Publiscation List:
2021年
[63] Huang, J.; Zou, S.; Lin, J.; Liu, Z.; Qi, M., Ultrathin lead-free double perovskite cesium silver bismuth bromide nanosheets. Nano Research 2021, 1-8.
[62] Yao, S.; Peng, L.; Lin, J.; Chen, J.; Cai, C.; Zhou, Y., Properties of Vortex Configurations in Two-Band Mesoscopic Superconductors With Josphson Coupling: The Ginzburg–Landau Theory. Journal of Low Temperature Physics 2021, 202 (3), 329-342.
[61] Chen, J.; Zhang, C.; Liu, X.; Peng, L.; Lin, J.; Chen, X., Carrier dynamic process in all-inorganic halide perovskites explored by photoluminescence spectra. Photonics Research 2021, 9 (2), 151-170.
2020年
[60] Wu, M.; Qian, Y.; Liu, H.; Ni, Z.; Chen, W.; Li, C.; Si, X.; Lin, J.; Li, Z.; Liu, Y., Study on magnetic anisotropy and magnetocaloric effect of Co50V34Ga16 alloy. Physica Scripta 2020, 96 (2), 025802.
[59] Ge, Q.; Zheng, R.; Lin, J.; Chen, H., Cs2InCl5 (H2O): A moisture-stable defective double halide perovskite analogue with broadband emission. Materials Letters 2020, 277, 128280.
[58] Wang, Y.; Peng, L.; Lin, J.; Zhang, Y.; Sang, L., Influence of the Heat Transfer on Dynamic Properties of Mesoscopic Superconducting Strips: A Finite Element Method. Acta Physica Polonica, A. 2020, 137 (6).
[57] Ge, Q.; Feng, X.; Wang, R.; Zheng, R.; Luo, S.; Duan, L.; Ji, Y.; Lin, J.; Chen, H., Mixed Redox-Couple-Involved Chalcopyrite Phase CuFeS2 Quantum Dots for Highly Efficient Cr(VI) Removal. Environmental science & technology 2020, 54 (13), 8022-8031.
[56] Peng, L.; Wang, Y.; Masood, I.; Zhou, B.; Wang, Y.; Lin, J.; Qiao, J.; Zhang, F.-Y., Self-growing Cu/Sn bimetallic electrocatalysts on nitrogen-doped porous carbon cloth with 3D-hierarchical honeycomb structure for highly active carbon dioxide reduction. Applied Catalysis B: Environmental 2020, 264, 118447.
[55] Qian, Y.; Ma, X.; Si, X.; Liu, H.; Luo, X.; Lin, J.; Liu, Y., The analysis of magnetocaloric effect and magnetic critical behavior in Mn5Ge3− x Ag x compounds. Physica Scripta 2020, 95 (6), 065701.
[54] 林佳; 陈险峰, 新型卤化物钙钛矿材料的光学和发光性质研究. 量子电子学报 2020.
[53] Chen, S.; Zhang, T.; Liu, X.; Qiao, J.; Peng, L.; Wang, J.; Liu, Y.; Yang, T.; Lin, J., Lattice reconstruction of La-incorporated CsPbI2 Br with suppressed phase transition for air-processed all-inorganic perovskite solar cells. Journal of Materials Chemistry C 2020, 8 (10), 3351-3358.
[52] Chen, H.; Lin, J.; Kang, J.; Kong, Q.; Lu, D.; Kang, J.; Lai, M.; Quan, L. N.; Lin, Z.; Jin, J., Structural and spectral dynamics of single-crystalline Ruddlesden-Popper phase halide perovskite blue light-emitting diodes. Science advances 2020, 6 (4), eaay4045.
2019年
[51] Ni, Y.; He, B.; Luo, S.; Wu, X.; Feng, X.; Luo, Y.; Lin, J.; Sun, J.; Fan, K.; Ji, Y., Microporous core-shell Co11(HPO3)8(OH)6/Co11 (PO3) 8O6 nanowires for highly efficient electrocatalytic oxygen evolution reaction. Applied Catalysis B: Environmental 2019, 259, 118091.
[50] Lin, J.; Chen, H.; Gao, Y.; Cai, Y.; Jin, J.; Etman, A. S.; Kang, J.; Lei, T.; Lin, Z.; Folgueras, M. C., Pressure-induced semiconductor-to-metal phase transition of a charge-ordered indium halide perovskite. Proceedings of the National Academy of Sciences 2019, 116 (47), 23404-23409.
