论文著作:
[1] Li Y., Wang S., Yuan M., Du Y., Cai Y., Miao T., Kou J.*, Yan S.*, Lu C.* Piezoelectric activation of dual lattice-oxygen mechanism through OH- Grotthuss transport in water electrolysis. Nature Communication, 2026, accepted.
[2] Liu, Y.; Jin, H.-Y.; Li, M.-M.; Zuo, M.-R.; Dinker, M. K.; Kou, J. *; Yan, J.-T.; Ding, L.-F.; Sun, L.-B.* Improving Light-Responsive Efficiency of Type II Porous Liquid by Tailoring the Functionality of Host. Angewandte Chemie International Edition 2025, 64, e202501191.
[3] Wang, S. ; Miao, T.; Wang, Y.; Xu, J.; Jia, F.; Li, Y. *; Kou, J. *; Xu, Z. *, Controllable Ultrathin Nickel Nanoislands With Dense Discrete Space Charge Regions: Steering Hole Extraction for High-Performance Underwater Multispectral Weak-Light Photodetection. Small 2025, 21(6), 2407110.
[4] Wang, Y.; Zhou, Y.; Liu, X.; Zheng, X.; Wang, S.; Zhang, K.; Shao, X.; Kou, J. *; Sun, L.-B. *, Single Cobalt Atoms Anchored on In-Situ-Formed Carbon Layers within Restricted Microenvironment: An Efficient Catalyst for Oxygen Evolution Reaction. Chemical Engineering Journal 2025, 519, 164766.
[5] Wei, H.; Liu, B.; Cao, F.; Li, B; Kou, J. *; Chen, Y. *; Lu, C. *; Xu, Z., Spontaneous Chirality Transition-Mediated Piezo-Pyroelectric Synergy for Photocatalytic Hydrogen Production from Saturated Vapor of VOC Aqueous Solutions. Advanced Functional Materials 2025, e18394.
[6] Li, B.; Zhou, L.; Bo, X.; Wei, H.; Li, J.; Wang, S.; Liu, C.; Xu, Q.; Yang, C.; Huang, H. *; Kou, J. *; Lu, C. H., Ion Intercalation Engineering in Crystalline C3N5 for Efficient Photosynthesis of H2O2. Journal of Environmental Chemical Engineering 2025, 13(5), 117794.
[7] Wei, H.; Zhou, L.; Cao, F.; Chen, Y.; Li, B.; Kou, J. *; Lu, C.*; Xu, Z.* Constructing Magnetically Propelled Piezoelectric and Pyroelectric Bifunctional Micromotors to Boost the Photocatalytic H2 Production Involving Biomass Reforming. Nano Energy 2024, 129, 110064.
[8] Li, Y.; Li, Y.; You, S.; Yang, K.; Lu, C.*, Ni, Y.*, Kou, J.*, Xu, Z. Design of Z-Scheme Heterojunction Integrated Two-compartment Plasmonic Fabry-perot Cavities Array with High Solar Absorptivity for Atmospheric Pure Water Splitting. Chemical Engineering Journal 2024, 502, 158130.
[9] Wang, S.; Miao, T.; Wang, Y.; Xu, J.; Jia, F.; Li, Y.; Kou, J.*; Xu, Z.* Controllable Ultrathin Nickel Nanoislands with Dense Discrete Space Charge Regions: Steering Hole Extraction for High-Performance Underwater Multispectral Weak-Light Photodetection. Small 2024, 2407110.
[10] Li, Y.; Wang, S.; Huang, H.; Kou, J.*; Lu, C.*; Xu, Z.*; Ye, J. Facilitating the Rapid Grotthuss Diffusion of OH- in Electrolyte for Accelerated Oxygen Evolution Reaction. Journal of Water Process Engineering 2024, 66, 106062.
[11] Li, Y.; Li, J.; Lu, C.*; Kou, J.*; Xu, Z. Facile Fabrication of Large-Area Hierarchical Plasmonic Cavities with Broadband Plasmon Resonance for Enhanced Photocatalytic Hydrogen Evolution. Nano Research 2024, 17, 9573-9584.
[12] Chen, Y.; Wang, R.; Wei, H.; Dong, R.*; Lu, C.*; Kou, J.* Efficient Liquid Phase Photothermal Catalysis Realized by Ag2O/Bi4O5I2 Heat-localization in a Microreactor. Chemical Communications 2024, 60, 4104-4107.
[13] Fang, J.; Wei, H.; Chen, Y.; Dai, B.; Ni, Y.; Kou, J. *; Lu, C. *; Xu, Z*. Low-Energy Photons Dual Harvest for Photocatalytic Hydrogen Evolution: Bimodal Surface Plasma Resonance Related Synergism of Upconversion and Pyroelectricity. Small, 2023, 19(18), 2207467.
[14] Chen, Y.; Wang, R.; Zhou, L.; Dong, R.*; Kou, J. *; Lu, C. * Infrared light induced sustainable enhancement of photocatalytic efficiency by thermoelectric effect. Journal of Colloid and Interface Science, 2023, 652, 963-970.
