代表性论文
49. Yitong Wang, Zhaomin Hao,* et al. Fenton-nacive Cd enables highly selective O2-derived Domino reacion, Advanced Science, 2024, DOI: 10.1002/advs.202407051.
48. Ya Wang, Yitong Wang, Zhaomin Hao,* et al. Boosting the electrochemical O2-to-H2O2 synthesis by revamping the FeMo catalyst with N/O co-doped surface, Chemical Engineering Journal, 2023, 460, 141673.
47. Yulu Yang, Zhaomin Hao,* et al. Enhanced Electrochemical O2-to-H2O2 Synthesis Via Cu-Pb Synergistic Interplay, Small, 2022, 18, 2106534.
46. Wenjie Wu, Zhaomin Hao,* et al. Boosting electrosynthesis of urea from N2 and CO2 by defective Cu-Bi, Chem Catalysis, 2022, 2, 3225.
45. Zhaomin Hao, Oleksandr Voznyy,* et al. Underappreciated Role of Low-Energy Facets in Nitrogen Electroreduction, ACS Material Letters, 2021, 3, 327. (Cover Figure)
44. Zhaomin Hao, Yong Zhao*, et al. A bimetallic oxide Fe1.89Mo4.11O7 electrocatalyst with highly efficient hydrogen evolution reaction activity in alkaline and acidic media, Chemical Science, 2018, 9, 5640.
43. Zhaomin Hao, Hongjie Zhang*, et al. A europium(III) based metal-organic framework: bifunctional properties related to sensing and electronic conductivity, Journal of Materials Chemistry A, 2014, 2, 237.
42. Zhaomin Hao, Hongjie Zhang*, et al. One-dimensional channel-structured Eu-MOF for sensing of small organic molecules and Cu2+ ion, Journal of Materials Chemistry A, 2013, 36, 11043.
41. Xiaoyu Shi, Zhaomin Hao*, et al. Nanohybridization of Keggin polyoxometalate clusters and reduced graphene oxide for lithium-ion batteries, Journal of Nanoparticle Research, 2021, 23, 41.
40. Pei-Xi Wang, Zhaomin Hao, Oleksandr Voznyy*, et al. Structural distortion and bandgap increase of two-dimensional perovskites induced by trifluoromethyl substitution on spacer cations, The Journal of Physical Chemistry Letters, 2020, 11(23), 10144.
39. Kamalpreet Singh, Zhaomin Hao, Oleksandr Voznyy*, et al. Manganese MOF enables efficient oxygen evolution in acid, ACS Materials Letters, 2020, 2(7), 798.
38. Ya Wang, Zhaomin Hao*, et al. Influence of the S:Ni ratio in raw materials on the NixSy electrocatalysts, Applied Surface Science, 2019, 491, 590.
37. Yiyue Chu, Zhaomin Hao*, et al. High temperature solid-state synthesis of dopant-free Fe2Mo3O8 for lithium ion batteries, Inorganic Chemistry Communications, 2019, 107, 107477.
36. Yuqing Wang, Zhaomin Hao*, et al. Biomolecule-assisted synthesis and electro-catalytic hydrogen evolution of flowerlike nickel sulfide nanostructures, Journal of Nanoscience and Nanotechnology, 2019, 19(7), 4305.
35. Zhiqiang Fang, Zhaomin Hao*, et al. Bimetallic NiFe2O4 synthesized via confined carburization in NiFe-MOFs for efficient oxygen evolution reaction, Journal of Nanoparticle Research, 2018, 20, 106.
34. Yizhen Zou, Zhaomin Hao*, et al. Sulfur powder as a reducing agent to synthesize the Ni@Ni(OH)2 flower-like material for electrochemical capacitors, Journal of Nanoscience and Nanotechnology, 2018, 18, 7732.
33. Min Wang, Xiuxun Han*, Zhaomin Hao, et al. Tuning size of MoS2 in MoS2/graphene oxide heterostructures for enhanced photocatalytic hydrogen evolution, Journal of Materials Science, 2018, 53(5), 3603.
32. Min Wang, Xiuxun Han*, Zhaomin Hao, et al. In situ ion exchange synthesis of MoS2/g-C3N4 heterojunctions for highly efficient hydrogen production, New Journal of Chemistry, 2018, 42(2), 910.