[49] Liu, Y.; Siron, M.; Lu, D.; Yang, J.; Dos Reis, R.; Cui, F.; Gao, M.; Lai, M.; Lin, J.; Kong, Q., Self-Assembly of Two-Dimensional Perovskite Nanosheet Building Blocks into Ordered Ruddlesden–Popper Perovskite Phase. Journal of the American Chemical Society 2019, 141 (33), 13028-13032.
[48] Liu, J.; Peng, L.; Zhou, Y.; Lv, L.; Fu, J.; Lin, J.; Guay, D.; Qiao, J., Metal–Organic-Frameworks-Derived Cu/Cu2O Catalyst with Ultrahigh Current Density for Continuous-Flow CO2 Electroreduction. ACS Sustainable Chemistry & Engineering 2019, 7 (18), 15739-15746.
[47] Si, X.; Liu, Y.; Zhang, Z.; Ma, X.; Lin, J.; Luo, X.; Zhong, Y.; Si, H., Analysis of the magnetic transition and magnetocaloric effect in Mn5Ge2.9Ag0.1 compound. Journal of Alloys and Compounds 2019, 795, 304-313.
[46] Lin, J.; Chen, H.; Kang, J.; Quan, L. N.; Lin, Z.; Kong, Q.; Lai, M.; Yu, S.; Wang, L.; Wang, L. w., Copper(I)-based highly emissive all-inorganic rare-earth halide clusters. Matter 2019, 1 (1), 180-191.
[45] Si, X.; Liu, Y.; Ma, X.; Lin, J.; Yang, J.; Zhou, T., The analysis of magnetic entropy change and long-range ferromagnetic order in Mn1−xAgxCoGe. Journal of Materials Science 2019, 54 (4), 3196-3210.
2018年
[44] Huang, J.; Lai, M.; Lin, J.; Yang, P., Rich chemistry in inorganic halide perovskite nanostructures. Advanced materials 2018, 30 (48), 1802856.
[43] Lu, D.; Zhang, Y.; Lai, M.; Lee, A.; Xie, C.; Lin, J.; Lei, T.; Lin, Z.; Kley, C. S.; Huang, J., Giant light-emission enhancement in lead halide perovskites by surface oxygen passivation. Nano letters 2018, 18 (11), 6967-6973.
[42] Ma, X.; Zhang, Z.; Chen, S.; Lei, W.; Xu, Y.; Lin, J.; Luo, X.; Liu, Y., Enhancement of crystallinity and magnetization in Fe3O4 nanoferrites induced by a high synthesized magnetic field. Japanese Journal of Applied Physics 2018, 57 (5), 050309.
[41] Lin, J.; Lai, M.; Dou, L.; Kley, C. S.; Chen, H.; Peng, F.; Sun, J.; Lu, D.; Hawks, S. A.; Xie, C., Thermochromic halide perovskite solar cells. Nature materials 2018, 17 (3), 261-267.
[40] Si, X.; Shen, Y.; Ma, X.; Chen, S.; Lin, J.; Yang, J.; Gao, T.; Liu, Y., Field dependence of magnetic entropy change and estimation of spontaneous magnetization in Cd substituted MnCoGe. Acta Materialia 2018, 143, 306-317.
2017年
[39] Shen, Y.; Liu, Y.; Yu, W.; Ma, X.; Zhang, Z.; Lin, J.; Luo, X., Large room-temperature magnetocaloric effect in MnCoGe0.9Cu0.1 alloy. Materials Research Express 2017, 4 (11), 116110.
[38] Liu, X.; Zheng, R.; Yuan, R.; Peng, L.; Liu, Y.; Lin, J., Released Defective Nb2O5 with Optimized Solar Photocatalytic Activity. ECS Journal of Solid State Science and Technology 2017, 6 (9), P665.
[37] Monahan, D. M.; Guo, L.; Lin, J.; Dou, L.; Yang, P.; Fleming, G. R., Room-temperature coherent optical phonon in 2D electronic spectra of CH3NH3PbI3 perovskite as a possible cooling bottleneck. The journal of physical chemistry letters 2017, 8 (14), 3211-3215.
[36] Xu, J.; Liu, Y.; Du, W.; Lei, W.; Si, X.; Zhou, T.; Lin, J.; Peng, L., Superhydrophobic silica antireflective coatings with high transmittance via one-step sol-gel process. Thin Solid Films 2017, 631, 193-199.
[35] Lei, W.; Liu, Y.; Si, X.; Xu, J.; Du, W.; Yang, J.; Zhou, T.; Lin, J., Synthesis and magnetic properties of octahedral Fe3O4 via a one-pot hydrothermal route. Physics Letters A 2017, 381 (4), 314-318.
