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成果及论文

[58]. Yang Yumin,Feng Shuang,Su Jianan,Gong Yutong*,Wang Junjie*, Mo-Doped Metal–Organic Frameworks for Efficient Nitrogen Reduction Reaction: A Density Functional Theory Study. ACS Sustainable Chemistry & Engineering, 2022, 10.1021/acssuschemeng.1022c05137.

[57]. Gong Yutong, Li Hongchen, Li Can, Bao Xiaobing, Hosono Hideo, Wang Junjie, Insight into rare-earth-incorporated catalysts: The chance for a more efficient ammonia synthesis. Journal of Advanced Ceramics, 2022, 10.1007/s40145-40022-40633-z.

[56]. Gong Yutong,Li Hongchen,Wu Jiazhen,Song Xingyi,Yang Xueqing,Bao Xiaobing,Han Xiao,Kitano Masaaki,Wang Junjie,Hosono Hideo, Unique catalytic mechanism for Ru-loaded ternary intermetallic electrides for ammonia synthesis. Journal of the American Chemical Society, 2022, 144, 8683–8692.

[55]. Gong Yutong#,Li Hongchen#,Li Can,Yang Xueqing,Wang Junjie,Hosono Hideo, LaRuSi electride disrupts the scaling relations for ammonia synthesis. Chemistry of Materials, 2022, 34, 1677-1685.

[54]. Bao Xiaobing,Chen Yuzhuo,Mao Shanjun,Wang Yong,Yang Yong,Gong Yutong*, Boosting the performance gain of Ru/C for hydrogen evolution reaction via surface engineering. Energy & Environmental Materials, 2022, doi.org/10.1002/eem1002.12418.

[53]. Zhao Shijing,Xu Shishuai,Yao Jinlei,Chen Ning,Gong Yutong,Zhang Xipeng,Hao Xianfeng,Zhang Lijuan,Pei Cuiying,Tian Ruifeng,Wu Lailei,Wan Biao,Peng Wenfeng,Gao Bo,Qi Yanpeng,Gao Faming,Ahuja Rajeev,Yao Yansun,Gou Huiyang, Elucidating the reaction pathway of crystalline multi-metal borides for highly efficient oxygen-evolving electrocatalysts. Journal of Materials Chemistry A, 2022, 10, 1569-1578.

[52]. Bao Xiaobing,Li Sijia,Hao Chentao,Qin Yifan,Gong Yutong,Yang Yong,Xu Aoni,Luo Mingchuan, Iridium nanohollows with porous walls for acidic water splitting. Journal of Materials Chemistry A, 2022, 10, 20005-20010.

[51]. Peng Wenfeng,Deshmukh Amol,Chen Ning,Lv Zhengxing,Zhao Shijing,Li Jiong,Yan Bingmin,Gao Xiang,Shang Lu,Gong Yutong,Wu Lailei,Chen Mingyang,Zhang Tierui,Gou Huiyang, Deciphering the dynamic structure evolution of Fe- and Ni-codoped CoS2 for enhanced water oxidation. ACS Catalysis, 2022, 12, 3743-3751.

[50]. Yao Yufang,Miao Nanxi,Gong Yutong,Wang Junjie, Theoretical exploration of quaternary hexagonal MAB phases and two-dimensional derivatives. Nanoscale, 2021, 13, 13208-13214.

[49]. Li Kun,Wang Junjie,Blatov Vladislav A.,Gong Yutong,Umezawa Naoto,Tada Tomofumi,Hosono Hideo,Oganov Artem R., Crystal and electronic structure engineering of tin monoxide by external pressure. Journal of Advanced Ceramics, 2021, 10, 565-577.

[48]. Li Kun,Gong Yutong,Wang Junjie,Hosono Hideo, Electron-deficient-type electride Ca5Pb3 extension of electride chemical space. Journal of the American Chemical Society, 2021, 143, 8821-8828.

[47]. Ye Tian-Nan,Xiao Zewen,Li Jiang,Gong Yutong,Abe Hitoshi,Niwa Yasuhiro,Sasase Masato,Kitano Masaaki,Hosono Hideo, Stable single platinum atoms trapped in sub-nanometer cavities in 12CaO·7Al2O3 for chemoselective hydrogenation of nitroarenes. Nature communications, 2020, 11,1020.

[46]. Xu Shishuai,Wang Mingzhi,Saranya Govindarajan,Chen Ning,Zhang Lili,He Yan,Wu Lailei,Gong Yutong*,Yao Zhiqiang,Wang Gongkai,Wang Zhibin,Zhao Shijing,Tang Hu,Chen Mingyang,Gou Huiyang*, Pressure-driven catalyst synthesis of Co-doped Fe3C@Carbon nano-onions for efficient oxygen evolution reaction. Applied Catalysis B-environmental, 2020, 268, 118385.

