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88. Dejian Tang, et al. Novel carbon based electrocatalysts for Zn-air cells, Under Review.

87. Zhengjiang Zhu, et al. Metal carbon based electrocatalysts, to be submitted.

86. Jing Dai,  Peng Chen, Fancheng Meng*, Feizi Han, Chenming Zhu, Xiangfeng Wei, Lianxi Zheng, Jiehua Liu*Starch-reinforced adhesive hydrogel electrolyte enables high-performance flexible zinc-air batteriesJournal of Energy Storage, 2024, 114035.  https://doi.org/10.1016/j.est.2024.114035

85. Kui Fu#, Biao Ma#Jianling Liu, Meng Zhou, Yihai Xing, Xiangfeng Wei, Fancheng Meng, and Jiehua Liu*. In-situ green architecture of 3D FeZn-N-C based electrocatalyst for efficient oxygen reduction Chemcial Communcations, 2024, 60, 10366 - 10369. https://doi.org/10.1039/D4CC02697G

84. Fancheng Meng#, Peng Chen#, Shulin Li#, Na Cao, Sheng Cheng, Xiangfeng Wei, Jiangtao Di, Jiehua Liu*. Fish-Gill-Inspired Underwater Self-Breathing Zinc–Air BatteriesACS Applied Energy Materials, 2024, DOI: 10.1021/acsaem.4c01992..

83Ke JinXinpeng Yan,Jun Li, Meng Zhou, Kui Fu, Xiangfeng Wei, Fancheng Meng, Jiehua Liu*. Recent Progress in Aqueous Underwater Power Batteries, Discover Applied Sciences, 2024, 6, 441. 10.1007/s42452-024-06118-3.

82Dongning Zhang#, Xiangfeng Wei#, Fei Wang, Hangyu Tang, Weiqiao Deng, Jiehua Liu*. Biphasic Interfacial Swimming Top-Down Growth of Ruddlesden-Popper Halide Perovskite Single-Crystal Sheets with Few Defects Advanced Optical Materials, 2024, 12(22), 2400617. https://doi.org/10.1002/adom.202400617

81Meng Zhou, Kui Fu, Yihai Xing, Jianling Liu, Fancheng Meng, Xiangfeng Wei, Jiehua Liu*. 500 mW cm-2 Underwater Zn-H2O2 Batteries with Ultrafine Edge-Enriched Electrocatalysts. SCIENCE CHINA Materials, 2024, 67(9), 2908 - 2914.  https://doi.org/10.1007/s40843-024-2990-1


80. 詹思遥;王亚姣;蔡志欢;阿依扎达-买买提玉米尔;段体兰;魏香凤*;王琪;刘节华;孔祥华*, 探索跨越时空的元素大学化学, 2024, 39(9), 5-10. https://www.dxhx.pku.edu.cn/CN/10.12461/PKU.DXHX202403071

79. Zhou, Qisen; Liu, Xiaoxuan; Liu, Zonghao; Zhu, Yanqing; Lu, Jianfeng; Chen, Ziming; Li, Canjie; Wang, Jing; Xue, Qifan; He, Feifei; Liang, Jia; Li, Hongyu; Wang, Shenghao ; Tai, Qidong; Zhang, Yiqiang; Liu, Jiehua; Zuo, Chuantian; Ding, Liming; Xiong, Zhenghong; Zheng, Renhao; Zhang, Huimin; Zhao, Pengjun; Jin, Xi; Wu, Pengfei; Zhang, Fei; Jiang, Yan; Zhou, Huanping; Hu, Jinsong; Wang, Yang; Song, Yanlin; Mai, Yaohua; Xu, Baomin; Liu, Shengzhong; Han, Liyuan; Chen, Wei, Annual Research Review of Perovskite Solar Cells in 2023Materials Futures, 2024, 3 022102. http://doi.org/10.1088/2752-5724/ad42ba

