Browsing by Titles

Showing results 1 to 18 of 18

  • Sivanantham, Arumugam
  • Ganesan, Pandian
  • Estevez, Luis
  • Mcgrail, B. Peter
  • Motkuri, Radha Kishan
  • Shanmugam, Sangaraju
  • 2018-05
  • Sivanantham, Arumugam. (2018-05). A Stable Graphitic, Nanocarbon-Encapsulated, Cobalt-Rich Core-Shell Electrocatalyst as an Oxygen Electrode in a Water Electrolyzer. Advanced Energy Materials, 8(14). doi: 10.1002/aenm.201702838
  • Wiley-VCH Verlag
  • View : 1116
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  • Jin, Kangwoo
  • Moon, Dohyun
  • Chen, Ying-Pin
  • Park, Jinhee
  • 2024
  • Jin, Kangwoo. (2024). Comprehensive Qualitative and Quantitative Colorimetric Sensing of Volatile Organic Compounds Using Monolayered Metal–Organic Framework Films. Advanced Materials, 36(8). doi: 10.1002/adma.202309570
  • Wiley
  • View : 301
  • Download : 0
  • Ahn, Cheol Hyoun
  • Yang, Won Seok
  • Kim, Jeong Jae
  • Kim, Jae Hyun
  • Cho, Hyung Koun
  • 2022-11
  • Ahn, Cheol Hyoun. (2022-11). Design of Bronze-Rich Dual-Phasic TiO2 Embedded Amorphous Carbon Nanocomposites Derived from Ti-Metal-Organic Frameworks for Improved Lithium-Ion Storage. Small Methods, 6(11). doi: 10.1002/smtd.202201066
  • Wiley
  • View : 419
  • Download : 0
  • 2016-11
  • Ji, Hoon. (2016-11). Direct in Situ Conversion of Metals into Metal-Organic Frameworks: A Strategy for the Rapid Growth of MOF Films on Metal Substrates. ACS Applied Materials & Interfaces, 8(47), 32414–32420. doi: 10.1021/acsami.6b12755
  • American Chemical Society
  • View : 1436
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Driving inward growth of lithium metal in hollow microcapsule hosts by heteroatom-controlled nucleation

