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2021年论文

01. C. C. Zhao, S. Y. Xiong, H. L. Li, Z. H. Li, C. Qi, H. Yang, L. N. Wang*, Y. Zhao*, T. X. Liu*. A dendrite-free composite Li metal anode enabled by lithiophilic Co, N codoped porous carbon nanofibers.

J. Power Sources, 2021, 483: 229188. [2021_01.pdf]




02. L. Tang, J. L. Zhang*, Y. S. Tang, J. Kong, T. X. Liu, J. W. Gu*. Polymer matrix wave-transparent composites: A review.

J. Mater. Sci. Technol., 2021, 75: 225-251. [2021_02.pdf]




03. B. M. Ma, X. L. Wang, Y. He, Z. Dong, Xu Zhang*, X. Chen*, T. X. Liu. Effect of poly(lactic acid) crystallization on its mechanical and heat resistance performances.

Polymer, 2021, 212: 123280. [2021_03.pdf]




04. Xu Zhang, J. L. Wang*, T. X. Liu*. 3D printing of polycaprolactone-based composites with diversely tunable mechanical gradients via multi-material fused deposition modeling.

Composites Communications, 2021, 23: 100600. [2021_04.pdf]




05. S. L. Liu, Q. C. Feng, C. Zhang*, T. X. Liu*. Molten salt-confined pyrolysis towards carbon nanotube-backboned microporous carbon for high-energy-density and durable supercapacitor electrodes.

Nanotechnology, 2021, 32(9): 095605. [2021_05.pdf]




06. S. J. Yuan, W. Fan*, D. Wang, L. S. Zhang, Y. E. Miao, F. L. Lai, T. X. Liu*. 3D printed carbon aerogel microlattices for customizable supercapacitors with high areal capacitance.

J. Mater. Chem. A, 2021, 9: 423-432. [https://doi.org/10.1039/D0TA08750E]




07. S. L. Liu, K. N. Wan, C. Zhang*, T. X. Liu*. Polyaniline-decorated 3D carbon porous network with excellent electrolyte wettability and high energy density for supercapacitors.

Composites Communications, 2021, 24: 100610. [2021_07.pdf]




08. Z. H. Lu#*, F. Sui#, Y. E. Miao#, G. H. Liu, C. Li, W. Dong, J. Cui, T. X. Liu, J. X. Wu*, C. L. Yang*. Polyimide separators for rechargeable batteries.

Journal of Energy Chemistry, 2021, 58: 170-197. [2021_08.pdf]




09. C. Qi, H. L. Li, J. Wang, C. C. Zhao, C. M. Fu, L. N. Wang*, T. X. Liu*. Metal‐organic‐framework‐derived porous carbon embedded with TiO2 nanoparticles as a cathode for advanced Lithium-Sulfur batteries.

ChemElectroChem, 2021, 8(1): 90-95. [2021_09.pdf]




10. A. Wang, Y. F. Wang, B. Zhang, K. N. Wan, J. X. Zhu, J. S. Xu, C. Zhang*, T. X. Liu*. Hydrogen-bonded network enables semi-interpenetrating ionic conductive hydrogels with high stretchability and excellent fatigue resistance for capacitive/resistive bimodal sensors.

Chemical Engineering Journal, 2021, 411: 128506. [2021_10.pdf]




11. G. J. Chao, X. Y. An, L. S. Zhang, J. Tian, W. Fan*, T. X. Liu. Electron-rich platinum electrocatalysts supported onto tin oxides for efficient oxygen reduction.

Composites Communications, 2021, 24: 100603. [2021_11.pdf]




12. C. Y. Zhou, J. Wang, X. B. Zhu, K. Chen, Y. Ouyang, Y. Wu, Y. E. Miao*, T. X. Liu. A dual-functional poly(vinyl alcohol)/poly(lithium acrylate) composite nanofiber separator for ionic shielding of polysulfides enables high-rate and ultra-stable Li-S batteries.

