Two-sublattice description of the dimer-trimer chain compound Li2Cu5Si4O14: High-field magnetization and ESR studies, Phys. Rev. B 104, 174423 (2021).

[24] Zheng Zhang et al, Effective magnetic Hamiltonian temperatures for rare-earth chalcogenides at finite, Phys. Rev. B 103, 184419 (2021).

[25] Ying Fu et al, Dzyaloshinskii-Moriya anisotropy effect field-induced magnon condensation in Kagome antiferromagnet Cu3.26Mg0.74(OH)6Br2, Phys. Rev. B 104, 245107 (2021).

[26] Yuewei Wu et al, Switching of easy-axis to easy-plane anisotropy in cobalt(II) complexes, Inorg. Chem. Front. 8, 5158 (2021).

[27] Feng Yang et al, The existence and origin of field-induced ferrimagnetic order transition of LuFe2O4 single crystal, J. Alloys Comp. 860, 158426 (2021).

[28] Xiaoyu Yue et al, Structure and magnetization plateau of a frustrated Co6 cluster antiferromagnet Sr2CO3(C2O4)3(OH)4·3H2O, Cryst. Growth Des. 21, 149 (2021).

[29] C. Dong et al, High-field phase diagram of Ni3V2O8 studied by specific heat and magnetocaloric effect measurements, J. Phys. Condens. Matter 33, 205402 (2021).

[30] Yujie Song et al, Effect of the Cr5+ ion doping on the quantum transition of the spin-dimer compounds Ba3Mn2-xCrxO8 (x = 0, 0.01, 0.04 and 0.06), J. Magn. Magn. Mater. 527, 167768 (2021).

[31] Wei Wang et al, Effect of nonmagnetic substituent Zn on the phase competition and multiferroic properties in the polar magnet Fe2MO3O8, Appl. Phys. Lett. 118, 112901 (2021).

[32] Y. Zhou et al, CoMOF5(pyrazine)(H2O)2 (M = Nb, Ta): Two-Layered cobalt oxyfluoride antiferromagnets with spin flop transitions, Inorg. Chem. 60, 13309 (2021).

[33] Yuan-Qi Zhai et al, Magnetic anisotropy: Structural correlation of a series of chromium(II)-amidinate complexes, Inorg. Chem. 60, 1344-1351 (2021).

[34] Yuesheng Li et al, Spin dynamics and Griffiths singularity in the random quantum Ising magnet PrTiNbO6, npj Quantum Mater. 6, 34 (2021).

[35] Yibo Han et al, Unconventional magnetic excitations and spin dynamics of exotic quantum spin systems Ba3CuSb2O9, Appl. Magn. Reson. 52:349-362 (2021).

[36] K. Y. Zeng et al, Local evidence for collective spin excitations in the distorted kagome antiferromagnet Pr3BWO9, Phys. Rev. B 104, 155150 (2021).

[37] Chen Cheng et al, Elliptical skyrmion moving along a track without transverse speed, Phys. Rev. B 104, 174409 (2021).

[38] Malk Ashtar et al, Structure and magnetic properties of melilite- type compounds RE2Be2GeO7, (RE=Pr, Nd, Gd-Yb) with Rare-Earth ions on Shastry-Sutherland lattice, Inorgan. Chem. 60, 3626 (2021).

[39] Kun Zhang et al, Room-temperature magnetic field effect in a perovskite semiconductor, Adv. Mater. 33, 2088225 (2021).

[40] Xianzhe Chen et al, Observation of the antiferromagnetic spin Hall effect, Nat. Mater. 20, 800 (2021).

[41] Chao Chen et al, Air-stable 2D Cr5Te8 nanosheets with thickness-tunable ferromagnetism, Adv. Mater. 34, 2107512 (2021).

[42] Haiyang Liu et al, Enhanced valley splitting in monolayer WSe2 by phase engineering, ACS Nano 15, 8244 (2021).

[43] Q. J. Peng et al, Room-temperature ferroelectricity in 2D metal-tellurium-oxyhalide Cd7Te7Cl8O17 via selenium-induced selective-bonding growth, ACS Nano 15(10), 16525 (2021).

[44] Hongwei Dai et al, Enhancement of the coercive field and exchange bias effect in Fe3GeTe2/MnPX3, (X = S and Se) van der Waals heterostructures, ACS Appl. Mater. Interfaces 13, 24314 (2021).

[45] J. Zhong et al, Strain-sensitive ferromagnetic two-dimensional Cr2Te3, Nano Research 15, 1254 (2022).

[46] Zhengjie Chen et al, Engineering microdomains of oxides in high-entropy alloy electrodes toward efficient oxygen evolution, Adv. Mater. 33, 2101845 (2021).

[47] Jiali Yi et al, Double-gate MoS2 field-effect transistors with full-range tunable threshold voltage for multifunctional logic circuits, Adv. Mater. 33, 2101036 (2021).