78. Jiehua Liu*, Meng Zhou, Ke Jin, Jun Li, Fancheng Meng, Xiangfeng Wei. Beyond Metal--Air Battery, Emerging Aqueous Metal--Hydrogen Peroxide Batteries with Improved Performance. Battery Energy 2024, 3(2), 20230049. DOI: http://doi.org/10.1002/bte2.20230049

77. Shulin Li, Yixin ZhaoPengfei ShiJie ZhouJiale Long, Na Cao, Jiehua Liu, Fancheng Meng*. Joule heating activation of template-mediated carbon fibers with significantly enhanced capacitive performanceAdvanced Engineering Materials 2023, 2300402, https://doi.org/10.1002/adem.202300402.

76. Zhanhui He, Xinyi Dou, Weilin Liu, Luxian Zhang, Laixi Lv, Jiehua Liu*, Fancheng Meng*. Yeast-Derived Sulfur Host for the Application of Sustainable Li–S Battery Cathode. Batteries 2023, 9(6), 289; https://doi.org/10.3390/batteries9060289.

75. Yudan Chen#, Wenjun Huang#, Xiangfeng Wei*, Panpan Li, Zain Fatima, Rulong Zhou*, and Jiehua Liu*Single-crystal MAPbI3 microwires arrays by bilayer flexible interface confinement method for photodetectorsCrystEngComm, 2023, 25(22), 3271-3277. https://doi.org/10.1039/D3CE00129F.

74. Liangyu Jin#, Aiming Xing#, Zhenjiang Zhu, Kui Fu, Meng Zhou, Fancheng Meng, Xiangfeng Wei and Jiehua Liu*, In-situ potential-regulated architecture of ultrafine Ru-based electrocatalyst for ultralow overpotential lithium-oxygen batteriesChemical Communications2023, 59(39), 5926-5929. https://doi.org/10.1039/D3CC00589E

 RSC英国皇家化学会: 新策略制备超细催化剂实现锂氧电池超低过电势

73Zhenjiang Zhu,  Liangyu Jin,  Meng Zhou,  Kui Fu,  Fancheng Meng,  Xiangfeng Wei, and Jiehua Liu* Single-cell-array biomass templated architecture of hierarchical porous electrocatalysts for Zn-air and Zn-H2O2 batteries. Chemical Communications, 202359, 4356-4359. https://doi.org/10.1039/D2CC06915F

72. Panpan Li#, Wenjun Huang#, Wenchao Xu, Xiangfeng Wei, Yudan Chen, Fancheng Meng, Weiqiao Deng, and Jiehua Liu*, In situ polymer-imprinted architecture of textured perovskite single-crystal sheets for ultraweak-light photodetection. Advanced Optical Materials, 2023,11, 2201876.   https://doi.org/10.1002/adom.202201876

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71. Yao Li, Weilin Liu, Fancheng Meng*, Yuze Chen, Haitong Wu, Jiehua Liu*. From purple sweet potato to sustainable lithium-sulfur batteriesMaterials Letters, 2022, 325, 132893. https://doi.org/10.1016/j.matlet.2022.132893. 

70. Hu Liu, Weilin Liu, Fancheng Meng*, Liangyu Jin, Shulin Li, Sheng Cheng, Shudong Jiang, Rulong Zhou*, Jiehua Liu*. Natural nori-based porous carbon composite for sustainable lithium–sulfur batteries, Science China-Technological Sciences, 2022,  65, 2380–2387. https://doi.org/10.1007/s11431-022-2148-7

69. Yixin Zhao, Hu Liu, Shulin Li, Pengqi Chen, Shudong Jiang, Jiehua Liu, Fancheng Meng*. Rapid joule-heating activation boosted capacitive performance of carbon fibers,  Composites Communications2022, 34, 101263,  https://doi.org/10.1016/j.coco.2022.101263

68. Xiujia Wu, Panpan Li, Xiangfeng Wei,* Jiehua Liu*. All-Inorganic Perovskite Single Crystals for Optoelectronic Detection. Crystals. 2022; 12(6):792. https://doi.org/10.3390/cryst12060792.

