99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework

Separation of 99TcO4 − from nuclear waste at the Savannah River Site is hampered by the extreme conditions. Here, the authors propose a solution by developing an alkaline-resistant metal organic framework material featuring unique recognition sites for selective incorporation of 99TcO4 − anions.

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Autores principales: Nannan Shen, Zaixing Yang, Shengtang Liu, Xing Dai, Chengliang Xiao, Kathryn Taylor-Pashow, Dien Li, Chuang Yang, Jie Li, Yugang Zhang, Mingxing Zhang, Ruhong Zhou, Zhifang Chai, Shuao Wang
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/dbd9bd34832f476db4ba6f6ab9d393ab
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spelling oai:doaj.org-article:dbd9bd34832f476db4ba6f6ab9d393ab2021-12-02T14:41:27Z99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework10.1038/s41467-020-19374-92041-1723https://doaj.org/article/dbd9bd34832f476db4ba6f6ab9d393ab2020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19374-9https://doaj.org/toc/2041-1723Separation of 99TcO4 − from nuclear waste at the Savannah River Site is hampered by the extreme conditions. Here, the authors propose a solution by developing an alkaline-resistant metal organic framework material featuring unique recognition sites for selective incorporation of 99TcO4 − anions.Nannan ShenZaixing YangShengtang LiuXing DaiChengliang XiaoKathryn Taylor-PashowDien LiChuang YangJie LiYugang ZhangMingxing ZhangRuhong ZhouZhifang ChaiShuao WangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nannan Shen
Zaixing Yang
Shengtang Liu
Xing Dai
Chengliang Xiao
Kathryn Taylor-Pashow
Dien Li
Chuang Yang
Jie Li
Yugang Zhang
Mingxing Zhang
Ruhong Zhou
Zhifang Chai
Shuao Wang
99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework
description Separation of 99TcO4 − from nuclear waste at the Savannah River Site is hampered by the extreme conditions. Here, the authors propose a solution by developing an alkaline-resistant metal organic framework material featuring unique recognition sites for selective incorporation of 99TcO4 − anions.
format article
author Nannan Shen
Zaixing Yang
Shengtang Liu
Xing Dai
Chengliang Xiao
Kathryn Taylor-Pashow
Dien Li
Chuang Yang
Jie Li
Yugang Zhang
Mingxing Zhang
Ruhong Zhou
Zhifang Chai
Shuao Wang
author_facet Nannan Shen
Zaixing Yang
Shengtang Liu
Xing Dai
Chengliang Xiao
Kathryn Taylor-Pashow
Dien Li
Chuang Yang
Jie Li
Yugang Zhang
Mingxing Zhang
Ruhong Zhou
Zhifang Chai
Shuao Wang
author_sort Nannan Shen
title 99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework
title_short 99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework
title_full 99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework
title_fullStr 99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework
title_full_unstemmed 99TcO4 − removal from legacy defense nuclear waste by an alkaline-stable 2D cationic metal organic framework
title_sort 99tco4 − removal from legacy defense nuclear waste by an alkaline-stable 2d cationic metal organic framework
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/dbd9bd34832f476db4ba6f6ab9d393ab
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