Dr. Piero Macchi
Lecturer
Department of Chemistry and Biochemistry
Universität Bern
Switzerland
Biography
Dr. Piero Macchi in 1994: MSc in Chemistry at the University of Milano, Italy; 1999: PhD in Chemical Science, University of Milan, Italy; 1999-2000: Adjunct professor at the Department of Chemistry University of Aarhus, Denmark; 2002-2008: Researcher of Department of Structural Chemistry, University of Milan Italy; 2009-: Lecturer and group leader of Chemical Crystallography, Department of Chemistry and Biochemistry, University of Berne, Switzerland
Research Interest
1. Electron density and chemical bonding 2. Correlation between accurate electron density and material properties 3. Optical materials 4. High pressure solid state chemistry
Publications
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Rezende dos Santos, Leonardo Humberto ; Lanza, Arianna ; Barton, Alyssa M .; Brambleby, Jamie ; Macchi, Piero; et al (2016). Experimental and Theoretical Electron Density Analysis of Copper Pyrazine Nitrate Quasi-Low-Dimensional Quantum Magnets. Journal of the American Chemical Society, 138 (7), pp. 2280-2291. American Chemical Society 10.1021 / jacs.5b12817
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Casati, Nicola ; Genoni, Alessandro ; Meyer, Benjamin ; Krawczuk, Anna ; Macchi, Piero (2017). Exploring charge density analysis in crystals at high pressure: data collection, data analysis and advanced modeling. Acta crystallographica Section B, 73 (4), pp. 584-597. International Union of Crystallography 10.1107 / S2052520617008356
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Macchi, Piero (2017). The future of topological analysis in experimental charge-density research. Acta crystallographica Section B, 73 (3), pp. 330-336. International Union of Crystallography 10.1107 / S2052520617006989
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Genoni, Alessandro ; Rezende dos Santos, Leonardo Humberto ; Meyer, Benjamin ; Macchi, Piero (2017). Can X-ray constrained Hartree-Fock wavefunctions retrieve electron correlation? IUCrJ, 4 (2), pp. 136-146. International Union of Crystallography 10.1107 / S2052252516019217
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Brambleby, Jamie ; Manson, Jamie L .; Goddard, Paul A .; Stone, Matthew B .; Macchi, Piero ; et al (2017). Combination microscopic and macroscopic probes to untangle the single-ion anisotropy and exchange energies in to S = 1 quantum antiferromagnet. Physical Review B, 95 (13) American Institute of Physics 10.1103 / PhysRevB.95.134435