Zobrazeno 1 - 10
of 109
pro vyhledávání: '"N. Rainer"'
Autor:
Przemysław J. Jodłowski, Grzegorz Kurowski, Klaudia Dymek, Marcin Oszajca, Witold Piskorz, Kornelia Hyjek, Anna Wach, Anna Pajdak, Michal Mazur, Daniel N. Rainer, Dominik Wierzbicki, Piotr Jeleń, Maciej Sitarz
Publikováno v:
Ultrasonics Sonochemistry, Vol 95, Iss , Pp 106377- (2023)
In this study, a sonochemical route for the preparation of a new Hf-MIL-140A metal–organic framework from a mixture of UiO-66/MIL-140A is presented. The sonochemical synthesis route not only allows the phase-pure MIL-140A structure to be obtained b
Externí odkaz:
https://doaj.org/article/810c9fc707bf4fcb8e2e6aa5ad33f193
Autor:
Aamod V. Desai, Valerie R. Seymour, Romy Ettlinger, Atin Pramanik, Alexis G. Manche, Daniel N. Rainer, Paul S. Wheatley, John M. Griffin, Russell E. Morris, A. Robert Armstrong
Funding: This work was supported by Faraday Institution (Grant-FIRG018). We are grateful to Engineering and Physical Sciences Research Council (EPSRC) for the Light Element Facility Grant (EP/T019298/1) and Strategic Equipment Resource Grant (EP/R023
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::849a582a5b94d63e0f5b92cfa9b255e0
https://hdl.handle.net/10023/26761
https://hdl.handle.net/10023/26761
Akademický článek
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Autor:
Eunji Eom, Minseok Song, Jeong-Chul Kim, Dong-il Kwon, Daniel N. Rainer, Kinga Gołąbek, Sung Chan Nam, Ryong Ryoo, Michal Mazur, Changbum Jo
Publikováno v:
JACS Au [online] 2(10), 2327-2338. (2022)
Confining Au nanoparticles (NPs) in a restricted space (
Autor:
Valeska P. Ting, Norton G. West, Daniel N. Rainer, Omar K. Farha, Monique A. van der Veen, Gavin A. Craig, Christopher J. Sumby, Rochus Schmid, Zhehao Huang, Samantha Y. Chong, Anthony E. Phillips, Ryotaro Matsuda, Lui R. Terry, Andrew D. Burrows, Andrew L. Goodwin, Jack D. Evans, Matthew R. Ryder, Stefan Kaskel, Susumu Kitagawa, Alfred Y. Lee, Christophe Lavenn, Lee Brammer, Jet-Sing M. Lee, Marco Taddei, Mohana Shivanna, David Farrusseng, Michael Fischer, Ben Johnson
Publikováno v:
Faraday Discussions. 225:152-167
Autor:
Martin P. Attfield, Daniel N. Rainer, Mohana Shivanna, Géraldine Chanteux, Isabel Cooley, Zhehao Huang, Sihai Yang, Gabriel Sánchez, Christian Serre, Sebastian D. Pike, Stuart L. James, Mzamo Shozi, Yunzhuo Li, Ollie Thomas, Martin Schröder, Lee Brammer, Guojun Zhou, José Casaban, Rosa Fucci, Andrew D. Burrows, Jiangnan Li, Huan V. Doan, Patricia Horcajada, David Fairen-Jimenez, Christophe Lavenn, Gareth Toft, Nattapol Ma, Vera Butova, Omar M. Yaghi, Andrea Laybourn, Vonika Ka-Man Au, Michael J. Zaworotko
Publikováno v:
Faraday Discussions. 231:127-144
Autor:
Russell E. Morris, Daniel N. Rainer
Publikováno v:
Dalton Transactions (Cambridge, England : 2003)
Dalton Transactions
Dalton Transactions
Zeolites are a class of microporous materials with tremendous value for large scale industrial applications such as catalysis, ion exchange, or gas separation. In addition to naturally ocurring variants, zeolites are made synthetically using hydrothe
Autor:
Stewart J. Warrender, Cameron M. Rice, Russell E. Morris, Daniel N. Rainer, Sharon E. Ashbrook
Publikováno v:
Chemical Science
Efficient hydrolysis of zeolites in the ADOR process using mechanochemistry, including economical enrichment with 17O for solid-state NMR.
The ADOR (Assembly-Disassembly-Organisation-Reassembly) process for zeolites has been shown to produce a n
The ADOR (Assembly-Disassembly-Organisation-Reassembly) process for zeolites has been shown to produce a n
Autor:
Anthony Robert Armstrong, Daniel N. Rainer, Atin Pramanik, Joel M. Cabañero, Russell E. Morris, Aamod V. Desai
Publikováno v:
Small methods. 5(12)
This work was supported by the Faraday Institution (Grant number—FIRG018). The authors also acknowledge the Engineering and Physical Sciences Research Council (EPSRC) Light Element Facility Grant (EP/T019298/1) and the EPSRC Strategic Equipment Res
Autor:
Karena W. Chapman, Simon M. Vornholt, Russell E. Morris, Daniel N. Rainer, Samantha E. Russell, Susan E. Henkelis
Publikováno v:
Materials Advances
The assembly–disassembly–organisation–reassembly (ADOR) process is an important tool to access zeolite structures that are otherwise unfeasible via hydrothermal methods. In situ flow pair distribution function (PDF) analysis has been used to pr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::785bd76f8066a9f0857c1080f55a534c
https://hdl.handle.net/10023/24266
https://hdl.handle.net/10023/24266