67. Cuiyu Yue#, Nian Zhang#, Zhenjiang Zhu, Peng Chen, Fancheng Meng, Xiaosong Liu, Xiangfeng Wei, Jiehua Liu*. Multi-strategy architecture of high-efficient electrocatalysts for underwater Zn-H2O2 batteries with superior power density of 442 mW cm-2, Small, 2022,18(12), 2106532. 10.1002/smll.202106532.

MaterialsViews: 离子液体/热/磁多策略协同构筑高效电催化剂 

国家能源科技资源中心:合工大团队研发锌-双氧水水下电池的高效电催化剂

科学材料站新型安全高功率Zn-H2O2水下电池获突破

66. Zheng-Han Guo, Cuiyu Yue, Kai-Qin Ou, Li-Fu Wu, Qiu-Yu Lv, Jie-Ying Lin, Pei-Ru Chen, Jie-Hua Liu*, Sai Huang, Jin-Kun Li, Jun-Ling Song* Amorphous C,N Codoping Cobalt Phosphates Simply Fabricated via a Mild Host–Guest Strategy as Bifunctional Electrocatalysts for Zinc–Air Batteries, Energy Technology, 2022, 10(2), 2100940.

65. Fancheng Meng*, Bin Xu, Tao Long, Sheng Cheng, Yong Li, Yongyi Zhang, Jiehua Liu*ZnS nanolayer coated hollow carbon spheres with enhanced rate and cycling performance for Li-S batteries, Science China-Technological Sciences, 2021, 65, 272–281. https://doi.org/10.1007/s11431-021-1925-2

64. Wenchao Xu#, Xiangfeng Wei#, Daoyuan Zheng, Wenjun Huang, Panpan Li, Yudan Chen, Fancheng Meng, Jiehua Liu*. Biphasic Liquid-Liquid Interface-Limit Architecture of High-Quality Perovskite Single-Crystal Sheets for UV Photodetection. Journal of Physical Chemistry Letters, 2021, 12(41), 10052–10059. DOI: 10.1021/acs.jpclett.1c02905

63. Bin Xu, Yixin Zhao, Hu Liu, Sheng Cheng, Jiehua Liu, Fancheng Meng*. Nanolayer GO coated CNT film interlayer for lithium-sulfur batteries with enhanced cycling stability. Materials Letters 2021, 305, 130753.  DOI: 10.1016/j.matlet.2021.130753

62. Tao LongBin XuYixin ZhaoHu LiuSheng ChengYongyi ZhangJiehua LiuFancheng Meng*. Self-Assembled Bipolar Metals with Hollow Carbon Spheres for High-Performance Li–S Battery Cathodes, ACS Applied Energy Materials, 2021, 4(11), 12745–12753.doi:10.1021/acsaem.1c02449

61. Xiangfeng Wei#, Han Liu#,Zhixiang Zhang, Wenchao Xu, Wenjun Huang, Lin-Bao Luo*, and Jiehua Liu*.  Low-temperature architecture of cubic-phase CsPbBr3 single crystal for ultrasensitive weak-light photodetector. Chemical Communications, 2021, 57, 7798 - 7801. DOI: 10.1039/D1CC03460J.

60. Wenchao Xu#, Wenjun Huang#, Xiujia Wu, Xiangfeng Wei*, Fancheng Meng and Jiehua Liu*. Two-Dimensional Perovskite Single Crystals for Photodetectors: From Macro to Microscale.  Physica Status Solidi (RRL) - Rapid Research Letters 2021, 15, 2100183. DOI: 10.1002/pssr.202100183.

59.Zhuangzhuang Wang,# Wenwei Sun,# Dejian Tang,# Weilin Liu, Fancheng Meng, Xiangfeng Wei and Jiehua Liu*. In Situ Interfacial Architecture of Lithium Vanadate Based Cathode for Printable Lithium Batteries, iScience, 2021, 24(6), 102666. DOI:10.1016/j.isci.2021.102666

58. Dong-Sheng Pan, Peng Chen, Ling-Li Zhou, Jiehua Liu*, Zheng-Han Guo, Jun-Ling Song*, Self-template construction of 2D amorphous N-doped CoFe-mesoporous phosphate microsheets for zinc-air batteries. Journal of Power Sources 2021, 498, 229859.