Nano Research, 2021, 14(5): 1541-1550. [2021_12.pdf]




13. H. L. Li, W. Y. Xue, W. C. Xu, L. N. Wang*, T. X. Liu. Controllable synthesis of sulfurized polyacrylonitrile nanofibers for high performance lithium-sulfur batteries.

Composites Communications, 2021, 24: 100675. [2021_13 .pdf]




14. K. W. Xu, Y. F. Wang, B. Zhang, C. Zhang*, T. X. Liu. Stretchable and self-healing polyvinyl alcohol/cellulose nanofiber nanocomposite hydrogels for strain sensors with high sensitivity and linearity.

Composites Communications, 2021, 24: 100677. [2021_14.pdf]




15. Z. C. Liu, K. N. Wan, T. Y. Zhu, J. X. Zhu, J. S. Xu, C. Zhang*, T. X. Liu. Superelastic, fatigue-resistant, and flame-retardant spongy conductor for human motion detection against a harsh high-temperature condition.

ACS Applied Materials & Interfaces, 2021, 13(6): 7580-7591. [2021_15.pdf]




16. W. Zong, N. B. Chui, Z. H. Tian, Y. Y. Li, C. Yang, D. W. Rao, W. Wang, J. J. Huang*, J. T. Wang, F. L. Lai*, T. X. Liu. Ultrafine MoP Nanoparticle Splotched Nitrogen‐Doped Carbon Nanosheets Enabling High‐Performance 3D‐Printed Potassium‐Ion Hybrid Capacitors.

Advanced Science, 2021, 2004142. [2021_16.pdf]




17. Y. Lv#*, J. J. Xia#, Y. Yang, Y. Z. Chen, T. X. Liu. Thin-film composite membranes with mineralized nanofiber supports for highly efficient nanofiltration.

Composites Communications, 2021, 24: 100695. [2021_17.pdf]




18. Y. Y. Chen, G. Y. Zhou, W. Zong, Y. Ouyang, K. Chen, Y. Lv*, Y.-E. Miao*, T. X. Liu*. Porous polymer composite separators with three-dimensional ion-selective nanochannels for high-performance Li-S batteries.

Composites Communications, 2021, 25: 100679. [2021_18.pdf]




19. S. J. Yuan, W. Fan*, Y. N. Jin, D. Wang, T. X. Liu*. Free-standing flexible graphene-based aerogel film with high energy density as an electrode for supercapacitors.

Nano Materials Science, 2021, 3(1): 68-74. [2021_19.pdf]




20. Y. Xu, Q. C. Feng, C. Zhang*, T. X. Liu. Wet-spinning of ionic liquid@elastomer coaxial fibers with high stretchability and wide temperature resistance for strain sensors.

Composites Communications, 2021, 25: 100693. [2021_20.pdf]




21. Y. Zheng, S. Chen, K. A. I. Zhang*, J. X. Zhu, C. Zhang*, T. X. Liu. Ultrasound-triggered assembly of covalent triazine framework for synthesizing heteroatom-doped carbon nanoflowers boosting metal-free bifunctional electrocatalysis.

ACS Applied Materials & Interfaces, 2021, 13: 13328-13337. [2021_21.pdf]




22. G. J. Chao, L. S. Zhang, J. Tian, W. Fan*, T. X. Liu. Pd-SnO2 heterojunction catalysts anchored on graphene sheets for enhanced oxygen reduction.

Composites Communications, 2021, 25: 100703. [2021_22.pdf]




23. B. Zhang, Xu Zhang, K. N. Wan, J. X. Zhu, J. S. Xu, C. Zhang*, T. X. Liu*. Dense hydrogen-bonding network boosts ionic conductive hydrogels with extremely high toughness, rapid self-recovery, and autonomous adhesion for human-motion detection.

Research, 2021, 2021: 9761625. [2021_23.pdf]




24. H. Song, Y. L. Sun, J. X. Zhu, J. S. Xu, C. Zhang*, T. X. Liu*. Hydrogen-bonded network enables polyelectrolyte complex hydrogels with high stretchability, excellent fatigue resistance and self-healability for human motion detection.

