2024年
49. H. Ali, O. Iqbal, M. Sadiq, Y. Cheng, X. Yan, B. A. Alwan, A. Jery, H. Rahman, Y. Qian, A. Hayat, D. Yue*, Z. Ajmal, Novel advancements in fabrication, modulation, and potential applications of conjugated microporous polymer-based materials, Nano Materials Science, Accepted. (IF: 12.6)
48. J. Chen*, X. Luo, Y. Song, L. Shen, S. Zhu, Y. Xie, Y. Qian*, Fabrication of layered SnS2 as co-triboelectric layers for high performance PDMS-based triboelectric nanogenerators, Materials Letters, 372 (2024) 137003. (IF: 2.7) https://doi.org/10.1016/j.matlet.2024.137003.
47. Y. Qian*, Y. Sun, F. Zhang, X. Luo, K. Li, L. Shen, H. Shi*, D. J. Kang, H. Pang*, In situ construction of layered transition metal phosphides/sulfides heterostructures for efficient hydrogen evolution in acidic and alkaline media, Chemical Engineering Journal, 490 (2024) 151693. (IF: 15.1) https://doi.org/10.1016/j.cej.2024.151693.
46. D. Yue, C. Tang, J. Wu, X. Luo, H. Chen*, Y. Qian*, Potassium hydroxide treatment of layered WSe2 with enhanced electronic performances, Nanoscale, 16 (2024) 8345-8351. (IF: 6.7) Front Cover https://doi.org/10.1039/D3NR05432B
45. L. Shen, Y. Qian, D. H. Kim*, D. J. Kang*, A methodological approach for fabricating hybrid CoP2/THQ@NF electrocatalysts for enhanced HER performance, Int. J. Hydrogen Energy, 61 (2024) 996-1003. (IF: 7.139) https://doi.org/10.1016/j.ijhydene.2024.03.011
44. Y. Qian, F. Zhang, X. Luo, Y. Zhong, D. J. Kang*, Y. Hu*, Synthesis and Electrocatalytic Applications of Layered-Structured Metal Chalcogenides Composites, Small, 20, 2024, 2310526. (IF: 13.3) https://doi.org/10.1002/smll.202310526
43. Z. Lyu, Y. Qian, Q. Zhang, Z. Fang, D. J. Kang*, Liquid-phase catalyst pre-seeding for controlled growth of layered MoS2 films over a large area via chemical vapor deposition, Nanoscale, 16 (2024) 1906-1914, (IF: 6.7) https://doi.org/10.1039/D3NR02928J
2023年
42. Y. Qian*, J. Yu, F. Zhang, Z. Fei, H. Shi*, D. J. Kang, H. Pang*, Hierarchical binary metal sulfides nanoflakes decorated on graphene with precious-metal-like activity for water electrolysis, Chem. Eng. J., 470 (2023) 144372. (IF: 15.1) https://doi.org/10.1016/j.cej.2023.144372
41. Y. Qian*, F. Zhang, S. Zhao, C. Bian, H. Mao, D. J. Kang*, H. Pang*, Recent progress of metal-organic framework-derived composites: synthesis and their energy conversion applications, Nano Energy, 111 (2023) 108415. (IF: 17.6) https://doi.org/10.1016/j.nanoen.2023.108415
40. Y. Qian*, J. Yu, Z. Lyu, Q. Zhang, T. H. Lee, H. Pang*, D. J. Kang*, Durable hierarchical phosphorus-doped bi-phase MoS2 electrocatalysts with enhanced H* adsorption, Carbon Energy, 6 (2024) 376. (IF: 20.5) https://doi.org/10.1002/cey2.376
39. Y. Qian, F. Zhang, D. J. Kang*, H. Pang*, A review of metal-organic framework-based compounds for environmental applications, Energy Environ. Mater., 6 (2023) 12414 (IF: 15.0) https://doi.org/10.1002/eem2.12414
38. F. Zhang, Y. Qian*, Z. Jin, Z. Fei, J, Zhang, H. Mao, D. J. Kang*, H. Pang*, Recent advances in MOFs/MXenes composites: Synthesis and their electrochemical energy applications, J. Energy storage, 72 (2023) 108213 (IF: 9.4) https://doi.org/10.1016/j.est.2023.108213
