Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Asanka S. Rathnayake"'
Autor:
Asanka S. Rathnayake, Hector W. L. Fraser, Euan K. Brechin, Scott J. Dalgarno, Jakob E. Baumeister, Joshua White, Pokpong Rungthanaphatsophon, Justin R. Walensky, Charles L. Barnes, Simon J. Teat, Jerry L. Atwood
Publikováno v:
Nature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
New approaches are required to access metal-organic assemblies with unusual structural properties. Here, the authors use an in situ redox reaction to obtain a mixed-valence, Mn(II)/Mn(III)-containing metal-organic nanocapsule with an odd number of me
Externí odkaz:
https://doaj.org/article/415c36e3c1664396953d80934f3dae4f
Autor:
Hector W. L. Fraser, Justin R. Walensky, Jerry L. Atwood, Euan K. Brechin, Scott J. Dalgarno, Jakob E. Baumeister, Charles L. Barnes, Steven P. Kelley, Asanka S. Rathnayake, Pokpong Rungthanaphatsophon, Joshua White
Publikováno v:
Rathnayake, A S, Fraser, H W L, Brechin, E K, Dalgarno, S J, Baumeister, J E, White, J, Rungthanaphatsophon, P, Walensky, J R, Kelley, S P, Barnes, C L & Atwood, J L 2018, ' Site-Specific Metal Chelation Facilitates the Unveiling of Hidden Coordination Sites in an Fe II/Fe III-Seamed Pyrogallol[4]arene Nanocapsule ', Journal of the American Chemical Society . https://doi.org/10.1021/jacs.8b10186
Under suitable conditions, C-alkylpyrogallol[4]arenes (PgCs) arrange into spherical metal–organic nanocapsules (MONCs) upon coordination to appropriate metal ions. Herein we present the synthesis and structural characterization of a novel FeII/FeII
Autor:
Euan K. Brechin, Charles L. Barnes, Asanka S. Rathnayake, Jerry L. Atwood, Pokpong Rungthanaphatsophon, Hector W. L. Fraser, Jakob E. Baumeister, Scott J. Dalgarno, Justin R. Walensky
Publikováno v:
Rathnayake, A S, Fraser, H W L, Brechin, E K, Dalgarno, S J, Baumeister, J E, Rungthanaphatsophon, P, Walensky, J R, Barnes, C L & Atwood, J L 2018, ' Oxidation State Distributions Provide Insight into Parameters Directing the Assembly of Metal-Organic Nanocapsules ', Journal of the American Chemical Society, vol. 140, no. 40, pp. 13022–13027 . https://doi.org/10.1021/jacs.8b07775
Two structurally analogous Mn-seamed C-alkylpyrogallol[4]arene (PgCn)-based metal-organic nanocapsules (MONCs) have been synthesized under similar reaction conditions and characterized by crystallographic, electrochemical, and magnetic susceptibility
Autor:
Charles L. Barnes, Pokpong Rungthanaphatsophon, Asanka S. Rathnayake, Hector W. L. Fraser, Joshua White, Euan K. Brechin, Simon J. Teat, Jakob E. Baumeister, Scott J. Dalgarno, Justin R. Walensky, Jerry L. Atwood
Publikováno v:
Nature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
Rathnayake, AS; Fraser, HWL; Brechin, EK; Dalgarno, SJ; Baumeister, JE; White, J; et al.(2018). In situ redox reactions facilitate the assembly of a mixed-valence metal-organic nanocapsule. Nature Communications, 9(1). doi: 10.1038/s41467-018-04541-w. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/57d3v501
Nature communications, vol 9, iss 1
Nature Communications
Rathnayake, A S, Fraser, H W L, Brechin, E K, Dalgarno, S J, Baumeister, J E, White, J, Rungthanaphatsophon, P, Walensky, J R, Barnes, C L, Teat, S J & Atwood, J L 2018, ' In situ redox reactions facilitate the assembly of a mixed-valence metal-organic nanocapsule ', Nature Communications, vol. 9, 2119 . https://doi.org/10.1038/s41467-018-04541-w
Rathnayake, AS; Fraser, HWL; Brechin, EK; Dalgarno, SJ; Baumeister, JE; White, J; et al.(2018). In situ redox reactions facilitate the assembly of a mixed-valence metal-organic nanocapsule. Nature Communications, 9(1). doi: 10.1038/s41467-018-04541-w. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/57d3v501
Nature communications, vol 9, iss 1
Nature Communications
Rathnayake, A S, Fraser, H W L, Brechin, E K, Dalgarno, S J, Baumeister, J E, White, J, Rungthanaphatsophon, P, Walensky, J R, Barnes, C L, Teat, S J & Atwood, J L 2018, ' In situ redox reactions facilitate the assembly of a mixed-valence metal-organic nanocapsule ', Nature Communications, vol. 9, 2119 . https://doi.org/10.1038/s41467-018-04541-w
C-alkylpyrogallol[4]arenes (PgCs) have been studied for their ability to form metal-organic nanocapsules (MONCs) through coordination to appropriate metal ions. Here we present the synthesis and characterization of an MnII/MnIII-seamed MONC in additi
Publikováno v:
Crystal Growth & Design. 17:4501-4503
A metal–organic nanocapsule consisting of 24 Zn2+ ions and six pyrogallol[4]arene units has been synthesized and structurally characterized. All the Zn2+ ions seaming the nanocapsule are disordered over two positions forming concave distortions on
Autor:
Asanka S, Rathnayake, Hector W L, Fraser, Euan K, Brechin, Scott J, Dalgarno, Jakob E, Baumeister, Joshua, White, Pokpong, Rungthanaphatsophon, Justin R, Walensky, Steven P, Kelley, Charles L, Barnes, Jerry L, Atwood
Publikováno v:
Journal of the American Chemical Society. 140(46)
Under suitable conditions, C-alkylpyrogallol[4]arenes (PgCs) arrange into spherical metal-organic nanocapsules (MONCs) upon coordination to appropriate metal ions. Herein we present the synthesis and structural characterization of a novel Fe
Autor:
Kyle A. Feaster, Jerry L. Atwood, Joshua White, Simon J. Teat, Charles L. Barnes, Asanka S. Rathnayake
Publikováno v:
Crystal Growth & Design. 16:3562-3564
The synthesis and X-ray crystallographic structure of the first cobalt-seamed hexameric nanocapsule, [Co24(C-pentylpyrogallol[4]arene)6], is presented. The overall metal–ligand arrangement of this novel capsule is similar to that of previously repo
Autor:
Jerry L. Atwood, Asanka S. Rathnayake, Simon J. Teat, Christine M. Beavers, Drew A. Fowler, Stuart R. Kennedy, Harshita Kumari
Publikováno v:
Journal of the American Chemical Society. 135(33)
The synthesis and single-crystal X-ray diffraction structure of a dimeric zinc-seamed nanocapsule using a mixed pyrogallol/resorcinol[4]arene are presented. The use of "mixed" macrocycles results in an incomplete seam of coordination bonds around the