唐幸福

教授

Tel:021-65642997

Email:tangxf@fudan.edu.cn

研究方向:生態環境🛃📸,環境催化🉑⭐️,大氣汙染控製,環境功能材料

個人簡歷

教育簡歷

  • 2003.09-2006.06, 中國科學院大連化學物理研究所,催化基礎國家重點實驗室,博士

  • 2000.09-2003.06, 廣西師範大學🧑🏿‍🦲,化學系☠️,碩士

工作簡歷

  • 2014.12-至今  沐鸣2平台👳🏼‍♂️,沐鸣2开户,教授、博導

  • 2012.07-2014.11  沐鸣2平台😢,沐鸣2开户,副教授💇、博導

  • 2013.08-2013.09  University of California, Los Angeles, 物理與天文學院👙,訪問教授

  • 2012.04-2013.04  Delft University of Technology, 催化工程中心,訪問學者

  • 2008.07-2012.06  沐鸣2平台,沐鸣2开户🤥,副教授、碩導

  • 2006.09-2008.6  清華大學,環境學院,博士後

博士生導師/方向

  • 大氣汙染物氮氧化物的選擇性催化還原

  • 催化控製揮發性大氣有機汙染物

  • 天然氣無汙染催化燃燒利用技術

  • 大氣界面化學和環境催化基礎理論

榮譽與獎勵

  • 2017年🚎,上海市自然科學獎,二等獎,排名1

  • 2012年獲得教育部“新世紀優秀人才支持計劃”🚽。

人才培養

本科生課程:

  • 《有機化學》

科學研究

主持和參與的主要項目/課題

  • 國家自然科學基金,低溫分解硫酸氫銨的氨選擇性還原氮氧化物催化劑,2020-2023,66萬,主持 (No.21976037)

  • 國家自然科學基金🏠,負載型金屬單原子催化劑低溫去除氣態苯🏊‍♂️👎🏻,2018-2021,66萬,主持 (No.21777030)

  • 國家自然科學基金,強抗堿金屬中毒的氨選擇性還原氮氧化物催化劑,2015-2018,88萬,主持 (No.21477023)

  • 上海市重點基金,生物質燃燒氮氧化物(NOx)排放控製技術的研究,2014-2017👵,60萬,主持 (14JC1400400)

  • 中荷合作交流基金,Addressing the future de-NOx Catalysis: Alkali-resistant Biomass (Co-)Fuelled Power Plants,2013-2015,37萬,主持  (No. 13CDP013)

  • 教育部新世紀優秀人才支持計劃,大氣汙染控製化學,2013-2015,50萬,主持  (No. NCET-12-0131)

  • 國家自然科學基金,單原子金屬催化活性中心低溫完全氧化甲醛,2013-2015👨‍💻,50萬,主持  (No.21277032)

  • 國家自然科學基金,抗硫疏水性錳分子篩低溫氨選擇性還原氮氧化物,2011-2013,35萬,主持  (No.21077026)

  • 國家自然科學基金,納米氧化錳分子篩低溫去除甲醛的研究,2010-2012,32萬,主持  (No.20977018)

  • 教育部高校博士點基金,催化去除甲醛關鍵技術和反應機理的研究,主持  (No. 20090071120005)

  • 上海市自然科學基金:氧化錳分子篩低溫控製氮氧化物技術的研究  (No. 09ZR1402500)

教研成果

研究成果🧽:

  • 1. 高效脫硝技術

構建了堿金屬離子交換-配位型中毒機理🛣👴🏿,發明了強抗堿金屬中毒的高效脫硝催化劑🤘🏼,突破了傳統脫硝催化劑應用於高堿或堿土金屬燃煤或生物質燃料煙氣脫硝技術的一個重要瓶頸;相關成果被美國化工新聞雜誌Chemical & Engineering News專題報道,同時被美國環保汽車會網Green Car Congress報道🛄👨🏻‍🦽‍➡️。

圖1. Chemical & Engineering News的專題報道

  • 2. 催化去除VOCs技術

創建了“反Ostwald合成單原子催化劑”的機理,建立了原子分散金屬銀催化劑的合成方法🦥,突破了傳統的金屬納米粒子在熱作用下燒結的生長機理🤘🏽,使金屬的利用率獲得了最高的原子經濟性;相關成果被Nature China欄目以Research Highlights的形式報道。

