[1]Xuemei Liao*, Xiaoli Wei, Yunye Wang, Huanqi Gou, Yingchun Yang,Xiaoxiao Luo, Shuang Wang, Xiaopeng Li, JunNi*, Cuong Pham-Huu. An effective way to produce fatty alcohol throughcoupling fatty acid with CO2 hydrogenation over CuZnZrOx/C-Ncatalyst. Journal of Catalysis, 2025, 452: 116455.
[3]Peng Wang, Shaowen Hou, HuanqiGou, Fenghao Guo, Mengchuang Wang, Tianzi Wang, Jinde Liu, Jiangke Tao, HuiPan, Jun Ni*. Amorphous ZnO as anactive catalyst for hydrogen production from ethanol dehydrogenation. InternationalJournal of Hydrogen Energy, 2025, 135: 104-110.
2024年
[1]Yali Zhao, Ziru Wang, Jun Ni, Peilei He*. Self-Assembly ofPolyoxometalate Clusters into Nanostructures with Different Dimensions. EuropeanJournal of Inorganic Chemistry, 2024, 27(21): e202400184.
[4]Yaohui He, Huanqi Gou, Danfeng Zhou, Peng Wang, Shaowen Hou, XinhuiChen, Yixing Wang, Fenghao Guo, Mengchuan Wang, Chi Wang, Jinshu Tian, XiaonianLi, Jun Ni*. Functionalized ligandsmediated microenvironment of Pd@UiO-66-X catalysts for ethanol upgrading ton-butanol, Fuel, 2024, 368: 131477.
[5]Peng Wang, Shaowen Hou, Pengxiang Tu, Bing Xue, Weixin Guan, DongWang, Danfeng Zhou, Yajun He, Xinhui Chen, Yixing Wang, Kegong Fang, XiaonianLi, Jun Ni*. Coordinating theinteraction of ZnO and ZrO2 for an efficient ethanol-to-butadieneprocess, Catalysis Science & Technology, 2024, 14(7): 1822-1836.
2023年
[1]Jinxian Feng, Junyan Li, Lulu Qiao, Dong Liu, Pengfei Zhou, JunNi, Hui Pan*. Reconstructed anti-poisoning surface for enhancedelectrochemical CO2 reduction on Cu-incorporated ZnO. AppliedCatalysis B: Environmental, 2023, 330, 122665.
[2]Jinxian Feng, Xiongwei Zhong, Mingpeng Chen, Pengfei Zhou, LuluQiao, Haoyun Bai, Dong Liu, Di Liu, Yu-Yun Chen, Weng Fai Ip, Shi Chen, JunNi, Detao Liu, Hui Pan*. Iron-incorporated defective graphite by in-situelectrochemical oxidization for oxygen evolution reaction. Journal of PowerSources, 2023, 561, 232700.
[3]Jinxian Feng, Lulu Qiao, Pengfei Zhou, Haoyun Bai, Chunfa Liu, ChonChio Leong, Yuyun Chen, Weng Fai Ip, Jun Ni, Hui Pan*. NanocrystallineCoOx glass for highly-efficient alkaline hydrogen evolutionreaction. Journal of Materials Chemistry A, 2023, 11, 316-329.
2022年
[1]Jinxian Feng, Mingpeng Chen, Pengfei Zhou, Di Liu, Yu-Yun Chen,Bingchen He, Haoyun Bai, Dong Liu, Weng Fai Ip, Shi Chen, Detao Liu, WenlinFeng, Jun Ni, Hui Pan*. Reconstruction optimization of distortedFeOOH/Ni hydroxide for enhanced oxygen evolution reaction. Materials TodayEnergy, 2022, 27, 101005.
2021年
[1]Jian Zhou, Yaohui He, Bing Xue, Yunhui Cheng, Danfeng Zhou, Dong Wang,Yajun He, Weixin Guan, Kegong Fang, Lijun Zhang, Jun Ni*, Xiaonian Li. Benefits of active site proximity inCu@UiO-66 catalysts for efficient upgrading of ethanol to n-butanol.Sustainable Energy Fuels, 2021, 5, 4628-4636.
[2]Jinxian Feng, Jun Ni, HuiPan*. Synergistic carbon and hydrogen reactions in the electrochemicalreduction of CO2 to liquid fuels. Journal of Materials Chemistry A,2021, 9: 10546-10561.
2020年
[1]Jian Zhou, Yuqin Tong, Yaohui He, Pengxiang Tu, Bing Xue, YunhuiCheng, Jie Cen, Yifan Zheng, Jun Ni*,Xiaonian Li. Role of Lewis acids of MIL-101 (Cr) in the upgrading of ethanol ton-butanol. Frontier in Chemical Engineering, 2020, 2: 586142.
[2]Yuqin Tong, Jian Zhou, Yaohui He, Pengxiang Tu, Bing Xue, YunhuiCheng, Jie Cen, Yifan Zheng, Jun Ni*,Xiaonian Li. Structure-activity Relationship of Cu Species in the EthanolUpgrading to n-Butanol. ChemistrySelect, 2020, 5(26): 7714-7719.