57. Changhao Lin, Shaohong Luo, Fancheng Meng*, Bin Xu, Tao Long, Yixin Zhao, Haibing Hu, Lianxi Zheng, Kin Liao, Jiehua Liu*, MXene/air-laid paper composite sensors for both tensile and torsional deformations detection. Composites Communications 2021, 25, 100768.

56. Weilin Liu, Xiaojing Fan, Tao Long, Peng Chen, Dejian Tang, Fancheng Meng*, Rulong Zhou*, and Jiehua Liu*. MnO-Inlaid Hierarchically Porous Carbon Hybrid for Lithium-Sulfur Batteries. Nano Select, 2021, 2(3), 573-580. 10.1002/nano.202000157. 

 MaterialsViews: Nano Select:MnO修饰多级孔碳材料在锂硫电池中的应用 

55. Deming Zhu#, Tao Long#, Bin Xu, Yixin Zhao, Haitao Hong, Rujie Liu, Fancheng Meng*, Jiehua Liu. Recent advances in interlayer and separator engineering for lithium-sulfur batteries. Journal of Energy Chemistry2021, 57, 41-60. https://doi.org/10.1016/j.jechem.2020.08.039

54. Zhuangzhuang Wang#, Peng Chen#, Weilin Liu, Lingsong Xu, Fancheng Meng, Xiangfeng Wei and Jiehua Liu*. Ionic-liquid assisted architecture of amorphous nanoporous zinc-rich carbon-based microstars for lithium storage. Chemical Communications, 2020, 56(81), 12206-12209. DOI: 10.1039/D0CC04916F

53. Fancheng Meng*, Tao Long, Bin Xu, Yixin Zhao, Zexuan Hu, Luxian Zhang and Jiehua Liu*. Electrolyte Technologies for High Performance Sodium-Ion CapacitorsFrontiers in Chemistry, 2020, 8, 652. doi: 10.3389/fchem.2020.00652.

52. Tao Long, Fancheng Meng,* Bin Xu, Yixin Zhao, Weilin Liu, Xiangfeng Wei, Lianxi Zheng and Jiehua Liu*Nitrogen-doped carbon nanotubes interwind porous carbon with enhanced cathode performance in lithium-sulfur batteries. Sustainable Energy & Fuels2020, 4(8), 3926-3933. https://doi.org/10.1039/D0SE00583E.

51. Peng Chen, Keyi Zhang, Dejian Tang, Weilin Liu,  Fancheng Meng, Weiqiu Huang, and  Jiehua Liu*, Recent Progress in Electrolytes for Zn-air Batteries. Frontiers in Chemistry. 2020, 8, 372. doi: 10.3389/fchem.2020.00372

50. Lingsong Xu, Jiehua Liu*, Peng Chen, Zhuangzhuang Wang, Dejian Tang, Xiaosong Liu, Fancheng Meng, and Xiangfeng Wei. High-Power Aqueous Zn-H2O2 Batteries for Multiple Applications, Cell Reports Physical Science. 2020, 1(3), 100027. DOI: 10.1016/j.xcrp.2020.100027  (Cell Press 新刊)

49. Lingsong Xu #, Fancheng Meng #, Xiangfeng Wei, Changhao Lin, Lianxi Zheng *, Jiehua Liu *. Large-scale multirole Zn(II) programmed synthesis of ultrathin hierarchically porous carbon nanosheets. Science China Technological Sciences, 2020, 63, 1730–1738. DOI:10.1007/s11431-019-1510-0

48.  Xiangfeng Wei,  Jiehua Liu*, Han Liu, Xunyong Lei, Haisheng Qian,  Hualing  Zeng,  Fancheng  Meng,  Weiqiao  Deng,  Large-Scale Ligand-Free Synthesis of Homogeneous Core-Shell Quantum-Dot Modified Cs4PbBr6 Microcrystals, Inorganic Chemistry, 2019, 58(16), 10620-10624.  10.1021/acs.inorgchem.9b01980 .

