Search Results - "Dang, Shanshan"

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  1. 1

    Role of zirconium in direct CO2 hydrogenation to lower olefins on oxide/zeolite bifunctional catalysts by Dang, Shanshan, Gao, Peng, Liu, Ziyu, Chen, Xinqing, Yang, Chengguang, Wang, Hui, Zhong, Liangshu, Li, Shenggang, Sun, Yuhan

    Published in Journal of catalysis (01-08-2018)
    “…[Display omitted] •In-Zr/SAPO-34 catalysts were used for direct CO2 hydrogenation to lower olefins.•In-Zr composite oxides were prepared with the introduction…”
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    Journal Article
  2. 2

    Direct Production of Lower Olefins from CO2 Conversion via Bifunctional Catalysis by Gao, Peng, Dang, Shanshan, Li, Shenggang, Bu, Xianni, Liu, Ziyu, Qiu, Minghuang, Yang, Chengguang, Wang, Hui, Zhong, Liangshu, Han, Yong, Liu, Qiang, Wei, Wei, Sun, Yuhan

    Published in ACS catalysis (05-01-2018)
    “…Direct conversion of carbon dioxide (CO2) into lower olefins (C2 =–C4 =), generally referring to ethylene, propylene, and butylene, is highly attractive as a…”
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    Journal Article
  3. 3

    Three birds with one stone: oxygen self-supply engineering palladium nanocluster/titanium carbide hybrid for single-NIR laser-triggered synergistic photodynamic-photothermal therapy by Dang, Shanshan, Mo, Yanmei, Zeng, Junqing, Xu, Yunjie, Xie, Zhongjian, Zhang, Han, Zhang, Bin, Nie, Guohui

    Published in Nanophotonics (Berlin, Germany) (14-12-2022)
    “…As a key branch of the cross-discipline biophotonics, phototherapy, including photodynamic therapy (PDT), and photothermal therapy (PTT), is promising in…”
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    Journal Article
  4. 4

    A review of research progress on heterogeneous catalysts for methanol synthesis from carbon dioxide hydrogenation by Dang, Shanshan, Yang, Haiyan, Gao, Peng, Wang, Hui, Li, Xiaopeng, Wei, Wei, Sun, Yuhan

    Published in Catalysis today (15-06-2019)
    “…[Display omitted] •A wide variety of heterogeneous catalysts have been evaluated in the CO2 hydrogenation to methanol.•This review is on discussing metal-based…”
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    Journal Article
  5. 5

    Direct conversion of CO2 into liquid fuels with high selectivity over a bifunctional catalyst by Gao, Peng, Li, Shenggang, Bu, Xianni, Dang, Shanshan, Liu, Ziyu, Wang, Hui, Zhong, Liangshu, Qiu, Minghuang, Yang, Chengguang, Cai, Jun, Wei, Wei, Sun, Yuhan

    Published in Nature chemistry (01-10-2017)
    “…Although considerable progress has been made in carbon dioxide (CO 2 ) hydrogenation to various C 1 chemicals, it is still a great challenge to synthesize…”
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    Journal Article
  6. 6

    Selective Transformation of CO2 and H2 into Lower Olefins over In2O3‐ZnZrOx/SAPO‐34 Bifunctional Catalysts by Dang, Shanshan, Li, Shenggang, Yang, Chengguang, Chen, Xinqing, Li, Xiaopeng, Zhong, Liangshu, Gao, Peng, Sun, Yuhan

    Published in ChemSusChem (08-08-2019)
    “…Because lower olefins (C2=–C4=) are important bulk petrochemicals, their direct production from CO2 hydrogenation is highly attractive. However, the…”
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    Journal Article
  7. 7

    Rationally designed indium oxide catalysts for CO2 hydrogenation to methanol with high activity and selectivity by Dang, Shanshan, Qin, Bin, Yang, Yong, Wang, Hui, Cai, Jun, Han, Yong, Li, Shenggang, Gao, Peng, Sun, Yuhan

    Published in Science advances (01-06-2020)
    “…A novel hexagonal In 2 O 3 with high proportion of exposed {104} facets shows superior performance for CO 2 hydrogenation to CH 3 OH. Renewable energy-driven…”
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    Journal Article
  8. 8

    Unraveling the regulation of Mn in Cu-ZnOx formation during methanol synthesis from syngas over Cu/ZnO/Al2O3-Mn catalysts by Zhang, Zhenzhou, Cheng, Sifan, Liu, Wenqi, Chen, Baojian, Gao, Xinhua, Wang, Peng, Gao, Jian, Tan, Yisheng, Dang, Shanshan, Tu, Weifeng

    Published in Applied catalysis. B, Environmental (05-12-2023)
    “…This study unravels the regulation of Mn promoter in catalytic activity and surface identities of Cu/ZnO/Al2O3 catalysts by reaction kinetics, TPR/TPD, N2O…”
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    Journal Article
  9. 9

    Nanostructure of Indium-driven nickel catalysts break CO2 hydrogenation preference by Zhang, Shaokang, Ma, Hong, Jia, Lingyu, Zhang, Zhenzhou, Li, Xinli, Dang, Shanshan, Huang, Yanqiang, Tian, Yun, Tu, Weifeng, Han, Yi-Fan

