论文著作:
1. Yang Ping,*Shi Tingfei, et al. Synthesis of phenol formaldehyde resin (PFR) based fluorescence resonance energy transfer (FRET) composites for double channel detection of latent fingerprints,RSC advance,2024,2024,14,15647.
2. Yang Ping,*Shi Tingfei, et al. Develop the dual-channel fluorescent mesoporous SiO2 nanosphere-coated yttrium aluminum garnet composites for sensitive detection of latent fingerprints,RSC advance, 2024, 14, 9529.
3. Yang Ping*, Zhang Zikuan, et al. Synthesis of Urchin-like Ni@NP@NCP Composites with Three Solvothermal Systems for Highly Efficient Overall Seawater Splitting, Langmuir, 2023,39(17),6240-6248.
4. Yang Ping*, Sun Wei. Synthesis of mesoporous SiO2 coating containing chlorine phenol–formaldehyde resin (Cl–PFR) composites for effective fingerprint detection. Luminescence. 2022;37:1873–1880.
5. Yang Ping*, Sun Xiagnfei, et al. Hierarchically hexagon-like NiCoP/Co(PO3)2 composites supported on Ni foam as multifunction electrodes for supercapacitors and overall water splitting. Journal of Physics and Chemistry of Solids 2022,162,110511.
6. Sun Xiangfei, Yang Ping* et al. Synthesis of bristlegrass-like Co-doped Ni2P composites on Ni foam for overall seawater splitting. international journal of hydrogen energy. 2022, 47, 28495-28504.
7. Yang Ping*, Ren Menglei, et al. Facile Synthesis of N and P Co-Doped NiMoO4 Hollow Nanowires and Electrochemical Deposition of NiFe-Layered Double Hydroxide for Boosting Overall Seawater Splitting. Journal of The Electrochemical Society, 2022 169 046511.
8. Wang Shaohua, Yang Ping,* et al. Fabrication of the flower-like NiCo2O4@Ni(OH)2/NiOOH composites supported on nickel foam by the green solvent dimethyl sulfoxide with high performance in supercapacitor and hydrogen evolution reaction,Journal of Physics and Chemistry of Solids, 2021, 159, 110257.
9. Wang Shaohua, Yang Ping,* Synthesis of 3D heterostructure Co-doped Fe2P electrocatalyst for overall seawater electrolysis,Applied Catalysis B: Environmental,2021,297,120386.
10. Yang Ping,* Jin,Congcong et. al. Facile synthesis of bimetallic-based CoMoO4/MoO2/CoP oxidized/phosphide nanorod arrays electroplated with FeOOH for efficient overall seawater splitting,Crystengcomm, 2021, 23, 6778-6791.
11. Sun Xiangfei, Yang Ping,* et. al. Fabrication of nanoflower-like MCoP (M=Fe and Ni) composites for high- performance supercapacitors,Langmuir, 2021, 37, 35, 10403–10412.
12. Sun Xiangfei, Yang Ping,* et al. Multifunctional zinc phthalocyanine-phenolic resin (ZnPc-PFR) @MSN nano- composite based fluorescent imaging, photothermal therapy, and pH-sensitive drug release,Journal of Applied Polymer Science,2021,138, 34, e50854.
13. Yang Ping,* Feng Lina, et al. Construction of core-shell Ni@Ni3S2@NiCo2O4 nanoflakes as advanced electrodes for high-performance hybrid supercapacitors,Journal of Physics and Chemistry of Solids, 2021,155, 11011.
14. Wang Shaohua, Yang Ping,* et al. Facile synthesis of novel fluorescent phenol formaldehyde resin nanospheres for drug release,Journal of Applied Polymer Science, 2021,138, 20,e50416.
15. Feng Lina, Yang Ping*, et al. 3D hierarchical flower-like NiMoO4@Ni3S2 composites on Ni foam for high- performance battery-type supercapacitors,Journal of Physics and Chemistry of Solids, 2021, 48, 109697
16. Sun Xiangfei, Yang Ping,*et al. Facile synthesis of up‐conversion cit‐NaYF4:Yb,Tm@phenol formaldehyde resin @Ag composites for the sensitive detection of S2-,Journal of Applied Polymer Science, 2021, 138(3), 49710.
17. Yang Ping *, Wang Shaohua, et al. Facile electrochemical deposition of porous NiCo2S4 on FeCo2O4 array as a positive material for battery-supercapacitor hybrid device,Journal of The Electrochemical Society, 2020, 167(16), 160554.