37. Y. Qian*, Z. Lyu, Q. Zhang, T. Lee, T. Kang, M. Sohn, L. Shen, D. H. Kim*, D. J. Kang*, High-performance flexible energy storage devices based on graphene decorated with flower-shaped MoS2 heterostructures, Micromachines, 14 (2023) 297 (IF: 3.523) https://doi.org/10.3390/mi14020297
36. J. Yu,ǁ Y. Qian,ǁ Q. Wang, C. Su, H. Lee*, L. Shang*, T. Zhang*, Single-atomic rhenium-assisted 2H-to-1T phase transformation of MoS2 nanosheets boosting electrocatalytic hydrogen evolution, EES Catal., 1, (2023) 571-579. https://doi.org/10.1039/D3EY00037K
35. J. Yu,ǁ Y. Qian,ǁ S. Seo, Y. Liu, H. T. D. Bui, N. Tran, J. Lee, A. Kumar, H. Wang, Y. Luo, X. Shao, Y. Cho, X. Liu, M. Kim, H. Lee*, Exploring catalytic behaviors of CoS2-ReS2 heterojunction by interfacial engineering, J. Energy Chem., 85 (2023) 11-18. (IF: 13.1) https://doi.org/10.1016/j.jechem.2023.05.030
34. Z. Lyu, Y. Qian, D. J. Kang*, Transferring 2D TMDs through water-soluble sodium salt catalytic layer, Nanotechnology, 34 (2023) 315602. (IF: 3.5) DOI 10.1088/1361-6528/accea9
2022年
33. Y. Qian,ǁ J. Yu,ǁ Y. Zhang, F. Zhang, Y. Kang, C. Su, H. Shi*, D. J. Kang*, H. Pang*, Interfacial microenvironment modulation enhancing catalytic kinetics of binary metal sulfides heterostructures for advanced water splitting electrocatalysts, Small Methods, 6 (2022) 2101186. (IF: 12.4) https://doi.org/10.1002/smtd.202101186
32. J. Zhu, Y. Qian, Z. Li, O. Y. Gong, Z. An, Q. Liu, J. H. Choi, H. Guo, P. Yoo, D. Kim, T. K. Ahn, G. S. Han*, H. S. Jung*, Defect healing in FAPb(I1-xBrx)3 perovskites: multifunctional fluorinated sulfonate surfactant anchoring enables >21% modules with improved operation stability, Adv. Energy Mater., 12 (2022) 2200632. (IF: 27.8) https://doi.org/10.1002/aenm.202200632
31. M. Li, L. Wang, Y. Qian*, J. Du*, Facile synthesis of MoS2/CuS nanoflakes as high performance electrocatalysts for hydrogen evolution reaction, Int. J. Hydrogen Energy, 47, (2022) 5319-5325. (IF: 7.2) https://doi.org/10.1016/j.ijhydene.2021.11.182
2021年
30. Y. Qian, Z. Lyu, D. Kim*, D. J. Kang*, Enhancing the output power density of polydimethylsiloxane-based flexible triboelectric nanogenerators with ultrathin nickel telluride nanobelts as a co-triboelectric layer, Nano Energy, 90 (2021) 106536. (IF: 17.6) https://doi.org/10.1016/j.nanoen.2021.106536
29. Y. Qian,ǁ F. Zhang,ǁ H. Pang*, A review of MOFs and their composites-based photocatalysts: synthesis and applications, Adv. Funct. Mater., 31 (2021) 2104231. (IF: 19.0) https://doi.org/10.1002/adfm.202104231 (ESI 高被引论文)
28. Y. Qian,ǁ J. Yu,ǁ F. Zhang, Y. Kang, C. Su, H. Pang*, Facile synthesis of sub-10 nm ZnS/ZnO nanoflakes for high-performance flexible triboelectric nanogenerators, Nano Energy, 88 (2021) 106256. (IF: 17.6) https://doi.org/10.1016/j.nanoen.2021.106256
27. Y. Qian, L. Wang, J. Du*, H. Yang, M. Li, Y. Wang, D. J. Kang*, A high catalytic activity photocatalysts based on porous metal sulfides/TiO2 heterostructures, Adv. Mater. Interfaces, 8 (2021) 2001627. (IF: 5.4) https://doi.org/10.1002/admi.202001627
