论文:
1.Huazhen Cao*, et al. TiO2-ZrO2 composite nanotubes supported RuO2 electrode for chlorine evolution at large current density: Stability and failure mechanisms. Applied Surface Science, 2026, 724: 165747.
2.Huazhen Cao*, et al. ReS2/Cu9S5 interface triggers hydrogen spillover for boosting CO2 electroreduction to ethanol with high energy efficiency, Chemical Engineering Journal 2025, 519: 165341.
3. Huazhen Cao*, et al, Crafting CuxS-ReS2 semiconductor with enhanced adsorption capacity to facilitate photoelectrocatalytic ethanol production from CO2, International journal of hydrogen energy, 2024, 69: 68-78
4. Huazhen Cao*, et al, Preparation of Cu2ZnSnS4@TiO2 nanotubes by pulsed electrodeposition for efficiently photoelectrocatalytic reduction of CO2 to ethanol, International journal of hdrogen energy, 2023, 48: 32342-32355.
5. Huazhen Cao*, et al, CO2 photoelectroreduction with enhanced ethanol selectivity by high valence rhenium-doped copper oxide composite catalysts, Journal of Colloid and Interface Science, 2021, 599: 497-506.
6. Huazhen Cao*, et al, Effective combination of CuFeO2 with high temperature resistant Nb-doped TiO2 nanotube arrays for CO2 photoelectric reduction, Journal of Colloid and Interface Science, 2020, 568: 198-206.
7. Huazhen Cao*, et al, A highly active Pt nanocatalysts supported on RuO2 modified TiO2-NTs for methanol electrooxidation with excellent CO tolerance, International Journal of Hydrogen Energy, 2019, 44: 31506-31514.
8. Huazhen Cao*, et al, Embedded CuO nanoparticles@TiO2-nanotube arrays for photoelectrocatalytic reduction of CO2 to methanol, Electrochimica Acta, 2018, 283: 1507-1513.
9.Huazhen Cao, et al, Electrochemical properties of IrO2 active anode with TNTs interlayer for oxygen evolution, Applied Surface Science , 2018, 428: 861-869.
10. Huazhen Cao, et al, A novel approach of preparing ZnO from ammoniacal leaching solution with high chlorine levels based on thermodynamic analysis, Hydrometallurgy, 2017, 171: 306-311.
11. Huazhen Cao, et al, A mechanistic study on electrodeposition of rhenium from acidic solution of ammonium perrhenate, Journal of The Electrochemical Society, 2017, 164 (13): D825-D827.
12.Huazhen Cao, et al, Nucleation/growth mechanism of electrocrystallization for As−Sb alloy in hydrochloric acid system, Trans. Nonferrous Met. Soc. China, 2017, 27: 2291-2299.
13. Huazhen Cao, et al, Enhanced catalytic performance of Pt/TNTs composite electrode by reductive doping of TNTs, Applied Surface Science, 2016, 364: 257-263.
14. Huazhen Cao, et al, Ball-flower -shaped Ni nano particles on Cu modified TiO2 nanotube arrays for electrocatalytic oxidation of methanol, Electrochim Acta, 2014, 125 (12): 275-281.
15. Huazhen Cao, et al, Novel Sb -doped ruthenium oxide electrode with ordered nanotube structure and its electrocatalytic activity toward chlorine evolution. Electrochim Acta, 2013, 91 (3): 234-239.
16. Huazhen Cao, et al, A study on the evolution of arsine during arsenic electrodeposition: The influence of ammonium citrate, Electrochem Commun, 2012, 23 (19): 44-47.
专利:
1.曹华珍,尹泽东,郑国渠,张惠斌,刘铮铮. N+离子修饰的α-PbO多孔电极及其制备方法和电催化合成硼氢化钠的应用,2025,10,10,CN 119177467 B.
2.曹华珍,于淼,马培华,沈益民,陆志强,张惠斌,郑国渠. 一种管状结构TiO2@泡沫钛光催化剂及其制备方法和在有机废水处理上的应, 2024.05.24, CN115321647 B.
3.张丽强,曹华珍,王新令,张惠斌,郑国渠.一种泡沫氧化铜/TNTs光电复合材料的制备方法, 2022.8.23, 中国, CN201910759115.1.
4.张丽强,曹华珍,王新令,张惠斌,郑国渠. 一种脉冲电位模式提高CuO光电催化CO2转化效率的方法, 2021.5.18, 中国, ZL201911083631.3
5.曹华珍,郑国渠,张惠斌,柴大淦. 一种电沉积金属铼的方法,2021.2.26, 中国,ZL201811069404.0.
6.曹华珍,赵国军,张惠斌,侯广亚,唐谊平,郑国渠. 一种钌钽析氯电极及其制备方法和测试方法,2020.11.24, 中国,ZL201910679669.0.
7.曹华珍,莫敏华,林均品,郑国渠,伍廉奎, 一种添加离子液体的乙二醇溶液中钛铝合金阳极氧化的方法, 2017.5.10, 中国, ZL201410797858.5.
8.曹华珍,莫敏华,林均品,郑国渠,伍廉奎, 一种添加氟化物的乙二醇溶液中钛铝合金阳极氧化的方法, 2017.1.12, 中国, ZL201410798497.6.