相关文献:
1, Feng Jiao, Bing Bai, Gen Li, Xiulian Pan,* Xinhe Bao,* et al. Disentangling the activity-selectivity trade-off in catalytic conversion of syngas to light olefins. Science, 2023, 380, 727-730.
2, Feng Jiao, Jinjing Li, Xiulian Pan,* Xinhe Bao,* et al. Selective conversion of syngas to light olefins. Science, 2016, 351, 1065-1068.
3, Haodi Wang, Feng Jiao*, Xiulian Pan*, Xinhe Bao,* et al. Dynamic confinement of SAPO-17 cages on the selectivity control of syngas conversion. National Science Review, 2022, nwac146, https://doi.org/10.1093/nsr/nwac146.
4, Bing Bai, Chenxi Guo, Feng Jiao*, Jianping Xiao*, Xiulian Pan* et al. Tuning the Crystal Phase to Form MnGaOx-Spinel for Highly Efficient Syngas to Light Olefins. Angewandte Chemie-International Edition, 2023, e202217701.
5, Na Li, Feng Jiao(共一), Xiulian Pan,* Xinhe Bao,* et al. High-Quality Gasoline Directly from Syngas by Dual Metal Oxide Zeolite (OX-ZEO) Catalysis. Angewandte Chemie-International Edition, 2019, 58, 7400-7404.
6, Feng Jiao, Xiulian Pan,* Xinhe Bao,* et al. Shape-Selective Zeolites Promote Ethylene Formation from Syngas via a Ketene Intermediate. Angewandte Chemie-International Edition, 2018, 57, 4692-4696. (hot paper)
7, Na Li, Bin Huang, Xue Dong, Feng Jiao,* Jianping Xiao,* Zhenping Qu,* et al. Bifunctional zeolites-silver catalyst enabled tandem oxidation of formaldehyde at low temperatures. Nature Communications, 2022, 13, 2209. (Editors’ Highlight)
8, Na Li, Yifeng Zhu, Feng Jiao(共一), Xiulian Pan,* Xinhe Bao,* et al. Steering the reaction pathway of syngas-to-light olefins with coordination unsaturated sites of ZnGaOx spinel. Nature Communications, 2022, 13, 2742. (Editors’ Highlight)
9, Gen Li, Feng Jiao,* Xiulian Pan,* et al. Role of SAPO-18 Acidity in Direct Syngas Conversion to Light Olefins. ACS Catalysis, 2020, 10, 12370-12375.
10, Na Li, Feng Jiao(共一), Xiulian Pan,* Xinhe Bao,* Size Effects of ZnO Nanoparticles in Bifunctional Catalysts for Selective Syngas Conversion. ACS Catalysis, 2019, 9, 960-966.
论文著作:
1. Selective Conversion of Syngas to Light Olefins.
Feng Jiao; Jinjing Li; Xiulian Pan; Jianping Xiao; Haobo Li; Hao Ma; Mingming Wei; Yang Pan; Zhongyue Zhou; Mingrun Li; Shu Miao; Jian Li; Yifeng Zhu; Dong Xiao; Ting He
Science, 2016
2. A Rapid Aqueous Fluoride Ion Sensor with Dual Output Modes.
Rui Hu; Jiao Feng; Dehui Hu; Shuangqing Wang; Shayu Li; Yi Li; Guoqiang Yang
Angewandte Chemie International Edition, 2010
3. A Triarylboron‐Based Fluorescent Thermometer: Sensitive over a Wide Temperature Range
Jiao Feng; Kaijun Tian; Dehui Hu; Shuangqing Wang; Shayu Li; Yi Zeng; Yi Li; Guoqiang Yang
Angewandte Chemie, 2011
4. Oxide-Zeolite-Based Composite Catalyst Concept That Enables Syngas Chemistry Beyond Fischer-Tropsch Synthesis
Xiulian Pan; Feng Jiao; Dengyun Miao; Xinhe Bao
CHEMICAL REVIEWS, 2021
5. Silicon Carbide-Derived Carbon Nanocomposite As a Substitute for Mercury in the Catalytic Hydrochlorination of Acetylene
Xingyun Li; Xiulian Pan; Liang Yu; Pengju Ren; Xing Wu; Litao Sun; Feng Jiao; Xinhe Bao
Nature Communications, 2014
6. Shape‐Selective Zeolites Promote Ethylene Formation from Syngas Via a Ketene Intermediate
Feng Jiao; Xiulian Pan; Ke Gong; Yuxiang Chen; Gen Li; Xinhe Bao
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018
7. Role of Manganese Oxide in Syngas Conversion to Light Olefins
Yifeng Zhu; Xiulian Pan; Feng Jiao; Jian Li; Junhao Yang; Minzheng Ding; Yong Han; Zhi Liu; Xinhe Bao
ACS CATALYSIS, 2017
8. Direct Conversion of Syngas to Aromatics.
Junhao Yang; Xiulian Pan; Feng Jiao; Jian Li; Xinhe Bao
CHEMICAL COMMUNICATIONS, 2017
9. Fluorescent Temperature Sensing Using Triarylboron Compounds and Microcapsules for Detection of a Wide Temperature Range on the Micro‐ and Macroscale
Jiao Feng; Lei Xiong; Shuangqing Wang; Shayu Li; Yi Li; Guoqiang Yang
Advanced Functional Materials, 2012
10. Size Effects of ZnO Nanoparticles in Bifunctional Catalysts for Selective Syngas Conversion
Na Li; Feng Jiao; Xiulian Pan; Yi Ding; Jingyao Feng; Xinhe Bao
ACS Catalysis, 2018