26. H. Mao*, F. Zhang, M. Du, L. Dai, Y. Qian*, H. Pang*, Review on synthesis of porous TiO2-based catalysts for energy conversion systems, Ceram. Int., 47 (2021) 25177-25200. (IF: 5.2) https://doi.org/10.1016/j.ceramint.2021.06.039
25. D. Yue, S. Guo, S. Han, P. Cao, Y. Zeng, W. Xu, M. Fang, W. Liu, D. Zhu, Y. Lu*, Y. Qian*, Facile fabrication of MgZnO/ZnO composites for high performance thin film transistor, J. Alloys Compounds, 873 (2021) 159840. (IF:6.2) https://doi.org/10.1016/j.jallcom.2021.159840
24. B. Wang,ǁ L. Wang,ǁ Y. Qian, Y. Yang, T. Isimjan*, X. Yang*, Construction of a self-supporting Ni2P-WO3 heterostructure for highly efficient hydrogen evolution under both caustic and acidic conditions, Sustain. Energy Fuels, 5 (2021) 2884-2892. (IF: 5.6) DOI https://doi.org/10.1039/D1SE00315A
2020年
23. Y. Qian, M. Sohn, W. He, H. Park, K. R. V Subramanian, D. J. Kang*, A high-output flexible triboelectric nanogenerator based on polydimethylsiloxane/three-dimensional bilayer graphene/carbon cloth composites, J. Mater. Chem. A, 33 (2020) 17150-17155. (IF: 11.9)
22. Y. Qian, M. Sohn, H. Park, J. Hwang, K. R. V Subramanian, D. J. Kang*, Universal 2D material film transfer using a novel low molecular weight polyvinyl acetate, Appl. Sur. Sci., 534 (2020) 147650. (IF: 6.7)
21. L. Wang,ǁ Y. Qian,ǁ J. Du*, L. Zhang, G. Li, B. Zhang, W. Wang, D. J. Kang*, Nanoflower-like MoS2 grown on porous TiO2 with enhanced hydrogen evolution activity, J. Alloys Compounds, 821 (2020) 153203. (IF: 6.2)
20. J. Du*, Y. Qian, L. Wang, H. Yang, D. J. Kang*, Facile synthesis of copper sulfides on copper foam as an efficient electrocatalyst for oxygen evolution reaction, Mater. Today Commun., 25 (2020) 101585. (IF: 3.8)
19. A. Rasheed, W. He, Y. Qian, H. Park, D. J. Kang*, Flexible supercapacitor-type rectifier-free self-charging power unit based on a multifunctional polyvinylidene fluoride-ZnO-RGO piezoelectric matrix, ACS Appl. Mater. Interfaces, 12 (2020) 20891-20900. (IF: 9.5)
2019年
18. Y. Qian, J. Du*, D. J. Kang*, Enhanced electrochemical performance of porous Co-doped TiO2 nanomaterials prepared by a solvothermal method, Micro. Meso. Mater., 273 (2019) 148-155. (IF: 5.2)
17. M. Li,ǁ Y. Qian,ǁ J. Du*, H. Wu, L. Zhang, G. Li, K. Li, W. Wang, D. J. Kang*, CuS nanosheets decorated with CoS2 nanoparticles as an efficient electrocatalyst for enhanced hydrogen evolution at all pH values, ACS Sustain. Chem. Eng., 7 (2019) 14016-14022. (IF: 8.4)
16. L. Wang,ǁ Y. Qian,ǁ J. Du*, H. Wu, Z. Wang, G. Li, K. Li, W. Wang, D. J. Kang*, Facile synthesis of cactus-shaped CdS-Cu9S5 heterostructure on copper foam with enhanced photoelectrochemical performance, Appl. Sur. Sci., 492 (2019) 849-855. (IF: 6.7)
15. H. Wu,ǁ Y. Qian,ǁ J. Cui, Q. Chai, J. Du*, L. Zhang, H. Zhang, W. Wang, D. J. Kang*, Enhanced interfacial charge transfer and separation rate based on Sub 10 nm MoS2 nanoflakes in situ grown on graphitic-C3N4, Adv. Mater. Interfaces, 6 (2019) 1900554. (IF: 5.4)
