Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach
10.1039/c7ta00413c
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2020
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sg-nus-scholar.10635-1706352024-03-26T08:47:52Z Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach Hu, Zhigang Mahdi, Ezwan Mahmoud Peng, Yongwu Qian, Yuhong Zhang, Bin Yan, Ning Yuan, Daqiang Tan, Jin-Chong Zhao, Dan CHEMICAL & BIOMOLECULAR ENGINEERING Science & Technology Physical Sciences Technology Chemistry, Physical Energy & Fuels Materials Science, Multidisciplinary Chemistry Materials Science CARBON-DIOXIDE SEPARATION FACILE SYNTHESIS ADSORPTION PROPERTIES BRONSTED ACIDITY BUILDING-BLOCKS POROUS SOLIDS EFFICIENT 2D SITES STABILITY 10.1039/c7ta00413c JOURNAL OF MATERIALS CHEMISTRY A 5 19 8954-8963 2020-06-22T06:30:44Z 2020-06-22T06:30:44Z 2017-05-21 2020-06-18T10:10:40Z Article Hu, Zhigang, Mahdi, Ezwan Mahmoud, Peng, Yongwu, Qian, Yuhong, Zhang, Bin, Yan, Ning, Yuan, Daqiang, Tan, Jin-Chong, Zhao, Dan (2017-05-21). Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach. JOURNAL OF MATERIALS CHEMISTRY A 5 (19) : 8954-8963. ScholarBank@NUS Repository. https://doi.org/10.1039/c7ta00413c 2050-7488 2050-7496 https://scholarbank.nus.edu.sg/handle/10635/170635 en ROYAL SOC CHEMISTRY Elements |
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Science & Technology Physical Sciences Technology Chemistry, Physical Energy & Fuels Materials Science, Multidisciplinary Chemistry Materials Science CARBON-DIOXIDE SEPARATION FACILE SYNTHESIS ADSORPTION PROPERTIES BRONSTED ACIDITY BUILDING-BLOCKS POROUS SOLIDS EFFICIENT 2D SITES STABILITY |
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Science & Technology Physical Sciences Technology Chemistry, Physical Energy & Fuels Materials Science, Multidisciplinary Chemistry Materials Science CARBON-DIOXIDE SEPARATION FACILE SYNTHESIS ADSORPTION PROPERTIES BRONSTED ACIDITY BUILDING-BLOCKS POROUS SOLIDS EFFICIENT 2D SITES STABILITY Hu, Zhigang Mahdi, Ezwan Mahmoud Peng, Yongwu Qian, Yuhong Zhang, Bin Yan, Ning Yuan, Daqiang Tan, Jin-Chong Zhao, Dan Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach |
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10.1039/c7ta00413c |
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CHEMICAL & BIOMOLECULAR ENGINEERING |
author_facet |
CHEMICAL & BIOMOLECULAR ENGINEERING Hu, Zhigang Mahdi, Ezwan Mahmoud Peng, Yongwu Qian, Yuhong Zhang, Bin Yan, Ning Yuan, Daqiang Tan, Jin-Chong Zhao, Dan |
format |
Article |
author |
Hu, Zhigang Mahdi, Ezwan Mahmoud Peng, Yongwu Qian, Yuhong Zhang, Bin Yan, Ning Yuan, Daqiang Tan, Jin-Chong Zhao, Dan |
author_sort |
Hu, Zhigang |
title |
Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach |
title_short |
Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach |
title_full |
Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach |
title_fullStr |
Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach |
title_full_unstemmed |
Kinetically controlled synthesis of two-dimensional Zr/Hf metal-organic framework nanosheets via a modulated hydrothermal approach |
title_sort |
kinetically controlled synthesis of two-dimensional zr/hf metal-organic framework nanosheets via a modulated hydrothermal approach |
publisher |
ROYAL SOC CHEMISTRY |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/170635 |
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1795300934750830592 |