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Li Jiang
Jianwei Nai
Dezhi Chen
407.Li F, Zhao H, Sun X, et al. Super-strong graphene oxide-based fibers reinforced by a crystalline-amorphous superstructure[J]. Matter, 2022, 5(12): 4437-4449.
406.Zhao H, Liu S, Yang X, et al. Role of inorganic amorphous constituents in highly mineralized biomaterials and their imitations[J]. ACS Nano, 2022, 16(11): 17486-17496.
405.Yin X, Xu W, Zhu G, et al. Towards highly efficient NIR II response up-conversion phosphor enabled by long lifetimes of Er3+[J]. Nature Communications, 2022, 13(1): 6549.
404.Chen J, Yu D, Zhu Q, et al. Low‐temperature high‐areal‐capacity rechargeable potassium‐metal batteries[J]. Advanced Materials, 2022, 34(36): 2205678.
403.Zhao H, Liu S, Lu J, et al. Natural tooth enamel and its analogs[J]. Cell Reports Physical Science, 2022, 3(7):100945.
402.Chen K, Tang X, Jia B, et al. Graphene oxide bulk material reinforced by heterophase platelets with multiscale interface crosslinking[J]. Nature Materials, 2022, 21(10): 1121-1129.
401.Tan L, Li A, Yang Y, et al. Highly active and stable Li2S− Cu nanocomposite cathodes enabled by kinetically favored displacement interconversion between Cu2S and Li2S[J]. Angewandte Chemie International Edition, 2022, 61(31): e202206012.
400.Li Y, Liu S, Zhao H, et al. Strong and tough TPU fibers with orientedly aligned CNTs reinforced by amorphous ZrO2[J]. Chemical Research in Chinese Universities, 2022, 38(3): 763-768.
399.Zhao D, Guo Y, Bi W, et al. Effects of CuInS2 nanoparticles on the alignment control of liquid crystals[J]. Nano Research, 2022, 15(8): 7542-7548.
398.Kang J, Xue Y, Yang J, et al. Realizing two-electron transfer in Ni(OH)2 nanosheets for energy storage[J]. Journal of the American Chemical Society, 2022, 144(20): 8969-8976.
397.Dong S, Li Y, Liu X, et al. Theoretical study of two‐dimensional ZrO2/g‐C3N4 sandwich structure loaded noble‐Metal Rh single‐atom catalysts[J]. ChemistrySelect, 2022, 7(15): e202104130.
396.Tao Y, Liu S, Zheng T, et al. Amorphous ZrO2 layer conformally grown with zeolite for advanced photocatalytic degradation[J]. Materials Letters, 2022, 311: 131589.
395.Zhao Q, Zhou R, Wang C, et al. Anion immobilization enabled by cation‐selective separators for dendrite‐free lithium metal batteries[J]. Advanced Functional Materials, 2022, 32(23): 2112711.
394.Zhao H, Liu S, Wei Y, et al. Multiscale engineered artificial tooth enamel[J]. Science, 2022, 375(6580): 551-556.
393.Huang W, Kang J, Chen T, et al. Dynamical investigation of tunable magnetism in Au@ Ni-carbide nanocrystals by a combined soft and hard X-ray absorption spectroscopy[J]. Nano Research, 2022, 15(5): 4320-4326.
392.Chen T, Pang D, Kang J, et al. Network-like platinum nanosheets enabled by a calorific-effect-induced-fusion strategy for enhanced catalytic hydrogenation performance[J]. Frontiers in Chemistry, 2022, 9: 818900.
391.Zhao H, Zeng X, Zheng T, et al. Three-dimensional porous aerogel assembly from ultrathin rGO@ SnO2 nanosheets for advanced lithium-ion batteries[J]. Composites Part B: Engineering, 2022, 231: 109591.
390.Hu Q, Xue Y, Kang J, et al. Structure and oxygen evolution activity of β-NiOOH: where are the protons?[J]. ACS Catalysis, 2021, 12(1): 295-304.
389.Deng L, Hong Y, Yang Y, et al. Sulfurized polyacrylonitrile as a high-performance and low-volume change anode for robust potassium storage[J]. ACS Nano, 2021, 15(11): 18419-18428.