Composites Part B: Engineering, 2021, 217: 108901. [2021_24.pdf]




25. F. Yang, X. Y. Zhao, T. T. Xue, S. J. Yuan, Y. P. Huang, W. Fan*, T. X. Liu*. Superhydrophobic polyvinylidene fluoride/polyimide nanofiber composite aerogels for thermal insulation under extremely humid and hot environment.

Science China Materials, 2021, 64(5): 1267-1277. [2021_25.pdf]




26. Y. F. Wang, Y. Liu, R. Plamthottam, M. Tebyetekerwa, J. S. Xu, J. X. Zhu, C. Zhang*, T. X. Liu*. Highly stretchable and reconfigurable ionogels with unprecedented thermoplasticity and ultrafast self-healability enabled by gradient-responsive networks.

Macromolecules, 2021, 54(8): 3832-3844. [2021_26.pdf]




27. T. T. Xue, W. Fan*, X. Zhang, X. Y. Zhao, F. Yang, T. X. Liu*. Layered double hydroxide/graphene oxide synergistically enhanced polyimide aerogels for thermal insulation and fire-retardancy.

Composites Part B: Engineering, 2021, 219: 108963. [2021_27.pdf]




28. G. J. Chao, L. S. Zhang*, T. T. Xue, J. Tian, W. Fan, T. X. Liu*. Lattice-strain and electron-density modulation of palladium nanocatalysts for highly efficient oxygen reduction.

Journal of Colloid and Interface Science, 2021, 602: 159-167. [2021_28.pdf]




29. C. C. Zhao, X. Yao, H. Yang, X. X. Jiao, L. N. Wang*. Hierarchical porous carbon nanofibers with lithiophilic metal oxide crystalline grains for long-life Li metal anodes.

Composites Communicatinos, 2021, 26: 100789. [2021_29.pdf]




30. G. Y. Zhou, L. L. Mo, C. Y. Zhou, Y. Wu, F. L. Lai, Y. Lv, J. M. Ma, Y. E. Miao*, T. X. Liu*. Ultra-strong capillarity of bioinspired micro/nanotunnels in organic cathodes enabled high-performance all-organic sodium-ion full batteries.

Chemical Engineering Journal, 2021, 420: 127597. [2021_30.pdf]




31. Y. F. Wang, M. Tebyetekerwa, Y. Liu,  M. Wang, J. X. Zhu, J. S. Xu, C. Zhang*, T. X. Liu*. Extremely stretchable and healable ionic conductive hydrogels fabricated by surface competitive coordination for human-motion detection.

Chemical Engineering Journal, 2021, 420: 127637. [2021_31.pdf]




32. H. Li, W. Y. Xue, L. N. Wang*, Tianxi Liu. Two competing reactions of sulfurized polyacrylonitrile produce high-performance lithium-sulfur batteries.

ACS Applied Materials & Interfaces, 2021, 13(21): 25002-25009. [2021_32.pdf]




33. Y. L. Zheng, X. Huang, J. L. Chen, K. C. Wu, J. L. Wang*, Xu Zhang*. A review of conductive carbon materials for 3D printing: Materials, technologies, properties, and applications.

Materials, 2021, 14(14): 3911. [2021_33.pdf]




34. Y. Ouyang, W. Zong, J. Wang, Z. Xu, L. L. Mo, F. L. Lai, Z.-L. Xu, Y. E Miao*, T. X. Liu*. Multi-scale uniform Li regulation triggered by tunable electric field distribution on oxygen-functionalized porous framework for flexible Li-S full batteries.

Energy Storage Materials, 2021, 42: 68-77. [2021_34.pdf]




35. Tianyi Zhang; Wei Zong; Yue Ouyang; Yue Wu*; Yue‑E Miao*; Tianxi Liu. Carbon fiber supported binary metal sulfide catalysts with multi‑dimensional structures for electrocatalytic nitrogen reduction reactions over a wide pH range.