[45]. Xu Shishuai,Gao Xiang,Deshmukh Amol,Zhou Junshuang,Chen Ning,Peng Wenfeng,Gong Yutong,Yao Zhiqiang,Finkelstein Kenneth D.,Wan Biao,Gao Faming,Wang Mingzhi,Chen Mingyang,Gou Huiyang, Pressure-promoted irregular CoMoP2 nanoparticles activated by surface reconstruction for oxygen evolution reaction electrocatalysts. Journal of Materials Chemistry A, 2020, 8, 2001-2007.

[44]. Wang Chunpeng,Mao Shanjun,Wang Zhe,Chen Yuzhuo,Yuan Wentao,Ou Yang,Zhang Hao,Gong Yutong,Wang Yong,Mei Bingbao,Jiang Zheng,Wang Yong, Insight into single-atom-induced unconventional size dependence over CeO2-supported Pt catalysts. Chem, 2020, 6, 752-765.

[43]. Peng Wenfeng,Li Junkai,Shen Kangqi,Zheng Lirong,Tang Hu,Gong Yutong,Zhou Junshuang,Chen Ning,Zhao Shijing,Chen Mingyang,Gao Faming,Gou Huiyang, Iron-regulated NiPS for enhanced oxygen evolution efficiency. Journal of Materials Chemistry A, 2020, 8, 23580-23589.

[42]. Miao Nanxi,Wang Junjie,Gong Yutong,Wu Jiazhen,Niu Haiyang,Wang Shiyao,Li Kun,Oganov Artem R.,Tada Tomofumi,Hosono Hideo, Computational prediction of boron-based max phases and mxene derivatives. Chemistry of Materials, 2020, 32, 6947-6957.

[41]. Liu Jinrong,Xie Lei,Wang Zhe,Mao Shanjun,Gong Yutong,Wang Yong, Biomass-derived ordered mesoporous carbon nano-ellipsoid encapsulated metal nanoparticles inside: ideal nanoreactors for shape-selective catalysis. Chemical Communications, 2020, 56, 229-232.

[40]. Bao Xiaobing#,Gong Yutong#,Zheng Xiaozhong,Chen Jiayi,Mao Shanjun,Wang Yong, Highly performed platinum nanosheets synthesized under in situ reaction conditions for hydrogen generation. Journal of Energy Chemistry, 2020, 51, 272-279.

[39]. Xie Lei,Wang Zhe,Liu Jinrong,Gong Yutong,Mao Shanjun,Lu Guofeng,Ma Xiao,Yu Lili,Wang Yong, Kinetics-controlled synthesis of hierarchically porous materials with tunable properties from diverse building blocks. Carbon, 2019, 155, 611-617.

[38]. Wu Jiazhen,Li Jiang,Gong Yutong,Kitano Masaaki,Inoshita Takeshi,Hosono Hideo, Intermetallic electride catalyst as a platform for ammonia synthesis. Angewandte Chemie-international Edition, 2019, 58, 825-829.

[37]. Wang Zhenzhen,Wang Chunpeng,Mao Shanjun,Gong Yutong,Chen Yuzhuo,Wang Yong, Pd nanoparticles anchored on amino-functionalized hierarchically porous carbon for efficient dehydrogenation of formic acid under ambient conditions. Journal of Materials Chemistry A, 2019, 7, 25791-25795.

[36]. Wang Junjie,Ye Tian-Nan,Gong Yutong,Wu Jiazhen,Miao Nanxi,Tada Tomofumi,Hosono Hideo, Discovery of hexagonal ternary phase Ti2InB2 and its evolution to layered boride TiB. Nature communications, 2019, 10, 2284.

[35]. Mao Shanjun,Zhao Bowen,Wang Zhe,Gong Yutong,Lu Guofeng,Ma Xiao,Yu Lili,Wang Yong, Tuning the catalytic performance for the semi-hydrogenation of alkynols by selectively poisoning the active sites of Pd catalysts. Green Chemistry, 2019, 21, 4143-4151.

[34]. Liu Jinrong,Xie Lei,Deng Jiang,Gong Yutong,Tang Guping,Bai Hongzhen,Wang Yong, Annular mesoporous carbonaceous nanospheres from biomass-derived building units with enhanced biological interactions. Chemistry of Materials, 2019, 31, 7186-7191.

[33]. Chen Yuzhuo,Kong Xiangqian,Mao Shanjun,Wang Zhe,Gong Yutong,Wang Yong, Study of the role of alkaline sodium additive in selective hydrogenation of phenol. Chinese Journal of Catalysis, 2019, 40, 1516-1524.

[32]. Chen Jiadong,Wang Haiyan,Gong Yutong,Wang Yong, Directly immobilizing a Ru-tannic acid linkage coordination complex on carbon cloth: an efficient and ultrastable catalyst for the hydrogen evolution reaction. Journal of Materials Chemistry A, 2019, 7, 11038-11043.