[48] Xiong Xiong et al, Nonvolatile logic and ternary content-addressable memory based on complementary black phosphorus and rhenium disulfide transistors, Adv. Mater. 2106321 (2021).

[49] Z. Zhang et al, Atomic visualization and switching of ferroelectric order in B-InSe; films at the single layer limit, Adv. Mater. 34, 2106951 (2022).

[50] Le Qin et al, Realization of AISb in the double layer honeycomb structure: A robust class of two-dimensional material, ACS Nano 15, 8184-8191 (2021).

[51] Xiaofeng Wu et al, Nanoscale ultrasensitive temperature sensing based on upconversion nanoparticles with lattice self-adaptation, Nano Lett. 21, 272 (2021).

[52] Zigi Zeng et al, Nanophase-separated, elastic epoxy composite thin film as an electrolyte for stable lithium metal batteries, Nano Lett. 21, 8 (2021).

[53] Qun Yang et al, Metallic nanoglasses with B-relaxation and tensile plasticity promoted β-relaxation and tensile plasticity, Nano Lett. 21, 6051-6056 (2021).

[54] Y. Suet al, Van der Waals multiferroic tunnel junctions, Nano Lett. 21, 175-181 (2021).

[55] Z. Zhang et al, Strain-induced bandgap enhancement of InSe ultrathin films with self-formed two-dimensional electron gas, ACS Nano 15, 10700-10709 (2021).

[56] Li Yao et al, Strong second- and third-harmonic generation in 1D chiral hybrid bismuth halides, J. Am. Chem. Soc. 143, 16095 (2021).

[57] G. Wang et al, Algorithm-assisted detection and imaging of disassembly of plasmonic core-satellite probes coupled with strand displacement amplification, ACS Sensors 6, 958 (2021).

[58] Yuwei Ju et al, Reconfigurable magnetic soft robots with multimodal locomotion, Nano Energy 87, 106169 (2021).

[59] Yun Xu et al, Multimode constant power control strategy for LCC resonant capacitor charging power supply based on state plane analysis, IEEE Trans. Power Electron. 36, 7 (2021).

[60] Zhou He et al, A hybrid DPWM for Vienna rectifiers based on the three-level to two-level conversion, IEEE Trans. Ind. Electron. (2021).

[61] Jingge Chen et al, Smart water-based ferrofluid with stable state transition property: Preparation and its application in anionic dye removal, J. Clean. Prod. 287, 125003 (2021).

[62] Shaowei Ouyang et al, Electromagnetic forming of aluminum alloy sheet metal utilizing a low-frequency discharge: a new method for attractive forming, J. Mater. Process Tech. 291, 117001 (2021).

[63] Qinying Liu et al, Pulsed-field nuclear magnetic resonance: Status and prospects, Mater Radiat Extremes 6, 024201 (2021).

[64] Xianfei Chen et al, Dynamic electromagnetic buckling analysis of pulsed magnets, Thin Walled Struct. 162, 107621 (2021).

[65] Quan Shao et al, Improvement in uniformity of alloy steel by pulsed magnetic field treatment, Mater. Sci. Eng. A 799, 140143 (2021).

[66] Houxiu Xiao et al, Influence of misalignment on the behavior of electron beam of an 800 GHz gyrotron, IEEE Electron Device Lett. 42, 11 (2021).

[67] Pengxin Dong et al, Fabrication of titanium bipolar plates for proton exchange membrane fuel cells by uniform pressure electromagnetic forming, Int. J. Hydrog. Energy 78, 46 (2021).

[68] Quatliang Cao et al, Coil-less electromagnetic forming process with uniform-pressure characteristics for shaping sheet metals, J. Manuf. Process. 70, 140-151 (2021).

[69] Limeng Du et al, Adjustable current waveform via altering the damping coefficient: A new way to reduce Joule heating in electromagnetic forming coils, J. Mater. Process Tech. 293, 117086 (2021).

[70] Heng Hu et al, Development of pulsed field magnetometer with flexible structure, J. Magn. Magn. Mater. 538, 168277 (2021).

[71] Zhuyu Xun et al, A novel switched-capacitor inverter with reduced capacitance and balanced neutral-point voltage, Electronics 10, 947 (2021).

[72] Xiaofei Xu et al, Numerical investigation on the effects of circuit parameters on the plastic deformation of fastener holes in thin aluminum alloy via electromagnetic expansion process, Int. J. Adv. Manuf. Tech. 117, 795 (2021).

[73] Shan Jiang et al, Design of pulsed power supply for repetitive pulsed high magnetic field for water electrolysis, Rev. Sci. Instrum. 92, 114708 (2021).

[74] Sihua Zhu et al, Stress analysis of 13 T split superconducting magnet for neutron scattering, IEEE Trans. Appl. Supercond. 31, 8 (2021).


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