47. Fancheng Meng,# Xiaojing Fan,# Aiming Xing, Han Liu, Changhao Lin, Zhuangzhuang Wang, Lingsong Xu, Lianxi Zheng, Jiehua Liu*. Sodium polyacrylate-derived porous carbon nanosheets for high-performance lithium-sulfur batteries, Sustainable Energy & Fuels2019, 3 (4), 942-947. DOI: 10.1039/C8SE00543E

46. Han Liu,# Xiangfeng Wei,# Zhixiang Zhang, Xunyong Lei, Wenchao Xu, Linbao Luo, Hualing Zeng, Ruifeng Lu, and Jiehua Liu* Microconcave MAPbBr3 Single Crystal for High-Performance PhotodetectorThe Journal of Physical Chemistry Letters2019, 10, 786-792. DOI: 10.1021/acs.jpclett.9b00038
ACS精选论文:提升光电探测特性的新策略:钙钛矿单晶的微凹面构筑
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45. Xiaojing Fan,# Furui Tan,# Fancheng Meng, Jiehua Liu*. Hierarchical Porous N-Doped Carbon Nanosheets by Organic-Inorganic Bipolymeric Engineering for Improved Lithium-Sulfur BatteriesChemistry - A European Journal2019, 25(16), 4040-4046. https://doi.org/10.1002/chem.201805803.

44. Xiangfeng Wei,# Xiaoqian Liu,# Han Liu, Shangfeng Yang,* Hualing Zeng, Fancheng Meng, Xunyong Lei  and Jiehua Liu*, Exfoliated graphitic carbon nitride self-recognizing CH3NH3PbI3 grain boundaries by hydrogen bonding interaction for improved perovskite solar cellsSolar Energy2019, 181, 161-168. https://doi.org/10.1016/j.solener.2019.01.095

43. Poting Liu, Yunyi Wang, Jiehua Liu*. Biomass-derived porous carbon materials for advanced lithium sulfur batteriesJournal of Energy Chemistry, 2019, 34, 171-185. https://doi.org/10.1016/j.jechem.2018.10.005.

42. Xiaojing Fan#, Aiming Xing#, Wenwei Sun, Ruifeng Lu, An Li, Xiangfeng Wei, Fancheng Meng, Jiehua Liu*, Smart short-chain bifunctional N,N-dimethylethanolamine for high-performance lithium batteriesElectrochimica Acta, 2018, 282, 711-719.

41. Han, D.; Xie, P.*; Fan, G.; Chen, M.; Sun, K.; Zhang, Z.*; Liu, J.*, Three-dimensional graphene network supported by poly phenylene sulfide with negative permittivity at radio-frequency. Journal of Materials Science: Materials in Electronics 2018, 29 (24), 20768-20774.

40. Fancheng Meng, Xiangfeng Wei and Jiehua Liu *, Three-Dimensional Graphene Foams for Energy Storage Applications, Graphene in Energy, Healthcare and Environmental Applications, Handbook on the Graphene Materials, WILEY-Scrivener Publisher, USA 2019, 49-92.

39. Gong, Y.; He, Y.; Li, A.; Wang, Y.*; Liu, J.*; Qi, T., Palladium-ytterbium bimetallic electrocatalysts supported on carbon black, titanium suboxide, or poly(diallyldimethylammonium chloride)-functionalized titanium suboxide towards methanol oxidation in alkaline media. Ionics 2018, 24, 3085-3094,10.1007/s11581-018-2506-6.

