Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Brian E. Conn"'
Publikováno v:
Acta Crystallographica Section E: Crystallographic Communications, Vol 74, Iss 7, Pp 987-993 (2018)
Crystals of M4Au12Ag32(p-MBA)30 bimetallic monolayer-protected clusters (MPCs), where p-MBA is p-mercaptobenzoic acid and M+ is a counter-cation (M = Na, Cs) have been grown and their structure determined. The molecular structure of triacontakis[(4-c
Externí odkaz:
https://doaj.org/article/5a52ec1a795346e4a8b3e964d623df73
Autor:
Bo Li, De-en Jiang, Terry P. Bigioni, Brian E. Conn, Daniel M. Chevrier, Peng Zhang, Amares Chatt
Publikováno v:
ACS Nano. 14:8433-8441
Recently, silver nanoclusters have garnered considerable attention after the high-yield synthesis and crystallization of a thiolate-protected silver nanocluster, Na4Ag44(SR)30 (SR, protecting thiolate ligand). One intriguing feature of Na4Ag44(SR)30
Autor:
Daniel M, Chevrier, Brian E, Conn, Bo, Li, De-En, Jiang, Terry P, Bigioni, Amares, Chatt, Peng, Zhang
Publikováno v:
ACS nano. 14(7)
Recently, silver nanoclusters have garnered considerable attention after the high-yield synthesis and crystallization of a thiolate-protected silver nanocluster, Na
Autor:
Terry P. Bigioni, Peng Zhang, Bo Li, Amares Chatt, Brian E. Conn, De-en Jiang, Daniel M. Chevrier
We report the mechanism on the ultrahigh stability of Na4Ag44(SR)30 by uncovering how coordinating solvents interact with the Na4Ag44(SR)30 nanocluster at the atomic scale. Through synchrotron X-ray experiments and theoretical calculations, it was fo
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4d631fe7ad27223623f1c41d741c7cf7
https://doi.org/10.26434/chemrxiv.12407117
https://doi.org/10.26434/chemrxiv.12407117
Publikováno v:
The Journal of Physical Chemistry C. 122:13166-13174
Metal heteroatom substitution in molecular nanoparticles offers a unique opportunity to study alloying with an unprecedented level of detail and control, which may be important for applications in ...
Autor:
Badri Bhattarai, Brian E. Conn, Terry P. Bigioni, Indranath Chakraborty, Thalappil Pradeep, Aydar Atnagulov
Publikováno v:
The Journal of Physical Chemistry C. 121:10964-10970
Nanoparticles rival pharmaceuticals in synthetic inefficiency, in particular as measured by process mass intensity, with by far the largest contribution to waste being from solvents. We have therefore developed a greener method of synthesizing silver
Autor:
Sameera, Wickramasinghe, Aydar, Atnagulov, Brian E, Conn, Bokwon, Yoon, Robert N, Barnett, Wendell P, Griffith, Uzi, Landman, Terry P, Bigioni
Publikováno v:
Journal of the American Chemical Society. 137:11550-11553
Although silver nanoparticles are of great fundamental and practical interest, only one structure has been determined thus far: M4Ag44(SPh)30, where M is a monocation, and SPh is an aromatic thiolate ligand. This is in part due to the fact that no ot
Autor:
Badri Bhattarai, Terry P. Bigioni, Yashar Abdollahian, Wendell P. Griffith, Sameera Wickramasinghe, Anil Desireddy, Yong Wah Kim, Aydar Atnagulov, Robert N. Barnett, Bokwon Yoon, Brian E. Conn, Uzi Landman, Scott R. J. Oliver
Publikováno v:
The Journal of Physical Chemistry C. 119:11238-11249
M4Ag44(p-MBA)30 molecular nanoparticles, where M is an alkali metal, have recently been shown to have exceptional stability, which confers unique traits to this molecule. In particular, the synthesis is straightforward, produces a truly single-sized
Autor:
Jianping Gao, Uzi Landman, Brian E. Conn, Robert N. Barnett, Anil Desireddy, Terry P. Bigioni, Bokwon Yoon, W. D. Luedtke
Publikováno v:
Nature Materials. 13:807-811
Self-assembled nanoparticle superlattices-materials made of inorganic cores capped by organic ligands, of varied structures, and held together by diverse binding motifs-exhibit size-dependent properties as well as tunable collective behaviour arising
Autor:
Brian E. Conn, Terry P. Bigioni, Robert N. Barnett, Uzi Landman, Bokwon Yoon, Aydar Atnagulov
Publikováno v:
Science Advances
A predicted structure of an organically capped silver nanocluster is confirmed via x-ray diffraction and ab initio theory.
Fathoming the principles underpinning the structures of monolayer-coated molecular metal nanoparticles remains an enduring
Fathoming the principles underpinning the structures of monolayer-coated molecular metal nanoparticles remains an enduring