In conjugated organic molecules, excitation gaps typically decrease reciprocally with increasing the number of repeat units, . This usually holds for individual molecules as well as for the corresponding bulk materials. Here, we show using density-functional theory calculations that a qualitatively different evolution is found for layers built from molecules consisting of polar repeat units. Whereas a 1/-dependence is still observed in the case of isolated polar molecules, the global gap decreases essentially linearly with in the corresponding 2D-periodic systems and vanishes beyond a certain molecular length, with the frontier states being localized at opposite ends of the layer. The latter is accompanied by a saturation of the dipole moment per molecule, an effect not observed in the isolated polar molecules. Interestingly, in both cases the limit of the gap for long (but finite) molecules differs qualitatively from that of infinite length obtained in 1D-periodic and 3D-periodic calculations, the latter serving as models for polymers and the bulk. We rationalize these dimensionality effects as a consequence of the potential gradient within the finite-length layers. They arise from the collective action of intra-molecular dipoles in the 2D periodic layers and can be traced back to surface effects.
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http://dx.doi.org/10.1016/j.orgel.2012.09.003 | DOI Listing |
Eur J Intern Med
December 2024
Department of Critical Care Medicine, West China Hospital, Sichuan University, Chengdu, PR China. Electronic address:
Objectives: The purpose of this study was to determine whether our new thinking guidance named OPACCUS (oxygen metabolism, perfusion, arterial tension, cardiac output, systemic congestion, unregulated host response and search for inciting illness event) with 7 questions you need to ask before shock therapy and evidences provided by critical ultrasound considering hemodynamics, the unregulated host response and inciting illness event would improve mortality in shock patients.
Design: A multicenter, prospective, observational cohort study.
Setting: Intensive care units of 20 hospitals in Southwest China.
Int J Biol Macromol
December 2024
College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China; Hunan Provincial Key Laboratory of the Research and Development of Novel Pharmaceutical Preparations, The "Double-First Class" Application Characteristic Discipline of Hunan Province (Pharmaceutical Science), Changsha Medical University, Changsha 410219, China. Electronic address:
CVP-2 is a homogeneous polysaccharide extracted from the whole plant of Christia vespertilionis, with an average molecular weight of approximately 92,920 Da. Its main chain consists of repeating units of [3,5)-α-L-Araf-(1] → [5)-α-L-Araf-(1]→, with branches at the C-3 position: branch 1 is α-L-Araf-(1→, and branch 2 is α-L-Araf-(1 → 4)-. Additionally, the structure includes β-D-Gclp-(1 → [4)-β-D-Glap-(1] → 5)-α-L-Araf-(1→.
View Article and Find Full Text PDFJ Chem Theory Comput
December 2024
Changping Laboratory, No. 28 Life Science Park Rd., Beijing 102206, China.
Accurate modeling of host-guest systems is challenging in modern computational chemistry. It requires intermolecular interaction patterns to be correctly described and, more importantly, the dynamic behaviors of macrocyclic hosts to be accurately modeled. Pillar[]arenes as a crucial family of macrocycles play a critical role in host-guest chemistry and biomedical applications.
View Article and Find Full Text PDFMass Spectrom (Tokyo)
December 2024
Bruker Japan K.K., 3-9 Moriya-cho, Kanagawa-ku, Yokohama, Kanagawa 221-0022, Japan.
In the interpretation step of mass spectra obtained from synthetic polymers, isotope peaks are typically intense and cannot be ignored, especially in the higher mass range. To reduce the complexity of the spectra, deisotope processing is used. In this study, a deisotope processing method that is effective even for mixtures of different types of polymers is investigated.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
December 2024
Kyoto University - Yoshida Campus: Kyoto Daigaku, Department of Materials Science and Engineering, JAPAN.
A tubular strand of phosphorus composed of vectorially aligned pentagons has been theoretically predicted as a new allotrope of phosphorus with a polar structure, expecting potential applications. However, it has not been successfully synthesized yet due to the difficulty of creating isolated strands to avoid interchain bonding. Here, such an allotrope named "orange phosphorus" was successfully produced using a photo-assisted synthesis from an amorphous film of solution-processable Na2P16 precursors.
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