2016年
[34] Si, X.; Liu, Y.; Lei, W.; Xu, J.; Du, W.; Lin, J.; Zhou, T.; Lu, X., Enhancement of Curie temperature and transition temperature range induced by Al doping in Mn1-xAlxCoGe. Solid State Communications 2016, 247, 27-30.
[33] Peng, L.; Lin, J.; Chen, J.; Zhou, Y.; Liu, Y.; Zhang, Y., Vortex and Antivortex States in Nanoscale Superconductors Due to Symmetry-Induced Cooper-Pair Condensate: A Finite Element Method. Journal of Computational and Theoretical Nanoscience 2016, 13 (7), 4259-4262.
[32] Si, X.; Liu, Y.; Lu, X.; Wang, W.; Lei, W.; Lin, J.; Zhou, T.; Xu, Y., Effects of the substitution of Al for Mn on structure, magnetic, and magnetocaloric properties in MnCoGe. Journal of Applied Physics 2016, 119 (21), 215104.
[31] Lin, J.; Liu, X.; Zhu, S.; Chen, X., Anodic nanostructures for solar cell applications. Green Nanotechnology—Overview and Further Prospects 2016.
[30] Peng, L.; Cai, C.; Lin, J.; Chen, J.; Liu, Y.; Zhou, Y., Vortex States of a Three-Dimensional Mesoscopic Superconducting Torus in an External Magnetic Field. Journal of Superconductivity and Novel Magnetism 2016, 29 (5), 1197-1201.
[29] Peng, L.; Lin, J.; Chen, C.; Liu, Y.; Zhou, Y., Simulation Analysis of Single-Nanowire Silicon Solar Cells: A Finite Element Method. Journal of Computational and Theoretical Nanoscience 2016, 13 (5), 3000-3004.
[28] Si, X.; Liu, Y.; Lei, W.; Xu, J.; Du, W.; Lin, J.; Zhou, T.; Zheng, L., First-principles investigation on the optoelectronic performance of Mg doped and Mg–Al co-doped ZnO. Materials & Design 2016, 93, 128-132.
[27] Liu, X.; Yuan, R.; Liu, Y.; Zhu, S.; Lin, J.; Chen, X., Niobium pentoxide nanotube powder for efficient dye-sensitized solar cells. New Journal of Chemistry 2016, 40 (7), 6276-6280.
2015年
[26] Si, X.; Liu, Y.; Wu, X.; Lei, W.; Xu, J.; Du, W.; Zhou, T.; Lin, J., The interaction between oxygen vacancies and doping atoms in ZnO. Materials & Design 2015, 87, 969-973.
[25] Zhu, S.; Liu, X.; Lin, J.; Chen, X., Low temperature transferring of anodized TiO 2 nanotube-array onto a flexible substrate for dye-sensitized solar cells. Optical Materials Express 2015, 5 (12), 2754-2760.
[24] Lin, J.; Liu, X.; Zhu, S.; Liu, Y.; Chen, X., Anatase TiO 2 nanotube powder film with high crystallinity for enhanced photocatalytic performance. Nanoscale research letters 2015, 10 (1), 1-6.
[23] Si, X.; Liu, Y.; Wu, X.; Lei, W.; Lin, J.; Gao, T.; Zheng, L., Al–Mg co-doping effect on optical and magnetic properties of ZnO nanopowders. Physics Letters A 2015, 379 (22-23), 1445-1448.
[22] Lin, J.; Liu, X.; Zhu, S.; Chen, X., TiO2 nanotube structures for the enhancement of photon utilization in sensitized solar cells. Nanotechnology Reviews 2015, 4 (3), 209-238.
[21] Fang, W.; Liu, Y.; Wu, X.; Zhong, Y.; Peng, L.; Lin, J.; Xu, J.; Lei, W.; Zhao, Z., Enhancement of Hole Barrier and Light Absorption in the {112} Surface of CuIn0. 5Ga0. 5Se2 Solar Cell. Journal of The Electrochemical Society 2015, 162 (6), H376.
[20] Wu, X.; Liu, Y.; Xu, J.; Lei, W.; Si, X.; Du, W.; Zhao, C.; Zhong, Y.; Peng, L.; Lin, J., Monitoring the performance of the building attached photovoltaic (BAPV) system in Shanghai. Energy and buildings 2015, 88, 174-182.
[19] 徐娟; 刘永生; 雷伟; 杜文龙; 司晓东; 郭保智; 高湉; 林佳, 多功能太阳电池减反膜研究进展. 硅酸盐通报 2015, 34 (2), 428-432.
[18] 杜文龙; 刘永生; 司晓东; 雷伟; 徐娟; 郭保智; 林佳; 彭麟, 晶体硅电池表面钝化的研究进展. 材料科学与工程学报 2015, 33 (4), 613-618.
