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Browsing Faculty of Science and Engineering by Author "Forrest, Katherine A."

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Browsing Faculty of Science and Engineering by Author "Forrest, Katherine A."

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  • Elsaidi, Sameh K.; Mohamed, Mona H.; Simon, Cory M.; Braun, Efrem; Pham, Tony; Forrest, Katherine A.; Xu, Wenqian; Banerjee, Debasis; Space, Brian; Zaworotko, Michael J.; Thallapally, Praveen K. (Royal Society Of Chemistry, 2017)
    Dynamic and flexible metal–organic frameworks (MOFs) that respond to external stimuli, such as stress, light, heat, and the presence of guest molecules, hold promise for applications in chemical sensing, drug delivery, gas ...
  • Chen, Kai-Jie; Yang, Qing‐Yuan; Sen, Susan; Madden, David G.; Kumar, Amrit; Pham, Tony; Forrest, Katherine A.; Hosono, Nobuhiko; Space, Brian; Kitagawa, Susumu; Zaworotko, Michael J. (Wiley VCH, 2018)
    Removal of CO2 from CO gas mixtures is a necessary but challenging step during production of ultra‐pure CO as processed from either steam reforming of hydrocarbons or CO2 reduction. Herein, two hybrid ultramicroporous ...
  • O'Nolan, Daniel; Madden, David G.; Kumar, Amrit; Chen, Kai-Jie; Pham, Tony; Forrest, Katherine A.; Patyk-Kaźmierczak, Ewa; Yang, Qing‐Yuan; Murray, Claire A.; Tang, Chiu C.; Space, Brian; Zaworotko, Michael J. (Royal Society of Chemistry, 2018)
    Phases of a 2‐fold pcu Hybrid Ultramicroporous Material (HUM), SIFSIX‐14‐Cu‐i, exhibiting 99%, 93%, 89%, and 70% partial interpenetration have been obtained. 1:99 C2H2/C2H4 gas separation studies reveal that as the ...
  • Forrest, Katherine A.; Pham, Tony; Elsaidi, Sameh K.; Mohamed, Mona H.; Thallapally, Praveen K.; Zaworotko, Michael J.; Space, Brian (American Chemical Society, 2019)
    A combined Monte Carlo (MC) simulation and periodic density functional theory (DFT) study of CO2 sorption was performed in SIFSIX-3-M (M = Fe, Co, Ni, Cu, Zn), a family of hybrid ultramicroporous materials (HUMs) that ...
  • Han, Lin; Pham, Tony; Zhuo, Mingjing; Forrest, Katherine A.; Suepaul, Shanelle; Space, Brian; Zaworotko, Michael J.; Shi, Wei; Chen, Yao; Cheng, Peng; Zhang, Zhenjie (American Chemical Society, 2019)
    Inspired by the structure of carbonic anhydrase, we developed a robust ultramicroporous lanthanide metal-organic framework (MOF) platform (NKMOF-3-Ln), which possess porous pocket to selectively bind with CO2 at ambient ...
  • Shivanna, Mohana; Yang, Qing‐Yuan; Bajpai, Alankriti; Sen, Susan; Hosono, Nobuhiko; Kusaka, Shinpei; Pham, Tony; Forrest, Katherine A.; Space, Brian; Kitagawa, Susumu; Zaworotko, Michael J. (American Association for the Advancement of Science, 2018)
    Shape-memory effects are quite well-studied in general, but there is only one reported example in the context of porous materials. We report the second example of a porous coordination network that exhibits a sorbate-induced ...
  • Peng, Yun-Lei; He, Chaohui; Pham, Tony; Wang, Ting; Li, Pengfei; Krishna, Rajamani; Forrest, Katherine A.; Hogan, Adam; Suepaul, Shanelle; Space, Brian; Fang, Ming; Chen, Yao; Zaworotko, Michael J.; Li, Jinping; Li, Libo; Zhang, Zhenjie; Cheng, Peng; Chen, Banglin (Wiley and Sons Ltd, 2019)
    Simultaneous removal of trace amounts of propyne and propadiene from propylene is an important but challenging industrial process. We report herein a class of microporous metal–organic frameworks (NKMOF‐1‐M) with exceptional ...
  • Peng, Yun-Lei; Pham, Tony; Li, Pengfei; Wang, Ting; Chen, Yao; Chen, Kai-Jie; Forrest, Katherine A.; Space, Brian; Cheng, Peng; Zaworotko, Michael J.; Zhang, Zhenjie (Wiley and Sons Ltd, 2018)
    Highly selective separation and/or purification of acetylene from various gas mixtures is a relevant and difficult challenge which currently requires costly and energy intensive chemisorption processes. Herein, we ...

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