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Journal of the American Chemical Society|March 13, 2012
DFT-chemical pressure analysis: visualizing the role of atomic size in shaping the structures of inorganic materialsDaniel C FredricksonJournal of the American Chemical Society|May 31, 2011
Electronic packing frustration in complex intermetallic structures: the role of chemical pressure in Ca2Ag7Daniel C FredricksonAccounts of Chemical Research|February 1, 2018
Parallels in Structural Chemistry between the Molecular and Metallic Realms Revealed by Complex Intermetallic PhasesDaniel C FredricksonInorganic Chemistry|June 12, 2024
Navigating the 18-<i>n</i>+<i>m</i> Isomers of PdSn<sub>2</sub>: Chemical Pressure Relief through Isolobal Bonds and Main Group ClusteringAmber Lim, Daniel C FredricksonInorganic Chemistry|March 14, 2019
Templating Structural Progessions in Intermetallics: How Chemical Pressure Directs Helix Formation in the Nowotny Chimney LaddersErdong Lu, Daniel C FredricksonInorganic Chemistry|September 30, 2016
On the Functionality of Complex Intermetallics: Frustration, Chemical Pressure Relief, and Potential Rattling Atoms in Y<sub>11</sub>Ni<sub>60</sub>C<sub>6</sub>Yiming Guo, Daniel C FredricksonInorganic Chemistry|June 23, 2023
Entropic Control of Bonding, Guided by Chemical Pressure: Phase Transitions and 18-<i>n</i>+<i>m</i> Isomerism of IrIn<sub>3</sub>Amber Lim, Daniel C FredricksonActa Crystallographica Section B, Structural Science, Crystal Engineering and Materials|October 5, 2016
Communication between cation environments in aluminosilicate frameworks: incommensurately modulated crystal structure of an e-plagioclaseRie T Fredrickson, Daniel C FredricksonInorganic Chemistry|February 2, 2013
Structural acid-base chemistry in the metallic state: how μ3-neutralization drives interfaces and helices in Ti21Mn25Timothy E Stacey, Daniel C FredricksonPageof 8