[3]Pengxiang Tu, Bin Xue, Yuqin Tong, Jian Zhou, Yaohui He, JunhuiCheng, Jun Ni*, Xiaonian Li. Effectof Doping Metal Oxide in ZnO/SBA-15 on Its Acid-Base Properties and Performancein Ethanol-to-Butadiene Process. ChemistrySelect, 2020, 5(24): 7258-7266.
[4]Yuxue Yue, Bolin Wang, Saisai Wang, Chunxiao Jin, Jinyue Lu, ZhengFang, Shujuan Shao, Zhiyan Pan, Jun Ni, Jia Zhao*, Xiaonian Li*. Boron-dopedcarbon nanodots dispersed on graphitic carbon as high-performance catalysts foracetylene hydrochlorination. Chemical Communications, 2020, 56, 5174-5177.
[5]Tongdong Shen, Wentao Su, Qiangqiang Yang, Jun Ni, Shaoping Tong*. Synergetic mechanism for basic and acidsites of MgMxOy (M = Fe, Mn) double oxides in catalyticozonation of p-hydroxybenzoic acid and acetic acid. Applied Catalysis B:Environmental, 2020, 119346.
[2]Fushan Chen, Tao Yang, Songlin Zhao, Taotao Jiang, Lu Yu, HoufengXiong, Chuankun Guo, Yufang Rao, Yan Liu, Liu Liu, Jian Zhou, Pengxiang Tu, JunNi, Qunfeng Zhang*, Xiaonian Li. Highly selective oxidation of amines toimines by Mn2O3 catalyst under eco-friendly conditions.Chinese Chemical Letters, 2019, 30(12): 2282-2286.
[3]Fushan Chen, Songlin Zhao, Tao Yang, Taotao Jiang, Jun Ni,Houfeng Xiong, Qunfeng Zhang*, Xiaonian Li. Controllable synthesis of novelnanoporous manganese oxide catalysts for the direct synthesis of imines fromalcohols and amines. Chinese Journal of Chemical Engineering, 2019, 27(10):2438-2446.
[4]Fushan Chen, Songlin Zhao, Tao Yang, Taotao Jiang, Jun Ni, QunfengZhang*, Xiaonian Li*. Highly Efficient Oxidative Dehydrogenation Aromatizationof 1,2,3,4-Tetrahydroquinoline by Cu2-MnOx Catalyst. Acta Physico -Chimica Sinica, 2019, 35(7): 775-786.
[5]Zhe Liang, Dahao Jiang, Geqian Fang, Wenhua Leng, Pengxiang Tu,Yuqin Tong, Liu Liu, Jun Ni*,Xiaonian Li*. Catalytic Enhancement of Aldol Condensation by Oxygen Vacancy onCeO2 Catalysts. ChemistrySelect, 2019, 4(14), 4364-4370.
[6]Jun Ni*, Wenhua Leng, Jun Mao, Jianguo Wang, Jianyi Lin, Dahao Jiang*,Xiaonian Li*. Tuning electron density of metal nickel by support defects inNi/ZrO2 for selective hydrogenation of fatty acids to alkanes andalcohols. Applied Catalysis B: Environmental, 2019, 253, 170-178.
[1]Dahao Jiang, Geqian Fang, Yuqin Tong, Xianyuan Wu, Yifan Wang,Dongsen Hong, Wenhua Leng, Zhe Liang, Pengxiang Tu, Liu Liu, Kaiyue Xu, Jun Ni*, Xiaonian Li*. MultifunctionalPd@UiO-66 Catalysts for Continuous Catalytic Upgrading of Ethanol to n‑Butanol. ACS Catalysis, 2018, 8, 11973−11978.
[2]Xianyuan Wu, Geqian Fang, Yuqin Tong, Dahao Jiang*, Zhe Liang,Wenhua Leng, Liu Liu, Pengxiang Tu, Hongjing Wang, Jun Ni*, Xiaonian Li. Catalytic upgrading of ethanol to n-butanol:Progress in catalyst development. ChemSusChem, 2018, 11, 71-85.
2017年
[1]Xianyuan Wu, Zheng Fang, Hui Pan, Yifan Zheng, Dahao Jiang, Jun Ni*, Xiaonian Li*. Active oxygenspecies on Mg–La mixed oxides: the effect of Mg and La oxide interactions.Catalysis Science & Technology, 2017, 7, 797-801.(封面論文)
[2]Xianyuan Wu, Geqian Fang, Zhe Liang, Wenhua Leng, Kaiyue, Xu, DahaoJiang*, Jun Ni*. Catalytic upgradingof ethanol to n-butanol over M-CeO2/AC (M = Cu, Fe, Co, Ni and Pd)catalysts. Catalysis Communications, 2017, 100, 15-18.
