(1) Zhu Ma*, et al. Aging-resistant precursor with ultrawide annealing window for 24.08% perovskite solar cells. Advanced Energy Materials. 2024, 14, 2302769
(2) Zhu Ma*, et al. Bulk in situ reconstruction of heterojunction perovskite enabling stable solar cells over 24% efficiency. Advanced Functional Materials. 2024, 34, 2310133
(3) Zhu Ma*, et al. Perovskite solar cells with self-disintegrating seeds deliver an 83.64?% fill factor, Nano Energy, 2024, 127, 109751
(4) Zhu Ma*, et al. Transition metals-based electrocatalysts on super-flat substrate for perovskite photovoltaic hydrogen production with 13.75% STH efficiency. Journal of Colloid and Interface Science, 2025, 677, 599-609
(5) Zhu Ma*, et al. Recent progress in hydrogen: From solar to solar cell, Journal of Materials Science & Technology, 2024, 176, 236-257
(6) Zhu Ma*, et al. Machine learning assisted prediction for hydrogen production of advanced photovoltaic technologies, DeCarbon, 2024, 4, 100050
(7) Zhu Ma, et al. Reliability of transparent conductive oxide in ambient acid and implications for silicon solar cells. eScience, 2024, 4(3): 100241
(8) Zhu Ma, et al. Printing Perovskite solar cells in ambient air: A review. Advanced Energy Materials, 2024, 14(29): 2401463
(9) Zhu Ma*, et al. Slow-release effect assisted crystallization for sequential deposition realizes efficient inverted perovskite solar cells, ACS Applied Materials & Interfaces, 2024, 16(22): 28905-28916
(10) Zhu Ma, et al. Orientation manipulation and defect passivation for perovskite solar cells by a natural compound. Small, 2024, 2401834.
(11) Zhu Ma*, et al. Regulation of lead iodine crystallization and distribution for efficient perovskite solar cells, ACS Applied Materials & Interfaces, 2024, online.
(12) Zhu Ma*, et al. Organic molecule and inorganic salt synergistic-modified SnO2 for efficient perovskite solar cells. Solar RRL, 2024, 2400122.
(13) Zhu Ma, et al. Dopant-free carrier-selective contact silicon solar cells: Materials, structures and stability. Journal of Power Sources, 2024, 620, 235263.
(14) Zhu Ma, et al. Mechanism of photon-induced performance changes in silicon heterojunction solar cells. Science China Materials, 2024, 67, 2873-2879.
(15) Zhu Ma*, et al. Defect passivation with bromine template for efficient perovskite solar cells. Materials Science in Semiconductor Processing, 2024, 173, 108138.
(16) Zhu Ma*, et al. Interfacial passivation with 2-aminopyridine for effective perovskite solar cells. Materials Science in Semiconductor Processing, 2024, 173, 108114.
(17) Zhu Ma*, et al. Amino pyridine iodine as an additive for defect-passivated perovskite solar cells, ACS Applied Materials & Interfaces, 2023, 15(48): 55813-55821
(18) Zhu Ma*, et al. Orientation-controlled mesoporous PbI2 scaffold for 22.7% perovskite solar cells. Science China Materials. 2023, 66,1313-1322.
(19) Zhu Ma*, et al. Synergistic passivation via Lewis coordination and electrostatic interaction for efficient perovskite solar cells, ACS Applied Energy Materials. 2023, 6, 13, 7014–7024.
(20) Zhu Ma, et al. Short Wavelength Photons Destroying Si–H Bonds and Its Influence on High-Efficiency Silicon Solar Cells and Modules. Solar RRL, 2023, 7(15), 2300334.
(21) Zhu Ma, et al. The effect of pyrrolidone-based ligands in gas-quenching fabrication of FA0.9Cs0.1PbI3 perovskite films and solar cells. Journal of Alloys and Compounds, 2023, 960, 170670.
(22) Zhu Ma*, et al. Heterogeneous lead iodide obtains perovskite solar cells with efficiency of 24.27%, Chemical Engineering Journal, 2022, 448, 13776
(23) Zhu Ma*, et al. Excess PbI2 evolution for triple-cation based perovskite solar cells with 21.9% efficiency. Journal of Energy Chemistry. 2021, 66, 152-160
(24) Zhu Ma*, et al. Nicotinamide as additive for microcrystalline and defect passivated perovskite solar cells with 21.7% efficiency. ACS Applied Materials & Interfaces, 2020, 12(47): 52500-52508
(25) Zhu Ma*, et al. Oxidization-free spiro-OMeTAD hole-transporting layer for efficient CsPbI2Br perovskite solar cells. ACS Applied Materials & Interfaces, 2020, 12(47) :52779-52787.