  • Kim, Siwon
  • Shin, Hong Rim
  • Kim, Ki Jae
  • Park, Min-Sik
  • Lee, Jong-Won
  • 2024-08
  • Kim, Siwon. (2024-08). Driving inward growth of lithium metal in hollow microcapsule hosts by heteroatom-controlled nucleation. Carbon Energy, 6(8). doi: 10.1002/cey2.525
  • Wiley
  • View : 129
  • Download : 38
  • Nam, Dae-Hyun
  • Shekhah, Osama
  • Ozden, Adnan
  • McCallum, Christopher
  • Li, Fengwang
  • Wang, Xue
  • Lum, Yanwei
  • Lee, Taemin
  • Li, Jun
  • Wicks, Joshua
  • et al
  • 2022-12
  • Nam, Dae-Hyun. (2022-12). High-Rate and Selective CO2 Electrolysis to Ethylene via Metal-Organic-Framework-Augmented CO2 Availability. Advanced Materials, 34(51). doi: 10.1002/adma.202207088
  • Wiley-VCH Verlag
  • View : 295
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  • Han, Sang A.
  • Qutaish, Hamzeh
  • Lee, Jong-Won
  • Park, Min-Sik
  • Kim, Jung Ho
  • 2023-02
  • Han, Sang A. (2023-02). Metal-organic framework derived porous structures towards lithium rechargeable batteries. EcoMat, 5(2). doi: 10.1002/eom2.12283
  • Wiley
  • View : 326
  • Download : 0
  • Swain, Jaykishon
  • Priyadarshini, Anulipsa
  • Panda, Swati
  • Hajra, Sugato
  • Das, Niharika
  • Vivekananthan, Venkateswaran
  • Mistewicz, Krystian
  • Samantray, Raghabendra
  • Kim, Hoe Joon
  • Sahu, Rojalin
  • 2025-05
  • Swain, Jaykishon. (2025-05). Metal-Organic Frameworks: Synthesis Methods and Multifunctional Applications. Energy Technology, 13(5). doi: 10.1002/ente.202402354
  • Wiley
  • View : 144
  • Download : 0
  • 2020-08
  • Lee, Byeongchan. (2020-08). Microscopic and Mesoscopic Dual Postsynthetic Modifications of Metal-Organic Frameworks. Angewandte Chemie - International Edition, 59(33), 13793–13799. doi: 10.1002/anie.202000278
  • John Wiley & Sons Ltd.
  • View : 774
  • Download : 0
  • 2022-07
  • Park, Seonghun. (2022-07). Multi-stimuli-engendered radical-anionic MOFs: Visualization of structural transformation upon radical formation. Chem, 8(7), 1993–2010. doi: 10.1016/j.chempr.2022.03.023
  • Cell Press
  • View : 745
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  • 2017-07
  • Bae, Jinhee. (2017-07). Multiple Coordination Exchanges for Room-Temperature Activation of Open-Metal Sites in Metal-Organic Frameworks. ACS Applied Materials & Interfaces, 9(29), 24743–24752. doi: 10.1021/acsami.7b07299
  • American Chemical Society
  • View : 1032
  • Download : 0
  • Ahmed, Imteaz
  • Panja, Tandra
  • Khan, Nazmul Abedin
  • Sarker, Mithun
  • Yu, Jong-Sung
  • Jhung, Sung Hwa
  • 2017-03
  • Ahmed, Imteaz. (2017-03). Nitrogen-Doped Porous Carbons from Ionic Liquids@MOF: Remarkable Adsorbents for Both Aqueous and Nonaqueous Media. ACS Applied Materials & Interfaces, 9(11), 10276–10285. doi: 10.1021/acsami.7b00859
  • American Chemical Society
  • View : 1067
  • Download : 0
  • Cao, Shihai
  • Lu, Jingyu
  • Sun, Yuntong
  • Li, Yinghao
  • Hao, Zhendong
  • Lee, Jong-Min
  • 2025-07
  • Cao, Shihai. (2025-07). Open Frameworks Materials for Nitrogen Electrofixation to Ammonia, Progress, Challenges, and Future Perspectives. Small, 21(27). doi: 10.1002/smll.202502708
  • Wiley
  • View : 201
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  • 2024
  • Kim, Yeonghun. (2024). Partial-Interpenetration-Controlled UiO-Type Metal-Organic Framework and its Catalytic Activity. Small, 20(9). doi: 10.1002/smll.202305999
  • Wiley-VCH Verlag
  • View : 382
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  • Byeongchan Lee
  • 2023
  • Byeongchan Lee. (2023). Synthesis and Modification of Metal-Organic Materials via Aryl Substitution and Their Applications. doi: 10.22677/THESIS.200000658635
  • DGIST
  • View : 139
  • Download : 0
  • 2025-09
  • Small, v.21, no.37
  • Wiley
  • View : 261
  • Download : 0
  • Keum, Yesub
  • Park, Seonghun
  • Chen, Ying-Pin
  • Park, Jinhee
  • 2018-11
  • Keum, Yesub. (2018-11). Titanium-Carboxylate Metal-Organic Framework Based on an Unprecedented Ti-Oxo Chain Cluster. Angewandte Chemie - International Edition, 57(45), 14852–14856. doi: 10.1002/anie.201809762
  • John Wiley & Sons Ltd.
  • View : 863
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  • Lee, Byeongchan
  • Chen, Ying-Pin
  • Park, Jinkyu
  • Park, Jinhee
  • 2019-07
  • Lee, Byeongchan. (2019-07). Visualization of Iodine Chemisorption Facilitated by Aryl C-H Bond Activation. ACS Applied Materials & Interfaces, 11(29), 25817–25823. doi: 10.1021/acsami.9b04768
  • American Chemical Society
  • View : 776
  • Download : 0
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