[15] Zhou, L.; Li, B.; Li, J.; Wang, S.; Huang, H.; Lu, C. *; Kou, J. *; Xu, Z. Simultaneous triple-effect on inhibiting the photogenerated carriers recombination of g-C3N4 for boosting solar H2 production at atmospheric pressure. Journal of Environmental Chemical Engineering, 2023, 11(3), 109975
[16] Huang, H.; Song, H.; Kou, J.*; Lu, C.*; Ye, J.* Atomic-Level Insights into Surface Engineering of Semiconductors for Photocatalytic CO2 Reduction. Journal of Energy Chemistry, 2022, 67, 309–341.
[17] Huang, H.; Xue, C.; Fang, Z.; Wang, Z.; Luo, B.; Sun, M.; Zhou, L.; Hu, K.; Kou, J.*; Wang, L.*; Lu, C.* Bridging Localized Electron States of Pyrite-Type CoS2 Cocatalyst for Activated Solar H2 Evolution. Nano Research 2022, 15(1).202-208.
[18] Sun, M.; Zhou, L.; Dong T.; Huang, H.; Fang, Z.; Kou, J.*; Lu, C*.; Xu Z. Interfacial Design to Enhance Photocatalytic Hydrogen Evolution via Optimizing Energy and Mass Flows. ACS Applied Materials & Interfaces, 2021, 13(18), 21207-21216.
[19] Dong T.; Sun, M.; Hu, K; Wang, Q; Lu, C*.; Kou, J.* Self-Propelled Jet Carbon Micromotor Enhanced Photocatalytic Performance For Water Splitting. International Journal of Hydrogen Energy, 2021, 46(33), 17187-17196
[20] Zhou, L.; Hu, K; Dong, T.; Wang, Q; Huang H.; Lu, C*.; Kou, J.*; Xu Z. Carbon Ring and Molecular Scaffold Co-Doped g-C3N4 Heterostructural Nanosheets for Highly Efficient Hydrogen Evolution. Materials Research Bulletin 2021, 144, 111482
[21] Huang, H.; Hu, K.; Xue, C.; Wang, Z.; Fang, Z.; Zhou, L.; Sun, M.; Xu, Z.; Kou, J.*; Wang, L.*; Lu, C.* Metal-Free -Conjugated Hybrid g-C3N4 with Tunable Band Structure for Enhanced Visible-Light Photocatalytic H2 Production. Journal of Materials Science & Technology 2021, 87 (2), 207-215.
[22] Chen, Y.; Wang, Y.; Fang, J.; Dai, B.; Kou, J.*; Lu, C*.; Zhao, Y.* Design Of A Zno/Poly(Vinylidenefluoride) Inverse Opal Film For Photon Localization-Assisted Full Solar Spectrum Photocatalysis. Chinese Journal of Catalysis 2021, 42, 184-192.
[23] Chen, Y.; Wang, Q; Huang H.; Kou, J.*; Lu, C*.; Xu Z. Effective Solar Driven H2 Production By Mn0.5Cd0.5Se/g-C3N4 S-Scheme Heterojunction Photocatalysts. International Journal of Hydrogen Energy, 2021, 46(64), 32514-32522.
[24] Chen, Y.; Wang, Q; Kou, J.*; Lu, C*.; Xu Z. Efficient Photocatalytic H2 Production Realized by MnxCd(1-x)Se In situ Heterojunction. Nanotechnology, 2021, 32(36), 365602.
[25] Dai, B.; Fang, J.; Yu, Y; Sun, M.; Huang, H.; Lu C.*; Kou, J.*; Zhao Y.*; Xu Z. Construction of Infrared-Light-Responsive Photoinduced Carriers Driver for Enhanced Photocatalytic Hydrogen Evolution, Advanced Materials, 2020, 32, 1906361. (封面文章)
[26] Huang, H.; Wang, Z.; Luo, B.; Chen, P.; Lin, T.; Xiao, M.; Wang, S.; Dai, B.; Wang, W.; Kou, J.*; Lu, C.*; Xu, Z.; Wang, L.* Design of Twin Junction with Solid Solution Interface for Efficient Photocatalytic H2 Production, Nano Energy, 2020, 104410.
[27] Dai, B.; Chen Y.; Hao, S.; Huang H.; Kou, J.*; Lu C.*; Lin Z.; and Xu Z. Sustainable Internal Electric Field for Enhanced Photocatalysis: From Material Design to Energy Utilization. Journal Physical Chemistry Letters 2020, 11, 7407−7416.
[28] Chen Y.; Fang J.; Dai, B.; Wei, H.; Kou, J.*; Lu C.* Seaweed bio-inspired ZnO piezoelectric cilia array applied in microreactors for enhanced photocatalytic performance. Catalysis Science & Technology 2020, 10, 2337-2342.
[29] Wu, W.; Yin, X.; Dai, B.; Kou, J.*; Ni, Y.*; Lu C.* Water flow drived piezo-photocatalytic flexible films: Bi-piezoelectric integration of ZnO nanorods and PVDF. Applied Surface Science, 2020, 517, 146119
[30] Chen, Y.; Wang, Y.; Fang, J.; Dai, B.; Kou, J.*; Lu, C*.; Zhao, Y.* Design of a ZnO/Poly(vinylidenefluoride) inverse opal film for photon localization-assisted full solar spectrum photocatalysis. Chinese Journal of Catalysis, 2021, 42, 184-192.