14. M. Li,ǁ Y. Qian,ǁ J. Du*, H. Wu, L. Zhang, G. Li, K. Li, W. Wang, D. J. Kang*, CuS nanosheets decorated with CoS2 nanoparticles as an efficient electrocatalyst for enhanced hydrogen evolution at all pH values, ACS Sustain. Chem. Eng., 7 (2019) 14016-14022. (IF: 8.4)
13. K. Li,ǁ Y. Qian,ǁ H. Zhang, L. Zhang, Q. Chai, Q. Wang, J. Du*, Y. Han, W. Wang, D. J. Kang*, Highly efficient oxygen evolution electrocatalysts based on nanosheet-shaped CuS in situ grown on carbon cloth, Ceram. Int., 45 (2019) 10664-10671. (IF: 5.2)
12. H. Mao*, Z. Fei, C. Bian, L. Yu, S. Chen, Y. Qian*, Facile synthesis of high-performance photocatalysts based on Ag/TiO2 composites, Ceram. Int., 45 (2019) 12586-12589. (IF: 5.2)
2018年之前
11. Y. Qian, D. J. Kang*, Poly(dimethylsiloxane)/ZnO nanoflakes/three-dimensional graphene heterostructures for high-performance flexible energy harvesters with simultaneous piezoelectric and triboelectric generation, ACS Appl. Mater. Interfaces, 10 (2018) 32281-32288. (IF:9.5)
10. Y. Qian,ǁ M. Yang,ǁ F. Zhang, J. Du*, K. Li, X. Lin, X. Zhu, Y. Lu, W. Wang, D. J. Kang*, A stable and highly efficient visible-light-driven hydrogen evolution porous CdS/WO3/TiO2 photocatalysts, Mater. Char., 142 (2018) 43-49. (IF: 4.7)
9. Y. Qian, D. J. Kang*, Large-area high-quality AB-stacked bilayer graphene on h-BN/Pt foil by chemical vapor deposition, ACS Appl. Mater. Interfaces, 10 (2018) 29069-29075. (IF: 9.5)
8. M. Yang,ǁ Y. Qian,ǁ J. Du*, S. Yuan, S. Wang, X. Zhu, X. Lin, K. Li, S. Li, D. J. Kang*, Controlled synthesis of nanoplate, nanoprism and nanopyramid-shaped CdSe decorated on porous TiO2 photocatalysts for visible-light-driven hydrogen evolution, Ceram. Int., 44 (2018) 12555-12563. (IF: 5.2)
7. H. Mao*, Y. Qian*, Z. Jin, Y. Zhang, A facile method for synthesis of Co2Mn(PO4)2 nanorods as high-performance electrodes for supercapacitors, Mater. Lett., 228 (2018) 258-261. (IF: 3.0)
6. W. He, Y. Qian, B. Lee. F. Zhang, A. Rasheed, J. Jung, D. J. Kang*, Ultrahigh output piezoelectric and triboelectric hybrid nanogenerators based on ZnO nanoflakes/polydimethylsiloxane composite films, ACS Appl. Mater. Interfaces, 10 (2018) 44415-44420. (IF: 9.5)
5. Y. Qian, H. Ngoc, D. J. Kang*, Growth of graphene/h-BN heterostructures on recyclable Pt foils by one-batch chemical vapor deposition, Sci. Rep., 7 (2017) 17083. (IF: 4.9)
4. W. He,ǁ H. Ngoc,ǁ Y. Qian, J. Hwang, Y. Yan, H. Choi, D. J. Kang*, Synthesis of ultra-thin tellurium nanoflakes on textiles for high-performance flexible and wearable nanogenerators, Appl. Sur. Sci., 392 (2017) 1055-1061. (IF: 6.7)
3. J. Du*, K. Li, Y. Qian, M. Yang, H. Wang, W. He, V. Harnchana, Porous NiCo2S4 networks as electrodes for electrochemical supercapacitors, Nano, 11 (2016) 1650133. (IF: 1.2)
2. J. Du*, Z. Wang, G. Zhao, Y. Qian, H. Chen, J. Yang, X. Liu, K. Li, C. He, W. Du, I. Shakir*, Facile synthesis and enhanced photocatalytic activity of porous Sn/Nd-codoped TiO2 monoliths, Micro. Meso. Mater., 195 (2014) 167-173. (IF: 5.2)
1. J. Du*, G. Zhao, H. Pang, Y. Qian, H. Liu, D. J. Kang*, A template method for synthesis of porous Sn-doped TiO2 monolith and its enhanced photocatalytic activity, Mater. Lett., 93 (2013) 419-422. (IF: 3.0)