[17] Lin, J.; Zheng, L.; Liu, X.; Zhu, S.; Liu, Y.; Chen, X., Assembly of a high-scattering photoelectrode using a hybrid nano-TiO 2 paste. Journal of Materials Chemistry C 2015, 3 (26), 6645-6651.
[16] Lin, J.; Liu, X.; Zhu, S.; Liu, Y.; Chen, X., Influence of In Situ Oxide Dissolution on the Bottom Morphologies of Detached TiO2 Nanotube Films. Journal of Nanomaterials 2015.
2014年
[15] Liu, X.; Guo, M.; Cao, J.; Lin, J.; Tsang, Y. H.; Chen, X.; Huang, H., Large-diameter titanium dioxide nanotube arrays as a scattering layer for high-efficiency dye-sensitized solar cell. Nanoscale Research Letters 2014, 9 (1), 1-5.
[14] Liu, X.; Lin, J.; Tsang, Y. H.; Chen, X.; Hing, P.; Huang, H., Improved anatase phase stability in small diameter TiO2 nanotube arrays for high performance dye-sensitized solar cells. Journal of alloys and compounds 2014, 607, 50-53.
[13] Liu, X.; Guo, M.; Lin, J.; Chen, X.; Huang, H., Design of multi-layered TiO 2 nanotube/nanoparticle hybrid structure for enhanced efficiency in dye-sensitized solar cells. RSC Advances 2014, 4 (85), 45180-45184.
2013年
[12] Guo, M.; Yong, Z.; Xie, K.; Lin, J.; Wang, Y.; Huang, H., Enhanced light harvesting in dye-sensitized solar cells coupled with titania nanotube photonic crystals: a theoretical study. ACS applied materials & interfaces 2013, 5 (24), 13022-13028.
[11] Lin, J.; Guo, M.; Yip, C. T.; Lu, W.; Zhang, G.; Liu, X.; Zhou, L.; Chen, X.; Huang, H., High temperature crystallization of free‐standing anatase TiO2 nanotube membranes for high efficiency dye‐sensitized solar cells. Advanced Functional Materials 2013, 23 (47), 5952-5960.
[10] Liu, X.; Lin, J.; Chen, X., Synthesis of long TiO 2 nanotube arrays with a small diameter for efficient dye-sensitized solar cells. RSC advances 2013, 3 (15), 4885-4889.
2012年
[9] Guo, M.; Xie, K.; Lin, J.; Yong, Z.; Yip, C. T.; Zhou, L.; Wang, Y.; Huang, H., Design and coupling of multifunctional TiO 2 nanotube photonic crystal to nanocrystalline titania layer as semi-transparent photoanode for dye-sensitized solar cell. Energy & Environmental Science 2012, 5 (12), 9881-9888.
[8] Lin, J.; Liu, X.; Guo, M.; Lu, W.; Zhang, G.; Zhou, L.; Chen, X.; Huang, H., A facile route to fabricate an anodic TiO 2 nanotube–nanoparticle hybrid structure for high efficiency dye-sensitized solar cells. Nanoscale 2012, 4 (16), 5148-5153.
[7] Lin, J.; Chen, X., Synthesis of high‐aspect‐ratio, top‐open and ultraflat‐surface TiO2 nanotubes through double‐layered configuration. physica status solidi (RRL)–Rapid Research Letters 2012, 6 (1), 28-30.
2011年
[6] Xu, T.; Lin, J.; Chen, J.; Chen, X., The effect of pre-pattern on the morphology and growth speed of TiO2 nanotube. Applied surface science 2011, 258 (1), 76-80.
[5] Lin, J.; Chen, J.; Chen, X., High-efficiency dye-sensitized solar cells based on robust and both-end-open TiO 2 nanotube membranes. Nanoscale research letters 2011, 6 (1), 1-5.
[4] Lin, J.; Liu, K.; Chen, X., Synthesis of periodically structured titania nanotube films and their potential for photonic applications. Small 2011, 7 (13), 1784-1789.
[3] Li, Q.; Lao, H.; Lin, J.; Chen, Y.; Chen, X., Study of femtosecond ablation on aluminum film with 3D two-temperature model and experimental verifications. Applied Physics A 2011, 105 (1), 125-129.
2010年
[2] Lin, J.; Chen, J.; Chen, X., Facile fabrication of free-standing TiO2 nanotube membranes with both ends open via self-detaching anodization. Electrochemistry Communications 2010, 12 (8), 1062-1065.
[1] Chen, J.; Lin, J.; Chen, X., Self-assembled TiO2 nanotube arrays with U-shaped profile by controlling anodization temperature. Journal of Nanomaterials 2010.