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Publications (in chronological order):

2019 - 2024

[30] Chen, C., Li, Q., Wang, F., Hu, C., & Ma, J. (2024)   Dual-vacancies modulation of 1T/2H heterostructured MoS2-CdS nanoflowers via radiolytic radical chemistry for efficient   photocatalytic H2 evolution. Journal of Colloid   and Interface Science, 661, 345-357.  
[29]Chen, C.,   Sun, T., Chen, Y., Zhang, Y., Feng, N., Wan, H., Guan, G., & Ma,   J. (2024) Anchoring high-density cooperative catalytic sites within   triethylenediamine-based ionic-liquid polymers via microenvironment   modulation for efficient CO2 fixation. Separation and   Purification Technology, 330, 125348.  
[28] 黄博能,姜志文,马骏.辐射/光引发二氧化碳自由基配位实现低碳高效金属铜抗氧化技术[J]. 辐射研究与辐射工艺学报, 2023, 41(1):105-108.
[27] Zhang,   Y., Chen, C., Chen, Z., Zhang, T., Wang, Y., Cao, S., & Ma,   J. (2023). Superior Anticorrosion Performance of Well-Dispersed   MXene-Polymer Composite Coatings Enabled by Covalent Modification and Ambient   Electron-Beam Curing. ACS Applied Materials &   Interfaces, 15, 11099-11110.  
[26] Jiang,   Z., Clavaguéra, C., Hu, C., Denisov, S. A., Shen, S., Hu, F., Ma,   J. & Mostafavi, M., (2023). Direct time-resolved observation of   surfacebound carbon dioxide radical anions on metallic nanocatalysts. Nature Communications, 14,   7116.  
[25] Hu, C.,   Jiang, Z., Wu, Q., Cao, S., Li, Q., Chen, C., Yuan, L., Wang, Y., Yang, W.,   Yang, J., Peng, J., Shi, W., Zhai, M., Mostafavi, M., & Ma, J. (2023).   Selective CO2 reduction   to CH3OH   over atomic dual-metal sites embedded in a metal-organic framework with   high-energy radiation. Nature Communications, 14, 4767.  
[24] Hu, C.,   Cheng, L., Zhou, L., Jiang, Z., Gan, P., Cao, S., Li, Q., Chen, C., Wang, Y.,   Mostafavi, M., Wang, S., & Ma, J. (2023). Radiolytic Water Splitting   Sensitized by Nanoscale Metal-Organic Frameworks.Journal   of the American Chemical Society, 145(9),   5578-5588.  
[23] Wang, F.,   Hu, C., Chen, C., Cao, S., Li, Q., Wang, Y., & Ma, J. (2023). Enhanced   photocatalytic water splitting over nickel-doped CdS nanocomposites   synthesized via one-step controllable irradiation routine at ambient   conditions. Applied Surface Science, 614, 156190.  
[22] Zhang, T.,   Zhang, Y., Chen, C., Tian, Y., Wang, Y., Cao, S., & Ma, J. (2023).   Corrosion-resistant SiO2-graphene oxide/epoxy coating reinforced by effective electron   beam curing. Progress in Organic Coatings, 184, 107855.  
[21] Yu, H.,   Hu, M., Chen, C., Hu, C., Li, Q. Hu, F., Peng, S., & Ma, J. (2023)   Ambient γ-Rays-Mediated Noble-Metal Deposition on Defect-Rich Manganese Oxide   for Glycerol-Assisted H2 Evolution at Industrial Level Current Density, Angew. Chem. Int. Ed. e202314569.  
[20] Chen,   X., Wang, Z., Tang, M., He, Z., Yu, M., Yu, T., Cai, J., Emer, H., Ma, J.,   & Wang. Y. (2023). Reusable Shape-Memory Photonic Crystal Paper for   Pin-Printing and High-Resolution Press Printing. Advanced   Engineering Materials. 25, 2300753.  
[19] Zhou,   L.H., Cao, S., Sun, T., Wang, Y., & Ma, J. (2023). A refined Monte   Carlo code for low-energy electron emission from gold material irradiated   with sub-keV electrons. Nuclear Science and Techniques.34:54.  
[18] 甘平平, 陈先美, 姜志文, 王运龙, 马骏. 纳米材料中辐射诱导缺陷的研究进展[J]. 辐射研究与辐射工艺学报, 2022, 40(5):1-12.
[17] Que, X.,   Li, S., Hu, Y., Zhang, Z., Sheng, L., Lin, T., Ma, J., Peng, J., Li, J.,   & Zhai, M. (2022). Fluorescence Spectroscopy Study on the Reaction of   Hydroxyl Radicals and Hydrated Electrons in MXene Suspension. Journal of Physical Chemistry C,   126(26), 10703-10712.  