38. Nan He, Yafeng Gong, Yidi Yang, Yi Wang, Chuanguang Qin, Rumin Wang, Jiehua Liu, Tao Qi. An effective Pd@ Ni-B/C anode catalyst for electro-oxidation of formic acid, International Journal of Hydrogen Energy, 2018, 43, 3216-3222.

37. Yafeng Gong, Nan He, Chuanguang Qin, Jiehua Liu, Hui Zhang, Yi Wang, Tao Qi, Nitrogen-doped carbon-modified titanium oxides supported Pd catalyst for the electrooxidation of formic acid, Journal of Solid State Electrochemistry, 2018, 22, 2623-2628.

36. Xiangfeng Wei, Mengmeng Zhang, Xiaoqian Liu, Fang Chen, Xunyong Lei, Han Liu, Fancheng Meng, Hualing Zeng, ShangfengYang,* Jiehua Liu,* Semitransparent CH3NH3PbI3 Films Achieved by Solvent Engineering for Annealingand Electron Transport Layer-Free Planar Perovskite Solar Cells, Solar RRL, 2018, 2, 1700222, https://doi.org/10.1002/solr.201700222

35. Jiehua Liu *, Xiangfeng Wei and Fancheng Meng, Lithium Titanate Based Lithium-Ion Batteries, Advanced Battery Materials, WILEY-Scrivener Publisher, USA 2019, 87-157.

34. Xiaojing Fan, Wenwei Sun, Fancheng Meng, Aiming Xing, and Jiehua Liu *. Advanced chemical strategies for lithium-sulfur batteries: A reviewGreen Energy & Environment2018, 3(1), 2-19. https://doi.org/10.1016/j.gee.2017.08.002.

33. Jiehua Liu,* Wei Chen, Aiming Xing, Xiangfeng Wei and Dongfeng Xue. Lithium Cell-Assisted Low-Overpotential Li-O2 Batteries by In Situ Discharging ActivationChem. Commun., 201753, 10568-10571, DOI:10.1039/C7CC05871C. Highlighted by THE SURG

32. Wenwei Sun,  Jiehua Liu,*  XIaoqian Liu,  Xiangjing Fan,  Kuan Zhou  and  Xiangfeng Wei,Bimolecular-inducing hierarchical nanoporous LiTi2(PO4)3/C with superior high-rate and cycling performanceChem. Commun., 2017, 53, 8703-8706. DOI: 10.1039/C7CC04432A. Highlighted by X-MOL
31. Kuan Zhou1, Xiaojing Fan1, Wei Chen, Fang Chen, Xiangfeng Wei, An Li and Jiehua Liu *. Nitrogen-doped Li4Ti5O12/carbon hybrids derived from inorganic polymer for fast lithium storageElectrochimica Acta 2017, 247, 132-138. DOI: 10.1016/j.electacta.2017.06.175.

30. Rao, D.; Zhang, L.; Wang, Y.-H.; Meng, Z.; Qian, X.; Liu, J.; Shen, X.*; Qiao, G.; Lu, R.-F.*, Mechanism on the Improved Performance of Lithium Sulfur Batteries with MXene-based AdditivesThe Journal of Physical Chemistry C 2017, 121 (21), 11047–11054. DOI:10.1021/acs.jpcc.7b00492.

29. Dewei Rao, Lingyan ZhangZhaoshun MengXirui ZhangYunhui WangGuanjun QiaoXiangqian ShenHui XiaJiehua Liu and Ruifeng Lu*, Ultrahigh energy storage and ultrafast ion diffusion in borophene-based anodes for rechargeable metal ion batteries. Journal of Materials Chemistry A, 2017, 5, 2328-2338.