[31]. Bao Xiaobing,Gong Yutong*,Chen Yuzhuo,Zhang Hao,Wang Zhe,Mao Shanjun,Xie Lei,Jiang Zheng,Wang Yong*, Carbon vacancy defect-activated Pt cluster for hydrogen generation. Journal of Materials Chemistry A, 2019, 7, 15364-15370.

[30]. Xie Lei,Li Xuefeng,Deng Jiang,Gong Yutong,Wang Haiyan,Mao Shanjun,Wang Yong, Sustainable and scalable synthesis of monodisperse carbon nanospheres and their derived superstructures. Green Chemistry, 2018, 20, 4596-4601.

[29]. Kong Xiangqian,Gong Yutong*,Mao Shanjun,Wang Yong*, Selective hydrogenation of phenol. Chemnanomat, 2018, 4, 432-450.

[28]. Hosono Hideo,Gong Yutong,Wu Jiazhen,Kitano Masaaki,Yokoyama Tashiharu,Lu Yangfan,Ye Tian-Nan Intermetallic compound, hydrogen absorbing / releasing material, catalyst and method for producing ammonia. 2018.(国际专利)

[27]. Gong Yutong#,Wu Jiazhen#,Kitano Masaaki,Wang Junjie,Ye Tian-Nan,Li Jiang,Kobayashi Yasukazu,Kishida Kazuhisa,Abe Hitoshi,Niwa Yasuhiro,Yang Hongsheng,Tada Tomofumi,Hosono Hideo, Ternary intermetallic LaCoSi as a catalyst for N2 activation. Nature Catalysis, 2018, 1, 178-185.

[26]. Wu Jiazhen#,Gong Yutong#,Inoshita Takeshi#,Fredrickson Daniel C.,Wang Junjie,Lu Yangfan,Kitano Masaaki,Hosono Hideo, Tiered electron anions in multiple voids of lascsi and their applications to ammonia synthesis. Advanced Materials, 2017, 29, 1700924.

[25]. Bao Xiaobing#,Gong Yutong#,Deng Jiang,Wang Shiping,Wang Yong, Organic-acid-assisted synthesis of a 3D lasagna-like Fe-N-doped CNTs-G framework: An efficient and stable electrocatalyst for oxygen reduction reactions. Nano Research, 2017, 10, 1258-1267.

[24]. Wei Zhongzhe,Gong Yutong,Xiong Tianyi,Zhang Pengfei,Li Haoran,Wang Yong, Highly efficient and chemoselective hydrogenation of alpha,beta-unsaturated carbonyls over Pd/N-doped hierarchically porous carbon. Catalysis Science & Technology, 2015, 5, 397-404.

[23]. Wang Jing,Wei Zhongzhe,Gong Yutong,Wang Shiping,Su Diefeng,Han Chuanlong,Li Haoran,Wang Yong, Ni-promoted synthesis of graphitic carbon nanotubes from in situ produced graphitic carbon for dehydrogenation of ethylbenzene. Chemical Communications, 2015, 51, 12859-12862.

[22]. Su Diefeng,Wang Jing,Jin Haiyan,Gong Yutong,Li Mingming,Pang Zhenfeng,Wang Yong, From "waste to gold": a one-pot method to synthesize ultrafinely dispersed Fe2O3-based nanoparticles on N-doped carbon for synergistic and efficient water splitting. Journal of Materials Chemistry A, 2015, 3, 11756-11761.

[21]. Gong Yutong,Li Mingming,Wang Yong, Carbon nitride in energy conversion and storage: Recent advances and future prospects. ChemsusChem, 2015, 8, 931-946.

[20]. Gong Yutong,Li Mingming,Li Haoran,Wang Yong, Graphitic carbon nitride polymers: promising catalysts or catalyst supports for heterogeneous oxidation and hydrogenation. Green Chemistry, 2015, 17, 715-736.

[19]. Deng Jiang,Xiong Tianyi,Xu Fan,Li Mingming,Han Chuanlong,Gong Yutong,Wang Haiyan,Wang Yong, Inspired by bread leavening: one-pot synthesis of hierarchically porous carbon for supercapacitors. Green Chemistry, 2015, 17, 4053-4060.

[18]. Deng Dong-Shun,Han Guo-Qiang,Zhu Xiao,Xu Xuan,Gong Yu-Tong,Wang Yong, Selective hydrogenation of unprotected indole to indoline over N-doped carbon supported palladium catalyst. Chinese Chemical Letters, 2015, 26, 277-281.

