Vladimir A. Lobastov
California Institute of Technology
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Featured researches published by Vladimir A. Lobastov.
Proceedings of the National Academy of Sciences of the United States of America | 2006
Michael S. Grinolds; Vladimir A. Lobastov; Jonas Weissenrieder; Ahmed H. Zewail
Reported here is direct imaging (and diffraction) by using 4D ultrafast electron microscopy (UEM) with combined spatial and temporal resolutions. In the first phase of UEM, it was possible to obtain snapshot images by using timed, single-electron packets; each packet is free of space–charge effects. Here, we demonstrate the ability to obtain sequences of snapshots (“movies”) with atomic-scale spatial resolution and ultrashort temporal resolution. Specifically, it is shown that ultrafast metal–insulator phase transitions can be studied with these achieved spatial and temporal resolutions. The diffraction (atomic scale) and images (nanometer scale) we obtained manifest the structural phase transition with its characteristic hysteresis, and the time scale involved (100 fs) is now studied by directly monitoring coordinates of the atoms themselves.
Proceedings of the National Academy of Sciences of the United States of America | 2001
Chong Yu Ruan; Vladimir A. Lobastov; Ramesh Srinivasan; Boyd M. Goodson; Hyotcherl Ihee; Ahmed H. Zewail
Studies of molecular structures at or near their equilibrium configurations have long provided information on their geometry in terms of bond distances and angles. Far-from-equilibrium structures are relatively unknown—especially for complex systems—and generally, neither their dynamics nor their average geometries can be extrapolated from equilibrium values. For such nonequilibrium structures, vibrational amplitudes and bond distances play a central role in phenomena such as energy redistribution and chemical reactivity. Ultrafast electron diffraction, which was developed to study transient molecular structures, provides a direct method for probing the nature of complex molecules far from equilibrium. Here we present our ultrafast electron diffraction observations of transient structures for two cyclic hydrocarbons. At high internal energies of ≈4 eV, these molecules display markedly different behavior. For 1,3,5-cycloheptatriene, excitation results in the formation of hot ground-state structures with bond distances similar to those of the initial structure, but with nearly three times the average vibrational amplitude. Energy is redistributed within 5 ps, but with a negative temperature characterizing the nonequilibrium population. In contrast, the ring-opening reaction of 1,3-cyclohexadiene is shown to result in hot structures with a C—C bond distance of over 1.7 Å, which is 0.2 Å away from any expected equilibrium value. Even up to 400 ps, energy remains trapped in large-amplitude motions comprised of torsion and asymmetric stretching. These studies promise a new direction for studying structural dynamics in nonequilibrium complex systems.
Chemical Physics Letters | 2003
Boyd M. Goodson; Chong Yu Ruan; Vladimir A. Lobastov; Ramesh Srinivasan; Ahmed H. Zewail
Complex reactions involve the transformation of molecular structures with many atoms. Ultrafast electron diffraction is developed here to directly observe such transient structures. The level of complexity is demonstrated for both the thermal and light-mediated reactions involving the electrocyclic Cope bond rearrangement and ring opening of 1,3,5-cyclooctatriene. For the former, we determine the ground-state structures, and for the later we observe the transient structures in their non-equilibrium state. The selective structural determination reported here using pulse sequences would not have been possible without the high sensitivity and spatio-temporal resolution of ultrafast electron diffraction.
Science | 2001
Hyotcherl Ihee; Vladimir A. Lobastov; Udo M. Gomez; Boyd M. Goodson; Ramesh Srinivasan; Chong Yu Ruan; Ahmed H. Zewail
Proceedings of the National Academy of Sciences of the United States of America | 2005
Vladimir A. Lobastov; Ramesh Srinivasan; Ahmed H. Zewail
Science | 2004
Chong Yu Ruan; Vladimir A. Lobastov; Franco Vigliotti; Songye Chen; Ahmed H. Zewail
Helvetica Chimica Acta | 2003
Ramesh Srinivasan; Vladimir A. Lobastov; Chong Yu Ruan; Ahmed H. Zewail
Proceedings of the National Academy of Sciences of the United States of America | 2004
Chong Yu Ruan; Franco Vigliotti; Vladimir A. Lobastov; Songye Chen; Ahmed H. Zewail
Archive | 2005
Ahmed H. Zewail; Vladimir A. Lobastov
Nano Letters | 2007
Vladimir A. Lobastov; Jonas Weissenrieder; Jau Tang; Ahmed H. Zewail