Jichen Li
University of Manchester
78 Papers
527 Citations
Jichen Li is an academic researcher from University of Manchester. The author has contributed to research in topics: Inelastic neutron scattering & Neutron scattering. The author has an hindex of 19, co-authored 65 publications. Previous affiliations of Jichen Li include Chinese Academy of Sciences & Rutherford Appleton Laboratory.
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Papers
A charge-driven molecular water pump
Xiaojing Gong,Jingyuan Li,Hangjun Lu,Hangjun Lu,Rongzheng Wan,Jichen Li,Jun Hu,Jun Hu,Haiping Fang +8 more
TL;DR: A design for a molecular water pump that uses a combination of charges positioned adjacent to a nanopore and is inspired by the structure of channels in the cellular membrane that conduct water in and out of the cell (aquaporins).
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The parametrization of a Thole-type all-atom polarizable water model from first principles and its application to the study of water clusters (n=2–21) and the phonon spectrum of ice Ih
TL;DR: In this paper, a new polarizable model for water based on Thole's method was proposed, which produces energies and nearest-neighbor (H-bonded) oxygen-oxygen distances that agree well with the ab initio results for small water clusters.
251
An inelastic incoherent neutron scattering study of ice II, IX, V, and VI—in the range from 2 to 140 meV
TL;DR: Inelastic incoherent neutron scattering (IINS) cross sections have been measured for the recovered high-pressure phases of ice, ices II, V, VI, and IX (H2O) and ices I and II (D2O), in the energy range from 2 to 150 meV at 20 K using the TFXA (time focused crystal analyzer) neutron spectrometer on the ISIS pulsed neutron source at the Rutherford‐Appleton Laboratory as discussed by the authors.
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Inelastic incoherent neutron scattering measurements of intact cells and tissues and detection of interfacial water.
Robert C. Ford,Stuart V. Ruffle,Anibal J. Ramirez-Cuesta,Ilias Michalarias,I.A. Beta,and Aline F. Miller,Jichen Li +6 more
TL;DR: The first inelastic incoherent neutron scattering spectroscopy studies of living cells and tissues find that the interfacial water signal is similar to that observed for water interacting with purified biomolecules and other solutes, i.e., it is strongly perturbed in the librational and translational intermolecular optical regions of the spectrum at 20-150 meV.
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Investigation of the hydrogen bonding in ice Ih by first-principles density function methods.
TL;DR: The results of this work suggest that the observed optic peaks may be attributed to the coupling between the two bands of H-O stretching modes in H(2)O, and offer a new approach towards probing the interaction between water and biomaterials for which H-bond is essential.
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