28. Kuan Zhou, Xiaojing Fan, Xiangfeng Wei and Jiehua Liu *. The strategies of advanced cathode composites for lithium-sulfur batteriesSCIENCE CHINA Technological Sciences, 2017, 60(2), 175-185. 
27. Wei Chen, Yafeng Gong and Jiehua Liu*Recent advances in electrocatalysts for non-aqueous Li-O2 batteriesChinese Chemical Letters.  2017, 28 (4), 709-718.
26. Fang Chen, XIaoqian Liu, Xiangfeng Wei and Jiehua Liu*Advances in ABX3 films for perovskite based solar cells. 2016, 30(5) Acceptance for publication. (Invited Review)
25. Feng Ren, Zhao-Qi Zhu, Xin Qian, Wei-Dong Liang, Peng Mu, Han-Xue Sun, Jiehua Liu and An Li*. Novel thiophene-beared conjugated microporous polymer honeycomb-liked porous spheres with ultrahigh Iodine uptakeChemical Communications., 2016, 52, 9797-9800. DOI: 10.1039/C6CC05188J
24. Xiangfeng Wei and Jiehua Liu*Nanocuboid TiO2 Based Organic-Inorganic Hybrids for Fast RhB Trapping and Photodegradation, Solar Energy Materials and Solar Cells. 2016, 157, 139–145. DOI:10.1016/j.solmat.2016.05.034.
23. Mengyu Luan, Junling Song, Xiangfeng Wei, Fang Chen and Jiehua Liu *Controllable Growth of Bulk Cubic-Phase CH3NH3PbI3 Single Crystal with Exciting Room-Temperature StabilityCrystEngComm, 2016, 18, 5257-5261. DOI: 10.1039/C6CE00375C 
22. Peng Mu, Hanxue Sun, Zhaoqi Zhu, Weidong Liang, Jiehua Liu, An Li*. Synthesis and Properties of Nitrogen-Containing Conjugated Microporous Polymers. Macromolecular Materials and Engineering, 2016, 301, 353–485. DOI: 10.1002/mame.201500383.
21. Mengyu Luan. XIaoqian Liu, Fang Chen, Xiangfeng Wei and Jiehua Liu*, Recent Advances in Controllable Growth of Lead Halide Perovskite crystals, Journal of Henan University (Natural Science), 2016, 46, 276-285. (Invited Review)
20 JIaqi Xu, Kuan Zhou, Fang Chen, Wei Chen, Xiangfeng Wei, Xue-Wei Liu,* and Jiehua Liu *Natural integrated carbon architecture for rechargeable lithium-sulfur batteries. ACS Sustainable Chemistry & Engineering, 2016, 4, 666-670. DOI: 10.1021/acssuschemeng.5b01258.
19  Jiehua Liu,* Anli Shen, Xiangfeng Wei, Kuan Zhou, Wei Chen, Fang Chen, Jiaqi Xu, Shuangyin Wang* and Liming Dai*.Ultrathin Wrinkled N-Doped Carbon Nanotubes for Noble-Metal Loading and Oxygen Reduction Reaction.  ACS Applied Materials & Interfaces, 2015, 7 (37), 20507–20512. DOI: 10.1021/acsami.5b07554.
18  Jiehua Liu,* Anli Shen, Xiangfeng Wei, Shuangyin Wang,* Kuan Zhou and Jiaqi Xu. Homogenous Core-Shell Nitrogen-Doped Carbon Nanotubes for Oxygen Reduction ReactionChemElectroChem, 2015, 2, 1892-1896.
17. Jiehua Liu,* Xiangfeng Wei and Xue-Wei Liu*. Two-dimensional wavelike spinel lithium titanate for fast lithium storageScientific Reports2015, 5, 9782.
16 Jiehua Liu,* Jiaqi Xu, Kuan Zhou, Lei Wang and Xiangfeng Wei. Amorphous titanate-crosslinking N-rich carbon hybrid with 3D channels for fast lithium storageRSC Advances. 2015, 5, 34088-34093.
15 Xiangfeng Wei, Jiehua Liu* and Xue-Wei Liu. Ultrafine dice-like anatase TiO2 for highly efficient dye-sensitized solar cells.  Solar Energy Materials and Solar Cells. 2015, 134, 133-139.
14 Jiehua Liu* and Xiangfeng Wei. Supercritical Synthesis of Layered Elongated Hexagonal Titanium Phosphate Nanoplates RSC Advances, 2015. 5(10), 7798-7802.