    Published in Applied catalysis. B, Environmental (01-02-2025)
    “…Identifying the key factors governing the selectivity of CO2 hydrogenation catalysts remains a formidable challenge. Herein, we elucidate the complex…”
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  10. 10
  11. 11

    Revealing the mechanism of Ce promoter in modulating product distribution of CO2 hydrogenation over Fe-based catalysts by Guo, Yanjia, Jia, Lingyu, Zhang, Zhenzhou, Gong, Mengze, Dang, Shanshan, Huang, Yanqiang, Gao, Xinhua, Tu, Weifeng, Han, Yi-Fan

    “…The Ce promoter altered the ratio of Fe3O4 to Fe5C2 species, the surface enrichment of Na promoter, the generation and desorption of surface intermediate CO*…”
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    Journal Article
  12. 12

    Reactants‐Driven Surface‐Active Sites on a Cu/CeO 2 Catalyst for Methanol Synthesis from Syngas by Ren, Pengchao, Zhang, Zhenzhou, Hu, Tingting, Fan, Zhihui, Dang, Shanshan, Cheng, Sifan, Tu, Weifeng, Han, Yi‐Fan

    Published in ChemCatChem (07-10-2024)
    “…Abstract This study investigated the dynamic structure of a working Cu/CeO 2 catalyst and its catalytic consequences for CH 3 OH synthesis via CO hydrogenation…”
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  13. 13

    Revealing the Interaction between Cu and MgO in Cu/MgO Catalysts for CO Hydrogenation to CH3OH by Liu, Wenqi, Dang, Shanshan, Cheng, Sifan, Zhang, Zhenzhou, Ding, Xiaoya, Shi, Yanling, Ren, Pengchao, Tu, Weifeng, Han, Yi-Fan

    Published in ACS catalysis (03-05-2024)
    “…In this work, the structure–performance relationship of Cu/MgO catalysts was established to unravel the role of MgO and the active sites for CO hydrogenation…”
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    Journal Article
  14. 14

    Selective Transformation of CO 2 and H 2 into Lower Olefins over In 2 O 3 -ZnZrO x /SAPO-34 Bifunctional Catalysts by Dang, Shanshan, Li, Shenggang, Yang, Chengguang, Chen, Xinqing, Li, Xiaopeng, Zhong, Liangshu, Gao, Peng, Sun, Yuhan

    Published in ChemSusChem (08-08-2019)
    “…Because lower olefins (C -C ) are important bulk petrochemicals, their direct production from CO hydrogenation is highly attractive. However, the selectivity…”
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    Journal Article
  15. 15

    Gold Nanocluster‐Modified Titanium Nitride for Ultrafast Photonics Applications by Zhang, Bin, Wang, Zhenhong, Zhang, Chunxiang, Wu, Hanwei, Dang, Shanshan, Du, Juan, Song, Yufeng, Zhang, Han, Liu, Jun, Nie, Guohui

    Published in Advanced electronic materials (01-07-2021)
    “…Transition metal nitride materials exhibit unique optical characteristics and have attracted much interest for various applications, including waveguiding,…”
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  16. 16

    Computer-aided design of Pt/In 2 O 3 single-atom catalysts for CO 2 hydrogenation to methanol by Wang, Yuchen, Zhou, Zixuan, Qin, Bin, Chang, Qingyu, Dang, Shanshan, Hu, Yiqin, Li, Kun, Bao, Yuanjie, Mao, Jianing, Yang, Haiyan, Liu, Yang, Li, Jiong, Li, Shenggang, Dixon, David A., Sun, Yuhan, Gao, Peng

    Published in EES catalysis (2024)
    “…Methanol (CH 3 OH) synthesis from carbon dioxide (CO 2 ) hydrogenation is an industrially viable approach to CO 2 utilization. For the recently developed…”
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    Journal Article
  17. 17
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  19. 19

    Rationally designed indium oxide catalysts for CO 2 hydrogenation to methanol with high activity and selectivity by Dang, Shanshan, Qin, Bin, Yang, Yong, Wang, Hui, Cai, Jun, Han, Yong, Li, Shenggang, Gao, Peng, Sun, Yuhan

    Published in Science advances (17-06-2020)
    “…A novel hexagonal In 2 O 3 with high proportion of exposed {104} facets shows superior performance for CO 2 hydrogenation to CH 3 OH. Renewable energy-driven…”
    Get full text
    Journal Article
  20. 20

    Direct conversion of CO 2 into liquid fuels with high selectivity over a bifunctional catalyst by Gao, Peng, Li, Shenggang, Bu, Xianni, Dang, Shanshan, Liu, Ziyu, Wang, Hui, Zhong, Liangshu, Qiu, Minghuang, Yang, Chengguang, Cai, Jun, Wei, Wei, Sun, Yuhan

    Published in Nature chemistry (01-10-2017)
    “…Although considerable progress has been made in carbon dioxide (CO ) hydrogenation to various C chemicals, it is still a great challenge to synthesize…”
    Get full text
    Journal Article