[3]Hangjia Shen, Xianyuan Wu, Dahao Jiang, Xiaonian Li, Jun Ni*. Identification of active sitesfor hydrogenation over Ru/SBA-15 using in situ Fourier-transform infraredspectroscopy. Chinese Journal of Catalysis, 2017, 38, 1597-1602.
[4]Jia Zhao, Yi Yu, Xiaolong Xu, Shuxia Di, Bolin Wang, Hao Xu, Jun Ni, LingLing Guo, Zhiyan Pan,Xiaonian Li*. Stabilizing Au(III) in supported-ionic-liquid-phase (SILP)catalyst using CuCl2 via a redox mechanism. Applied Catalysis B:Environmental, 2017, 206, 175-183.
[5]Jun Mao, Dahao Jiang*, Zheng Fang, XianyuanWu, Jun Ni*, Xiaonian Li. Efficient hydrothermal hydrodeoxygenation oftriglycerides with in situ generated hydrogen for production of diesel-likehydrocarbons. Catalysis Communications, 2017, 90, 47-50.
2016年
[1]Dahao Jiang, Xianyuan Wu, Jun Mao, Jun Ni*, Xiaonian Li*. Continuous catalytic upgrading of ethanol ton-butanol over Cu–CeO2/AC catalysts. Chemical Communications, 2016,52, 13749-13752.(封面論文)
[1]Sibudjing Kawi*, YasothaKathiraser, Jun Ni, Usman Oemar, Ziwei Li, Eng Toon Saw. Progress insynthesis of highly active and stable nickel-based catalysts for carbon dioxidereforming of methane, ChemSusChem, 2015, 8(21): 3556-3575.
2014年
[1]Hangjia Shen, Haodong Tang*, Haiyu Yan, Wenfeng Han, Ying Li, Jun Ni*. Geometric effect ofRu/HSAG@mSiO2: a catalyst for selective hydrogenation ofcinnamaldehyde. RSC Advances, 2014, 4, 30180-30185.
[2] Jinhui Xu, Jia Zhao, Jiangtao Xu, Tongtong Zhang, Xiaonian Li*, XiaoxiaDi, Jun Ni, Jianguo Wang*, Jie Cen.Influence of Surface Chemistry of Activated Carbon on the Activity ofGold/Activated Carbon Catalyst in Acetylene Hydrochlorination. Industrial &Engineering Chemistry Research. 2014, 53, 37, 14272–14281.
[3]Guojun Lan, Haodong Tang, Huazhang Liu, Jun Ni, Ying Li*.Effect of Sulfuric Acid on Textural Properties and Catalytic Performance ofRuthenium-Containing Ordered Mesoporous Carbon Prepared via a Direct RuCl3/SBA-15Hard Templated Method. Journal of Nanoscience and Nanotechnology, 2014, 14,7131-7138.
2013年
[1]Wei Xu, Jun Ni, QunfengZhang, Feng Feng, Yizhi Xiang, Xiaonian Li*. Tailoring supported palladiumsulfide catalysts through H2-assisted sulfidation with H2S.Journal of Materials Chemistry A, 2013, 1, 12811-12817.
[2]Jun Ni, Luwei Chen, Jianyi Lin, Martin Karl Schreyer, Zhan Wang, SibudjingKawi*. High performance of Mg-La mixed oxides supported Ni catalysts for dryreforming of methane: The effect of crystal structure. International Journal ofHydrogen Energy, 2013, 38, 13631-13642.
[3]Like Ouyang, Guo-Jin Da, JunNi, Jing Xu, Yi-Fan Han*. Heterogeneous Catalysis by Gold-based BimetallicCatalysts. Recent Patents on Catalysis, 2013, 2, 2-46.
2012年前
[1]Jun Ni, Luwei Chen, Jianyi Lin, Sibudjing Kawi*. Carbon deposition onborated alumina supported nano-sized Ni catalysts for dry reforming of CH4.Nano Energy, 2012, 1, 674-686.
[2] Jun Ni, Frederic C. Meunier*, Saul Robles-Manuel, Joel Barrault, SabineValange. Characterisation of surface acidity of carbonated samples byIR-sensitive molecular probes: advantage of using tert-butyl cyanide. TheJournal of Physical Chemistry C, 2011, 115 (50): 24931-24936.
[3] Jun Ni D. Rooney, F.C. Meunier*.CsF and alumina: A mixed homogeneous–heterogeneous catalytic system for thetransesterification of sunflower oil with methanol. Applied Catalysis B:Environmental, 2010, 97(1-2): 269-275.
[4] Jiahui Xu, ConnieM.Y.Yeung, Jun Ni, Frederic Meunier,Nadia Acerbi, Martin Fowles, Shik Chi Tsang*. Methane steam reforming forhydrogen production using low water-ratios without carbon formation over ceriacoated Ni catalysts. Applied Catalysis A: General, 2008, 345(2): 119-127.
[5] Jun Ni, F.C. Meunier*. Batch andfixed-bed recirculating reactors for the esterification of palmitic acid insunflower oil using solid acid catalysts. Applied Catalysis A: General, 2007, 333(1): 122-130.