13 Jiehua Liu* and Xue-Wei Liu*. Two-dimensional nano-architecture for lithium storageAdvanced. Materials. 2012, 24, 4097-4111.

12 Yi Wang, Jiehua Liu, Kean Wang, Tao Chen, Xin Tan, Chang Ming Li“. Hydrogen storage in Ni-B nanoalloy-doped 2D grapheneInternational Journal of Hydrogen Energy2011, 36, 12950-12954. 
11 Yi Wang, Chun Xian Guo, Jiehua Liu, Tao Chen, Hongbin Yang, Chang Ming Li“. CeO2 nanoparticles/graphene nanocomposite-based high performance supercapacitorDalton Transactions201140, 6388-6391 .
10 Xiangfeng Wei, Jiehua Liu,* Yun Zhi Chua, Junling Song and Xue-wei Liu*. Fabrication of O (Dye)-Terminated Anatase TiO2 Nanosheets for Dye Sensitized Solar CellsEnergy & Environmental Science, 2011 4, 2054-2057.
Jiehua Liu, Xiangfeng Wei, Xin Wang and Xue-wei Liu*. High-yield synthesis of ultrathin silica-based nanosheets and their superior catalytic activity in H2O2 decomposition, Chemical Communications2011, 47, 6135–6137.

Jiehua Liu, Jun Song Chen, Xiangfeng Wei, Xiong-Wen Lou* and Xue-Wei Liu*. Sandwich-like Stacked Ultrathin Titanate Nanosheets for Ultrafast Lithium StorageAdvanced Materials2011, 23, 998-1002. ChemistryViews & Nanowerk spotlights (Nanomaterials for next-generation ultrafast lithium storage)

Jiehua Liu,* Xiangfeng Wei, Yaolun Yu, Xin Wang, Wei-Qiao Deng* and Xue-Wei Liu*. ‘Nanoreactors’ for photocatalytic H2 evolution in oil-water biphase systemsPhysical Chemistry Chemical Physics2010, 43, 14449-14451. Research highlight by Natue Asia Materials (Alternative energy: Going forward)

Jiehua Liu, Xiangfeng Wei, Yaolun Yu, Junling Song, Xin Wang,An Li, Xue-Wei Liu*,and Wei-Qiao Deng*.Uniform Core-Shell Titanium Phosphate Nanospheres with Orderly Open Nanopores: a Highly Active Bronsted Acid Catalyst. Chem. Commun.201046,1670-1672.
5 Jiehua Liu, Jianling Zhang, Siqing Cheng, Zhiming Liu, Buxing Han*. DNA-Mediated Synthesis of Microporous Crystalline Sodium Titanium Phosphate NanospheresSmall2008, 4, 1796-1779.
4 Jiehua Liu, Siqing Cheng, Jianling Zhang, Xiaoying Feng, Xiangang Fu, Buxing Han*, Reverse Micelles in Carbon Dioxide with Ionic Liquid DomainsAngew. Chem. Int. Ed.,2007, 46, 3313-3315; Angew. Chem.2007,119,3377-3379 (Hot Paper)
Jiehua LiuBuxing Han, Syntheses and modification of polymer in supercritical dioxide carbon: a review. In: Frontier and Progress of Polymer Research Ⅱ.2009, 88-114. (Natural Science Foundation of China) 
2 Siqing Cheng, Xiangan Fu, Jiehua Liu, Jiangling Zhang, Zhaofu Zhang, Yiliang Wei, Buxing Han*, Study of ethylene glycol/TX-100/ionic liquid microemulsions, Colloids and Surfaces A2007, 302, 211-215. 
1 Jiehua Liu, Jianling Zhang, Siqing Cheng, Chaoxin Zhang, Buxing Han, Synthesis of Well-Ordered Crystalline Titanium Phosphate Nanobars in Near Critical Ethanol. The 5th International Symposium on Supercritical Fluids (Korea), 2007, P01-48