[17]. Zhang Pengfei,Gong Yutong,Wei Zhongzhe,Wang Jing,Zhang Zhiyong,Li Haoran,Dai Sheng,Wang Yong, Updating biomass into functional carbon material in ionothermal manner. Acs Applied Materials & Interfaces, 2014, 6, 12515-12522.

[16]. Wang Jing,Xu Zheng,Gong Yutong,Han Chuanlong,Li Haoran,Wang Yong, One-Step Production of sulfur and nitrogen Co-doped graphitic carbon for oxygen reduction: Activation effect of oxidized sulfur and nitrogen. ChemcatChem, 2014, 6, 1204-1209.

[15]. Wang Haiyan,Gong Yutong,Wang Yong, Cellulose-based hydrophobic carbon aerogels as versatile and superior adsorbents for sewage treatment. RSC Advances, 2014, 4, 45753-45759.

[14]. Li Mingming,Xu Xuan,Gong Yutong,Wei Zhongzhe,Hou Zhaoyin,Li Haoran,Wang Yong, Ultrafinely dispersed Pd nanoparticles on a CN@MgO hybrid as a bifunctional catalyst for upgrading bioderived compounds. Green Chemistry, 2014, 16, 4371-4377.

[13]. Han Chuanlong,Wang Jing,Gong Yutong,Xu Xuan,Li Haoran,Wang Yong, Nitrogen-doped hollow carbon hemispheres as efficient metal-free electrocatalysts for oxygen reduction reaction in alkaline medium. Journal of Materials Chemistry A, 2014, 2, 605-609.

[12]. Gong Yutong,Xie Lei,Li Haoran,Wang Yong, Sustainable and scalable production of monodisperse and highly uniform colloidal carbonaceous spheres using sodium polyacrylate as the dispersant. Chemical Communications, 2014, 50, 12633-12636.

[11]. Gong Yutong,Wei Zhongzhe,Wang Jing,Zhang Pengfei,Li Haoran,Wang Yong, Design and fabrication of hierarchically porous carbon with a template-free method. Scientific Reports, 2014, 4.

[10]. Gong Yutong,Wang Jing,Wei Zhongzhe,Zhang Pengfei,Li Haoran,Wang Yong, Combination of carbon nitride and carbon nanotubes: Synergistic catalysts for energy conversion. ChemsusChem, 2014, 7, 2303-2309.

[9]. Gong Yutong,Wang Haiyan,Wei Zhongzhe,Xie Lei,Wang Yong, An efficient way to introduce hierarchical structure into biomass-based hydrothermal carbonaceous materials. ACS Sustainable Chemistry & Engineering, 2014, 2, 2435-2441.

[8]. Zhang Pengfei,Gong Yutong,Li Haoran,Chen Zhirong,Wang Yong, Selective oxidation of benzene to phenol by FeCl3/mpg-C3N4 hybrids. RSC Advances, 2013, 3, 5121-5126.

[7]. Zhang Pengfei,Gong Yutong,Li Haoran,Chen Zhirong,Wang Yong, Solvent-free aerobic oxidation of hydrocarbons and alcohols with Pd@N-doped carbon from glucose. Nature communications, 2013, 4, 1593.

[6]. Li Yi,Xu Xuan,Zhang Pengfei,Gong Yutong,Li Haoran,Wang Yong, Highly selective Pd@mpg-C3N4 catalyst for phenol hydrogenation in aqueous phase. RSC Advances, 2013, 3, 10973-10982.

[5]. Gong Yutong,Zhang Pengfei,Xu Xuan,Li Yi,Li Haoran,Wang Yong, A novel catalyst Pd@ompg-C3N4 for highly chemoselective hydrogenation of quinoline under mild conditions. Journal of Catalysis, 2013, 297, 272-280.

[4]. Deng Dongshun,Yang Yang,Gong Yutong,Li Yi,Xu Xuan,Wang Yong, Palladium nanoparticles supported on mpg-C3N4 as active catalyst for semihydrogenation of phenylacetylene under mild conditions. Green Chemistry, 2013, 15, 2525-2531.

[3]. Zhang Pengfei,Gong Yutong,Lv Yiqi,Guo Yan,Wang Yong,Wang Congmin,Li Haoran, Ionic liquids with metal chelate anions. Chemical Communications, 2012, 48, 2334-2336.

[2]. Xu Xuan,Li Yi,Gong Yutong,Zhang Pengfei,Li Haoran,Wang Yong, Synthesis of palladium nanoparticles supported on mesoporous N-doped carbon and their catalytic ability for biofuel upgrade. Journal of the American Chemical Society, 2012, 134, 16987-16990.

[1]. Li Yi,Gong Yutong,Xu Xuan,Zhang Pengfei,Li Haoran,Wang Yong, A practical and benign synthesis of amines through Pd@mpg-C3N4 catalyzed reduction of nitrites. Catalysis Communications, 2012, 28, 9-12.