[16] Dong,   X., Tian, Y., Wang, F., Chen, C., Wang, Y., & Ma, J. (2022).   Gold-Nanoparticle-Enhanced Radio-Fluorogenic Hydrogel Sensor for Low   Radiation Doses in Clinical Radiotherapy. Polymers, 4841. 
[15] Chen,   C., Wang, H., Feng, N., Wang, Y., Wan, H., Ma, J., & Guan, G. (2022).   Modulated synthesis of N-doped porous carbons via rational design of the   poly(ionic liquid) precursors towards efficient CO2 separation. Colloids and   Surfaces A: Physicochemicaland Engineering Aspects,   644, 128906.  
[14] Wang,   Z., Wang, Y., Ge, Z., Tian, Y., Ai, M., Cao, S., Wang, M., Wang, S., &   Ma, J. (2022). Color-phase readout radiochromic photonic crystal dosimeter. Matter, 5(11), 4060–4075.  
[13] Ai, M.,   Wang, Z., Chen, X., Chen, C., Wang, Y., & Ma, J. (2022). Multi-color   inkless UV printing using angle-independent structural color paper. Journal of Materials Chemistry C,   16446-16452.  
[12] Jiang,   Z., Adjei, D., Denisov, S. A., Mostafavi, M., & Ma, J. (2023). Transient   Kinetics of Short-Chain Perfluoroalkyl Sulfonate with Radiolytic Reducing   Species. Environmental Science & Technology Letters, 10(1), 59-65. 
[11] Jiang,   Z., Yu, M., Cao, S., Li, M., Liu, Y., Wang, Y., Zhang, Z., Guo, W., & Ma,   J. (2022). Durable Oxidation-Resistance of Copper via Light-Powered Bidentate   Binding of Carbon Dioxide Anion Radicals. ACS Materials   Letters, 4(10), 1967-1975.  
[10] Tian,   Y., Hong, Y., Wang, Y., Tian, Y., Wang, Z., Ai, M., & Ma, J. (2022).   Superior stretchable and tough P(AA‐ co ‐AAm)/silica hybrid hydrogels enabled   by acid‐mediated radiation polymerization. Journal of   Applied Polymer Science, 139(38).  
[9] Chen, C.,   Zhang, Y., Li, Q., Wang, Y., & Ma, J. (2022). Guanidine-embedded   poly(ionic liquid) as a versatile precursor for self-templated synthesis of   nitrogen-doped carbons: Tailoring the microstructure for enhanced CO2 capture. Fuel, 125357.  
[8] Shi, P.,   Li, Q., Wang, Y., Weng, H., & Ma, J. (2022). Gas production   from hydrothermal and radiolytic reactions at silicon carbide-water   interfaces. Journal of Nuclear Materials, 563, 153624.  
[7] Chen, C.,   Wang, F., Li, Q., Wang, Y., & Ma, J. (2022). Embedding of SO3H-functionalized ionic   liquids in mesoporous MIL-101(Cr) through polyoxometalate bridging: A robust   heterogeneous catalyst for biodiesel production. Colloids   and Surfaces A: Physicochemical and Engineering Aspects, 648, 129432.  
[6] 胡长江, 马骏. 溶剂化电子研究的前沿进展[J]. 辐射研究与辐射工艺学报, 2021, 39(1):14.
[5] Ma, J.,   Bahry, T., Denisov, S. A., Adhikary, A., & Mostafavi, M. (2021).   Quasi-Free Electron-Mediated Radiation Sensitization by C5-Halopyrimidines. Journal of Physical Chemistry A,   125(36), 7967–7975. 
[4] Hong, Y.,   Wang, Y., Tian, Y., Wang, Z., Hu, C., & Ma, J. (2021). Extracting   Salinity Gradient Energy via Antifouling Poly(acrylic acid-co-acrylamide)   Hydrogels in Natural Water. ACS Applied Polymer Materials, 3(12), 6513-6523.  

[3] Hu, C.,   Al Gharib, S., Wang, Y., Gan, P., Li, Q., Denisov, S. A., Caer, S. L.,   Belloni, J., Ma, J., & Mostafavi, M. (2021). Radiolytic Approach for   Efficient, Selective and Catalyst‐free CO2 Conversion at Room Temperature. ChemPhysChem, 1900-1906. 

[2] Bahry, T., Denisov, S. A., Moisy, P., Ma, J., & Mostafavi, M. (2021). Real-Time Observation of Solvation Dynamics of Electron in Actinide Extraction Binary Solutions of Water and n-Tributyl Phosphate. Journal of Physical Chemistry B, 125(15), 3843-3849.

[1] MA, J., Denisov, S. A., Adhikary, A., & Mostafavi, M. (2019). Ultrafast Processes Occurring in Radiolysis of Highly Concentrated Solutions of Nucleosides/Tides. International Journal of Molecular Sciences, 4963.


 


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