Advanced Fiber Materials, 2021, 3: 229-238. [2021_35.pdf]




36. Xiaohui Yu; Yong Zheng; Haopeng Zhang; Yufei Wang; Xiaoshan Fan*; Tianxi Liu*. Fast-recoverable, self-healable, and adhesive nanocomposite hydrogel consisting of hybrid nanoparticles for ultrasensitive strain and pressure sensing.

Chemistry of Materials, 2021, 33(15): 6146–6157. [2021_36.pdf]




37. Chunyang Zhou; Wei Zong; Gangyong Zhou; Xiaoshan Fan; Yue-E Miao*. Radical-functionalized polymer nanofiber composite separator for ultra-stable dendritic-free lithium metal batteries.

Composites Communications, 2021, 25: 100696. [2021_37.pdf]




38. Xu Zhang; Xiaoshan Fan*. Discovery of unusual morphological evolution of A-graft-(B-block-C) graft terpolymers by tuning the length of B component.

Chemical Physics Letters, 2021, 784: 139090. [2021_38.pdf]




39. Xu Zhang; Jialiang Chen; Lin Xu*; Tianxi Liu*. Supramolecular self-assembly behaviors of asymmetric diblock copolymer blends with hydrogen bonding interactions between shorter blocks modelled by Yukawa potentials.

Chinese Journal of Polymer Science, 2021, 39(11): 1502 -1509. [2021_39.pdf]




40. Yi Yang; Wei Fan*; Shijia Yuan; Jing Tian; Guojie Chao; Tianxi Liu*. A 3D-printed integrated MXene-based evaporator with a vertical array structure for salt-resistant solar desalination.

Journal of Materials Chemistry A, 2021, 9(42): 23968-23976. [2021_40.pdf]




41. Xiaohui Yu; Yufei Wang; Haopeng Zhang; Xiaoshan Fan*; Tianxi Liu*. Ultrastretchable and stable conductive elastomer based on micro-ionicgel for wide-working-range sensors.

ACS Applied Materials & Interfaces, 2021, 13(44): 53091-53098. [2021_41.pdf]




42. Peiru Shi; Yufeng Wang; Weng Weei Tjiu; Chao Zhang*; Tianxi Liu. Highly stretchable, fast self-healing, and waterproof fluorinated copolymer ionogels with selectively enriched ionic liquids for human-motion detection.

ACS Applied Materials & Interfaces, 2021, 13(41): 49358-49368. [2021_42.pdf]




43. Shujun Zheng; Xiaobo Zhu; Yue Ouyang; Kai Chen; Ai-Long Chen; Xiaoshan Fan; Yue-E Miao*; Tianxi Liu; Yi Xie*. Metal-organic framework decorated polymer nanofiber composite separator for physiochemically shielding polysulfides in stable lithium-sulfur batteries.

Energy Fuels, 2021, 35(23): 19154-19163. [2021_43.pdf]




44. Lulu Mo; Ai-Long Chen; Yue Ouyang; Wei Zong; Yue-E Miao*; Tianxi Liu*. Asymmetric sodiophilic host based on a Ag-modified carbon fiber framework for dendrite-free sodium metal anodes.

ACS Applied Materials & Interfaces, 2021, 13(41): 48634-48642. [2021_44.pdf]




45. Wei Zong; Hele Guo; Yue Ouyang; Lulu Mo; Chunyang Zhou; Guojie Chao; Johan Hofkens; Yang Xu; Wei Wang; Yue-E Miao; Guanjie He; Ivan P. Parkin; Feili Lai*; Tianxi Liu*. Topochemistry-driven synthesis of transition-metal selenides with weakened van der Waals force to enable 3D-printed Na-ion hybrid capacitor.

Advanced Functional Materials, 2021, 2110016. [2021_45.pdf]




46. Qichun Feng; Kening Wan; Chao Zhang*; Tianxi Liu*. Cryo-spun encapsulation of polyaniline-based conducting hydrogels with high sensitivity, wide-range linearity and environmental stability for fibrous strain sensors. 

Journal of Polymer Science2021, 1-10. [2021_46.pdf]

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