31. Zhiqiang Fang, Zhaomin Hao*, et al. One-pot synthesis of nickel sulfide with sulfur powder as sulfur source in solution and their electrochemical properties for hydrogen evolution reaction, Inorganic Chemistry Communications, 2017, 79, 1.
30. Jiajia Li, Xiuxun Han*, Zhaomin Hao, et al. Facile preparation of Cu3BiS3 nanorods film through a solution dip-coating process, Journal of Materials Science: Materials in Electronics, 2017, 28(23), 17772.
29. Min Wang, Xiuxun Han*, Zhaomin Hao, et al. Facile synthesis of MoS2/g-C3N4/GO ternary heterojunction with enhanced photocatalytic activity for water splitting, ACS Sustainable Chemistry & Engineering, 2017, 5(9), 7878.
28. Zhaomin Hao, Yong Cui*, et al. Synthesis of wurtzite Cu2ZnSnS4 nanocrystals via solvothermal route and their application in photovoltaic devices, Materials Letters, 2016, 183, 268.
27. Zhaomin Hao, Gang Wang*, et al. Colloidal synthesis of zincblende Cu3InZnSnS6 nanocrystals and their optical property, Materials Letters, 2015, 147, 237.
26. Zhaomin Hao, Gang Wang*, et al. Colloidal synthesis of wurtzite CuInS2 nanocrystals and their photovoltaic application, Materials Letters, 2015, 146, 77.
25. Shuna Zhao, Zhaomin Hao, Hongjie Zhang*, et al. Lanthanide ion codoped emitters for tailoring emission trajectory and temperature sensing, Advanced Functional Materials, 2015, 25 (9), 1463.
24. Xuezhi Song, Zhaomin Hao, Hongjie Zhang*, et al. Single Crystal to Single Crystal transformation of a europium (III) metal–organic framework producing a multi responsive luminescent sensor, Advanced Functional Materials, 2014, 24 (26), 4034.
23. Liang Zhou, Zhaomin Hao, Hongjie Zhang*, et al. Efficient blue-green and green electroluminescent devices obtained by doping iridium complexes into hole-block material as supplementary light-emitting layer, Journal of luminescence, 2014, 148, 6.
22. Min Zhu, Zhaomin Hao, Hongjie Zhang*, et al. A new type of double-chain based 3D lanthanide (III) metal–organic framework demonstrating proton conduction and tunable emission, Chemical Communications, 2014, 50 (15), 1912.
21. Xing Meng, Zhaomin Hao, Hongjie Zhang*, et al. A stable, pillar-layer metal–organic framework containing uncoordinated carboxyl groups for separation of transition metal ions, Chemical Communications, 2014, 50 (48), 6406.
20. Shuna Zhao, Zhaomin Hao, Hongjie Zhang*, et al. A series of metal–organic frameworks constructed from a V-shaped tripodal carboxylate ligand: syntheses, structures, photoluminescent, and magnetic properties, Crystal Growth & Design, 2013, 13 (7), 2756.
19. Mingxing Song, Zhaomin Hao, Hongjie Zhang*, et al. Density functional theory and time dependent density functional theory study on a series of iridium complexes with tetraphenylimidodiphosphinate ligand, Journal of Physical Organic Chemistry, 2013, 26 (10), 840.
18. Mingxing Song, Zhaomin Hao, Hongjie Zhang*, et al. Efficient blue‐emitting Ir (III) complexes with phenyl‐methyl benzimidazolyl and picolinate ligands: A DFT and time dependent DFT study, International Journal of Quantum Chemistry, 2013, 113 (11), 1641.
17. Zhaomin Hao, Hongjie Zhang*, et al. Design and synthesis of enantiomerically pure chiral sandwich-like lamellar structure: new explorations from molecular building blocks to 3D morphology, Crystal Growth & Design, 2013, 13, 976-980.
16. Xuezhi Song, Zhaomin Hao, Hongjie Zhang*, et al. Employing tripodal carboxylate ligand to construct Co (II) coordination networks modulated by N-donor ligands: syntheses, structures and magnetic properties, Dalton Transactions, 2013, 42 (36), 13231.
