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Molecular Dynamics Inc visual molecular dynamics program
Visual Molecular Dynamics Program, supplied by Molecular Dynamics Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/visual+molecular+dynamics+program/dynamics+molecular+visual/pmc13022435-375-1-2
Average 86 stars, based on 1 article reviews
visual molecular dynamics program - by Bioz Stars, 2026-09
86/100 stars

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Related Articles

Functional Assay:

Article Title: Polarity Emergence via Skeletal Topology Rearrangements in Nonbenzenoid Molecular Carbons.
Article Snippet: Rational design and integration of benzenoid and nonbenzenoid carbon frameworks enable the construction of lowdimensional carbon nanostructures with unconventional topologies and tailored electronic properties.. Here, we demonstrate the onsurface synthesis of nanosized pentaheptite (NPH), a nonbenzenoid molecular carbon consisting of equal numbers of penta-heptagonal units, arising from the strategic precursor design and the inherent structural versatility of carbon skeletons.. The as-synthesized NPH adopts a C2h symmetric configuration with largely compensated intramolecular charge polarization, while benzenoid units can be incorporated into the intrinsic penta-heptagonal framework via two possible pathways: an intramolecular Stone−Wales-like skeletal rearrangement and a process involving azulene-naphthalene rearrangements, forming a transformed pentaheptite (T-NPH), as supported by density functional theory simulations.

Dispersion:

Article Title: Polarity Emergence via Skeletal Topology Rearrangements in Nonbenzenoid Molecular Carbons.
Article Snippet: Rational design and integration of benzenoid and nonbenzenoid carbon frameworks enable the construction of lowdimensional carbon nanostructures with unconventional topologies and tailored electronic properties.. Here, we demonstrate the onsurface synthesis of nanosized pentaheptite (NPH), a nonbenzenoid molecular carbon consisting of equal numbers of penta-heptagonal units, arising from the strategic precursor design and the inherent structural versatility of carbon skeletons.. The as-synthesized NPH adopts a C2h symmetric configuration with largely compensated intramolecular charge polarization, while benzenoid units can be incorporated into the intrinsic penta-heptagonal framework via two possible pathways: an intramolecular Stone−Wales-like skeletal rearrangement and a process involving azulene-naphthalene rearrangements, forming a transformed pentaheptite (T-NPH), as supported by density functional theory simulations.

Software:

Article Title: Polarity Emergence via Skeletal Topology Rearrangements in Nonbenzenoid Molecular Carbons.
Article Snippet: Rational design and integration of benzenoid and nonbenzenoid carbon frameworks enable the construction of lowdimensional carbon nanostructures with unconventional topologies and tailored electronic properties.. Here, we demonstrate the onsurface synthesis of nanosized pentaheptite (NPH), a nonbenzenoid molecular carbon consisting of equal numbers of penta-heptagonal units, arising from the strategic precursor design and the inherent structural versatility of carbon skeletons.. The as-synthesized NPH adopts a C2h symmetric configuration with largely compensated intramolecular charge polarization, while benzenoid units can be incorporated into the intrinsic penta-heptagonal framework via two possible pathways: an intramolecular Stone−Wales-like skeletal rearrangement and a process involving azulene-naphthalene rearrangements, forming a transformed pentaheptite (T-NPH), as supported by density functional theory simulations.

Article Title: Thermal-driven cellulose-based hydrogels with reversible phase transition for smart optical regulation.
Article Snippet: The hydroxypropyl cellulose hydrogel switches between transparent and opaque states, reducing solar heat and indoor temperatures via machine learning-optimized phase transitions.. The hydrogel combines mechanical strength with responsiveness to temperature, humidity, and stress, enabling dynamic applications like passive cooling, interactive writing, and adaptive thermal regulation for smart devices.. A R T I C L E I N F O

other:

Article Title: Nanopore-Based Protein Deceleration and Sensing Using Graphene/Si 3 N 4 Dual Membrane Cavity.
Article Snippet: Visual Molecular Dynamics (VMD) and Tcl scripts ere used to view and analyze all simulation trajectories.



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