圖2. Nature China的Research Highlights報道

  • 3. 環境催化基本原理

確定了一種高活性的二氧化錳催化劑在SCR反應中的催化活性位(Catalytically Active Sites)🏄🏼‍♀️🦹🏻‍♀️,對SCR反應的機理研究和高效SCR催化劑的設計開發具有重要的意義;相關成果相繼被國際著名的ChemistryViews網站以Highlights的形式報道❤️‍🛀🏿,同時被Angew. Chem. Int. Ed雜誌以Spotlights的形式報道(Angew. Chem. Int. Ed. 2015, 54, 7740-7743)。

圖3. ChemistryViews網站的Highlights報道

代表性論文:

  • Yaxin Chen, Daiming Tang, Zhiwei Huang, Xi Liu, Jun Chen, Takashi Sekiguchi, Weiye Qu, Junxiao Chen, Dongrun Xu, Yoshio Bando, Xiaolei Hu, Xiaoping Wang, Dmitri Golberg & Xingfu Tang*. Stable single atomic silver wires assembling into a circuitry-connectable nanoarray. Nat Commun. 2021, 12, 1191.

  • Xiaolei Hu, Junxiao Chen, Weiye Qu, Rui Liu, Dongrun Xu, Zhen Ma, and Xingfu Tang*. Sulfur-Resistant Ceria-Based Low-Temperature SCR Catalysts with the Non-bulk Electronic States of Ceria. Environ. Sci. Technol. 2021, 55, 8, 5435-5441.

  • Weiye Qu, Xiaona Liu, Junxiao Chen, Yangyang Dong, Xingfu Tang* & Yaxin Chen*.  Single-atom catalysts reveal the dinuclear characteristic of active sites in NO selective reduction with NH3. Nat. Commun. 2020, 11, 1532.

  • Yaxin Chen, Chao Li, Junxiao Chen, and Xingfu Tang* Self-Prevention of Well-Defined-Facet Fe2O3/MoO3 against Deposition of Ammonium Bisulfate in Low-Temperature NH3-SCR. Environ. Sci. Technol. 2018, 52, 11796-11802.

  • Junxiao Chen, Yaxin Chen, Meijuan Zhou, Zhiwei Huang, Jiayi Gao, Zhen Ma, Jianmin Chen, and Xingfu Tang*. Enhanced Performance of Ceria-Based NOx Reduction Catalysts by Optimal Support Effect. Environ. Sci. Technol. 2017, 51, 473-478.

  • Weiye Qu, Yaxin Chen, Zhiwei Huang, Jiayi Gao, Meijuan Zhou, Junxiao Chen, Chao Li, Zhen Ma, Jianmin Chen, and Xingfu Tang*. Active tetrahedral iron sites of γ‑Fe2O3 catalyzing NO reduction by NH3. Environ. Sci. Technol. Lett. 2017, 4, 6, 246-250.

  • Yaxin Chen, Zhiwei Huang, Meijuan Zhou, Zhen Ma, Jianmin Chen, and Xingfu Tang* Single silver adatoms on nanostructured manganese oxide surfaces: boosting oxygen activation for benzene abatement. Environ. Sci. Technol. 2017, 51, 2304-2311.

  • YaxinChen, ZhiweiHuang, XiaoGu, ZhenMa, JianminChen, XingfuTang*. Top-down synthesis strategies: Maximum noble-metal atom efficiency in catalytic materials. Chinese. J. Catal., 2017, 38, 1588.

  • Yaxin Chen, Jiayi Gao, Zhiwei Huang, Meijuan Zhou, Junxiao Chen, Chao Li, Zhen Ma, Jianmin Chen, and Xingfu Tang*. Sodium Rivals Silver as Single-Atom Active Centers for Catalyzing Abatement of Formaldehyde. Environ. Sci. Technol. 2017, 51, 12, 7084-7090.