15. Xing Meng, Zhaomin Hao, Hongjie Zhang*, et al. Supramolecular isomerism, single-crystal to single-crystal transformation induced by release of in situ generated I2 between two supramolecular frameworks, Dalton Transactions, 2013, 42 (16), 5619.
14. Xuezhi Song, Zhaomin Hao, Hongjie Zhang*, et al. Two high-connected metal–organic frameworks based on d 10-metal clusters: syntheses, structural topologies and luminescent properties, Dalton Transactions, 2013, 42 (23), 8183.
13. Xing Meng, Zhaomin Hao, Hongjie Zhang*, et al.A multifunctional proton-conducting and sensing pillar-layer framework based on [24-MC-6] heterometallic crown clusters, Chemical Communications, 2013, 49 (76), 8483.
12. Liang Zhou, Zhaomin Hao, Hongjie Zhang*, et al. Efficient white electroluminescent device with stable emission spectrum, Acta Chimica Sinica, 2012, 70 (18), 1904.
11. Shengqun Su, Zhaomin Hao, Hongjie Zhang*, et al. Lanthanide anionic metal–organic frameworks containing semirigid tetracarboxylate ligands: structure, photoluminescence, and magnetism, Crystal Growth & Design, 2012, 12 (4), 1808.
10. Min Zhu, Zhaomin Hao, Hongjie Zhang*, et al. A series of POM/Ag-based hybrids: distinct forms and assembly of [AgxLy] complexes through combinational effects of POM and isomeric ligands, CrystEngComm, 2012, 14 (20), 6452.
9. Shuyan Song, Zhaomin Hao, Hongjie Zhang*, et al. Syntheses, structures and physical properties of transition metal–organic frameworks assembled from trigonal heterofunctional ligands, Dalton Transactions, 2012, 41 (34), 10412.
8. Min Zhu, Zhaomin Hao, Hongjie Zhang*, et al. Spin canting magnetization in a 3D Cu (II) complex based on molybdate oxide cluster and 5-triazole isophthalic acid, Dalton Transactions, 2012, 41 (43), 13267.
7. Xuezhi Song, Zhaomin Hao, Hongjie Zhang*, et al. Syntheses, structures, and photoluminescent properties of coordination polymers based on 1, 4-bis (imidazol-l-yl-methyl) benzene and various aromatic dicarboxylic acids,Crystal Growth & Design, 2012, 12 (1), 253.
6. Chao Qin, Zhaomin Hao, Hongjie Zhang*, et al. New class of Preyssler-lanthanide complexes with modified and extended structures tuned by the lanthanide contraction effect, Dalton Transactions, 2012, 41 (8), 2399.
5. Shengqun Su, Zhaomin Hao, Hongjie Zhang*, et al. Syntheses, structures, photoluminescence, and magnetic properties of (3, 6)-and 4-connected lanthanide metal–organic frameworks with a semirigid tricarboxylate ligand, Dalton Transactions, 2012, 41 (16), 4772.
4. Ling Zhang, Zhaomin Hao, Fang Luo*, et al. Synthesis, Structure, and Magnetic Properties of Three Novel Sandwich type Tungstobismuthates with Triethanolamine, Zeitschrift Für Anorganische und Allgemeine Chemie, 2010, 636 (11), 1991.
3. Yi Zhang, Zhaomin Hao, Fang Luo*, et al. Controlling the synthesis of novel chiral polyoxometalate-based compounds and racemic compounds from the same system, Dalton Transactions, 2010, 39 (30), 7012.
2. Zhaomin Hao, Fang Luo*, et al. Two organic-inorganic hybrid framework with the helical structure and large cavities constructed from poly(oxomolybdophosphates), CrystEngComm, 2010, 12, 977.
1. Zhaomin Hao, Fang Luo*, et al. Non-hydrothermal synthesis of a complex {[Zn(phen)2]2(γ-Mo8O26)} constructed from [γ-Mo8O26]4- anions, Z. Naturforsch., 2009, 64b, 395.
科研项目
1. 国家自然科学基金,25万,21401203,科研项目,2015.01-2017.12,郝召民,主持。
2. 中国科学院率先行动引才计划B类候选人,200万,人才项目,2024.4-2027.4,郝召民,主持。
3. 江西省重点研发计划,240万,20243BBG71021,科研项目,2025.1-2027.12,郝召民,主持。