1、代表性项目
(1)启航计划:“负载型光电催化膜材料的可控制备及其在采出水中的处理和应用研究”(2024QHZ016)(10万元,主持)
(2)中国石油天然气集团科技创新基金:“多孔负载型光催化剂在油气田采出水中的处理与利用”(RDCUD2024-CX01-08)(30万元,主持)
(3)中国自然科学基金面上项目: “光热催化H2S和CO2高值低碳协同转化体系构建及反应过程强化研究” (52574012)(50万, 主研,2/10)
(4)西南石油大学科研启动基金(20万元)
2、代表性论文
[1]Zhou, Y., Mazur, F., Fan, Q., and Chandrawati, R. Synthetic nanoprobes for biological hydrogen sulfide detection and imaging. View, 2022, 3, 20210008. (作者标注:一作)
[2]Zhou, Y., Mazur, F., Liang, K., and Chandrawati, R. Sensitivity and Selectivity Analysis of Fluorescent Probes for Hydrogen Sulfide Detection. Chem Asian J. 2022, 17, e202101399. (作者标注:一作)
[3]Zhou, Y., Yang, T., Namivandi-Zangeneh, R., Boyer, C., Liang, K. and Chandrawati, R. Copper-Doped Metal-Organic Frameworks for the Controlled Generation of Nitric Oxide from Endogenous S- nitrosothiols. J Mater Chem B. 2021, 9, 1059-1068.(作者标注:一作)
[4]Zhou, Y., Yang, T., Liang, K. and Chandrawati, R., Metal-Organic Frameworks for Therapeutic Gas Delivery. Adv Drug Deliv Rev, 2021, 171, 199-214.(作者标注:一作)
[5] Zhou, Y., Chen, Y., He, H., Liao, J., Duong, H. T., Parviz, M., and Jin, D. A homogeneous DNA assay by recovering inhibited emission of rare earth ions-doped upconversion nanoparticles. J. Rare Earths, 2019, 37 (1), 11-18.(作者标注:一作)
[6] Mazur, F., Zhou, Y., Ng, G. et al. Nitric oxide-generating metallic wires for enhanced metal implants. Commun Mater,2024, 5, 120. (作者标注:副导一作、本人二作)
[7] Geng, S., Zhou, Y., Ng, G., Fan, Q., Cheong, S., Mazur, F., Boyer, C. and Chandrawati, R., Selenium nanoparticles as catalysts for nitric oxide generation. Colloid Surface B,2025,25,114592. (作者标注:指导学生一作、本人二作)
[8]Mazur, F., Tjandra, A.D., Zhou, Y., Gao, Y., Chandrawati, R., Paper-Based Sensors for Bacteria Detection. Nat Rev Bioeng. 2023, 1(3), 180-192. (作者标注:副导一作、本人三作)
[9]Luo, Z., Zhou, Y., Yang, T., Gao, Y., Kumar, P., and Chandrawati, R. Ceria Nanoparticles as an Unexpected Catalyst to Generate Nitric Oxide from S‐Nitrosoglutathione. Small, 2022, 18, 2105762. (作者标注:二作)
[10] Luo, Z., Ng, G., Zhou, Y., Boyer, C., and Chandrawati, R. Polymeric Amines Induce Nitric Oxide Release from S-Nitrosothiols. Small, 2023, 19, 2200502.(作者标注:二作)
[11] Yang, T., Zhou, Y., Cheong, S., Kong, C., Mazur, F., Liang, K., and Chandrawati, R. Modulating Nitric Oxide-Generating Activity of Zinc Oxide by Morphology Control and Surface Modification. Mater. Sci. Eng. C.,2021, 130, 112428.(作者标注:二作)
[12] Gao, Y., Zhou, Y., and Chandrawati, R. (2019). Metal and Metal Oxide Nanoparticles to Enhance the Performance of Enzyme-Linked Immunosorbent Assay (ELISA). ACS Appl. Nano Mater., 2019, 3 (1), 1-21.(作者标注:二作)
[13] Ren, W., Zhou, Y., Wen, S., He, H., Lin, G., Liu, D., and Jin, D., DNA-mediated anisotropic silica coating of upconversion nanoparticles. ChemComm., 2018, 54 (52), 7183-7186. (作者标注:二作) |