  • Li Zheng, Meijuan Zhou, Zhiwei Huang, Yaxin Chen, Jiayi Gao, Zhen Ma, Jianmin Chen, and Xingfu Tang*. Self-Protection Mechanism of Hexagonal WO3-Based DeNOx Catalysts against Alkali Poisoning. Environ. Sci. Technol. 2016, 50, 11951-11956.

  • Yaxin Chen, Guangkai Tian, Meijuan Zhou, Zhiwei Huang, Chenxi Lu, Pingping Hu, Jiayi Gao, Zhaoliang Zhang*, and Xingfu Tang*. Catalytic Control of Typical Particulate Matters and Volatile Organic Compounds Emissions from Simulated Biomass Burning. Environ. Sci. Technol. 2016, 50, 5825-5831.

  • Yaxin Chen, Zhiwei Huang, Meijuan Zhou, Pingping Hu, Chengtian Du, Lingdong Kong, Jianmin Chen and  Xingfu Tang*. The active sites of supported silver particle catalysts in formaldehyde oxidation. Chem. Commun., 2016, 52, 9996-9999.

  • Zhiwei Huang, Hao Li, Jiayi Gao, Xiao Gu, Li Zheng, Pingping Hu, Ying Xin, Junxiao Chen, Yaxin Chen, Zhaoliang Zhang, Jianmin Chen, and Xingfu Tang*. Alkali- and Sulfur-Resistant Tungsten-Based Catalysts for NOx Emissions Control. Environ. Sci. Technol. 2015, 49, 14460-14465.

  • Pingping Hu, Zhiwei Huang, Xiao Gu, Fei Xu, Jiayi Gao, Yue Wang, Yaxin Chen, and Xingfu Tang*. Alkali-Resistant Mechanism of a Hollandite DeNOx Catalyst. Environ. Sci. Technol. 2015, 49, 7042-7047.

  • Fei Xu, Zhiwei Huang, Pingping Hu, Yaxin Chen, Lei Zheng, Jiayi Gao, Xingfu Tang*. The promotion effect of isolated potassium atoms with hybridized orbitals in catalytic oxidation. Chem. Commun., 2015, 51, 9888-9891.

  • Pingping Hu, Zakariae Amghouz, Zhiwei Huang, Fei Xu, Yaxin Chen, and Xingfu Tang*. Surface-Confined Atomic Silver Centers Catalyzing Formaldehyde Oxidation. Environ. Sci. Technol. 2015, 49, 2384-2390.

  • Pingping Hu, Manfred Erwin Schuster, Zhiwei Huang, Fei Xu, Shifeng Jin, Yaxin Chen, Weiming Hua, Dang Sheng Su, Xingfu Tang*. The Active Sites of a Rod‐Shaped Hollandite DeNOx Catalyst. Chem. Eur.J.2015, 21, 9619-9623.

  • Yaxin Chen, Takeshi Kasama, Zhiwei Huang, Pingping Hu, Jianmin Chen, Xi Liu, Xingfu Tang*. Highly Dense Isolated Metal Atom Catalytic Sites: Dynamic Formation and In Situ Observations. Chem. Eur.J.2015, 21, 17397-17402.

  • Pingping Hu, Zhiwei Huang, Zakariae Amghouz, Michiel Makkee, Fei Xu, Freek Kapteijn, Alla Dikhtiarenko, Yaxin Chen, Xiao Gu, and Xingfu Tang*. Electronic Metal–Support Interactions in Single-Atom Catalysts. Angew. Chem. 2014, 126, 3486-3489.

  • Zhiwei Huang, Xiao Gu, Wen Wen, Pingping Hu, Michiel Makkee, He Lin, Freek Kapteijn, Xingfu Tang*. A “Smart” Hollandite DeNOx Catalyst: Self‐Protection against Alkali Poisoning. Angew. Chem. Int. Ed. 2013, 52, 660-664.

  • Zhiwei Huang, Xiao Gu, Qingqing Cao, Pingping Hu, Jiming Hao, Junhua Li, Xingfu Tang*. Catalytically Active Single‐Atom Sites Fabricated from Silver Particles. Angew. Chem. Int. Ed. 2012, 51, 4198-4203.

更多論文成果詳見以下鏈接🧑🏿‍🎓:http://www.researcherid.com/rid/J-3309-2013


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