18. Yang Ping,* Sun Xiangfei, et al. Synthesis of Cit-NaYF4: Yb, Tm@phenolic formaldehyde resin (PFR)@Au composites as an optical sensor for the detection of Cu(II) ions,Optical Materials. 2020, 109, 110326
19. Yang Ping*, Sun Xiangfei, et al. Growth of 3D nanoflower-Like FeCo2O4@Yb-Ni(OH)2 composites on Ni Foam as advanced electrodes for high-performance supercapacitors,Journal of the Electrochemical Society, 2020, 167(10), 102513.
20. Yang Ping,* Liu Songlan, et al. Synthesis of the graphene supported Pd Composites as catalyst for the heck reaction of iodobenzene, acrylic acid and triethylamine,International Journal of Nanoence, 2020, 19(2), 1950012.
21. Yang* Ping, Feng Lina, et al. Synthesis of the urchin-Like NiS@NiCo2S4 composites on nickel foam for high-performance supercapacitors,ChemElectroChem, 2020, 7(1), 175-182
22. Yang Ping,* Nie Taotao, et al. Synthesis of graphene-based solid acid for catalytic reducing of p-nitrophenol,Functional Materials Letters, 2020, 13(1), 1950091.1-1950091.3.
23. Hu Jun, Yang Ping*, et al. Facile synthesis of NiO/nitrogen-doped reduced graphene oxide nanocomposites for the application in supercapacitors,Russian Journal of Physical Chemistry A, 2019, 93(5), 895-901
24. Hu Jun, Yang Ping,* et al. Synthesis of micro/nano‐flower NiXCo-P-O for high‐performance electrochemical supercapacitors,ChemElectroChem,2019,6(3), 928-936.
25. Yang Ping,* Hu Jun, et al. hhA facile approach for the synthesis of porous KTiNbO5 catalyst with good activity for hydrogenation of p-Nitrophenol,Bulletin of Materials Science, 2018, 41, 61.
26. Yang Ping,* Hu Jun, et al. Synthesis of graphene nanosheets modified with the Fe3O4@phenol formaldehyde resin or PFR nanoparticles for their application in bio‐imagine and thermal treatment,Journal of Applied Polymer Science,2017,134(26), 45007
27. Yang Ping*, Dong Hao, et al, Synthesis of fluorescent and low cytotoxicity Phenol Formaldehyde Resin (PFR)@Ag composites for cell imaging and antibacterial activity, Luminescence, 2015,30,1413-1417.
28. Yang Ping *, Xu An-Dong, Xia Jun, He Jie,* et al, Facile Synthesis of highly catalytic activity Ni-Co-Pd-P composite for reduction of the p-nitrophenol ,Applied Catalysis A: General, 2014, 470(30): 89-96.
29. Yang Ping, Jin Sheng-Yu, Xu Qi-Zhi, Yu Shu-Hong*, Decorating Pt-Co Bimetallic Alloy Nanoparticles on Graphene as Sensors for Detection of Glucose by Catalyzing Luminol Chemiluminescence Reaction, Small, 2013, 9(2): 199-204.
30. Yang Ping, Xu Qizhi et al. Synthesis of Multifunctional Ag@Au@Phenol Formaldehyde Resin Particles Loaded with Folic Acids for Photothermal Therapy, Chemistry - A European Journal,2012, 18(30): 9294-9299. (Front Cover)
31. Yang Ping, Xu Qi-Zhi, Jin Sheng-Yu, Lu Yang, Zhao Yang, Xu Xue-Wei, Yu Shu-Hong*, Synthesis of Fe3O4@PFR Core-Shell Nanospheres Loaded with Au Nanoparticles as Magnetic Fluorescence Resonance Energy Transfer (FRET) Nanoprobes for Detection of Thiols in Living Cells. Chemistry - A European Journal,2012, 18(4):1154-1160 .
32. Yang Ping, Zhao Yang, Lu Yang, Xu Qi-Zhi, Xu Xue-Wei, Dong Liang, Yu Shu-Hong*, Phenol Formaldehyde Resin Nanoparticles Loaded with CdTe Quantum Dots: A Fluorescence Resonance Energy Transfer (FRET) Probe for Optical Visual Detection of Copper (II) Ions ACS Nano, 2011,5(3):2147-2154.
33. Yang Ping,* Chen Yonghong, Zhu Qiyong. Sensitive chemiluminescence method for the determination of glutathione, L-cysteine and 6-mercaptopurine, Microchimica Acta 2008, 163(3):263-269.