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The Journal of Chemical Physics Profile
The Journal of Chemical Physics

@JChemPhys

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The MOST CITED journal in chemical physics publishing cutting edge research in all areas of modern #chemicalphysics and #physicalchemistry at @AIP_Publishing

Joined March 2022
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@JChemPhys
The Journal of Chemical Physics
1 year
Congratulations to the 2023 Emerging Investigator Best Paper Winners πŸ†@MarissaWeichman (@TheWeichmanLab @PrincetonChem) and @barak_hirshberg (@chemistrytau @TelAvivUni)!. Read the winning papers πŸ‘‡ .
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@JChemPhys
The Journal of Chemical Physics
2 months
We’re continuing the conversation β€” in a new place. AIP Publishing is now posting on Bluesky: @ Follow us there for the latest researchπŸ§ͺ.
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@JChemPhys
The Journal of Chemical Physics
2 months
Reminder ❗. This Special Topic is still open for submissions. Submit by September 30, 2025!. Learn more πŸ‘‡ .
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@JChemPhys
The Journal of Chemical Physics
3 months
We’re continuing the conversation β€” in a new place. AIP Publishing is now posting on Bluesky: @ Follow us there for the latest researchπŸ§ͺ.
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@JChemPhys
The Journal of Chemical Physics
3 months
The model of sub-bandgap light induced all-optical luminescence switching of lead-halide perovskite microcrystals. Learn more πŸ‘‡.
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pubs.aip.org
The phenomenon of sub-bandgap light induced luminescence switching for lead tribromide perovskite microcrystals with excess lead was recently discovered by Wan
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@JChemPhys
The Journal of Chemical Physics
3 months
On the determinants of electron transfer reorganization energy in a cytochrome P450: cytochrome b5 complex. A combined quantum mechanics and molecular dynamics simulation study. Learn more πŸ‘‡.
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pubs.aip.org
The electron transfer steps in the catalytic cycle of cytochrome P450 (CYP) enzymes, ubiquitous proteins with key roles in processes such as drug metabolism and
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@JChemPhys
The Journal of Chemical Physics
3 months
Ultrafast Dynamics of Transient Exciton State in Methylammonium Lead Iodide Perovskite at Room Temperature. Learn more πŸ‘‡.
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pubs.aip.org
Metal-halide perovskites are promising materials for photovoltaics and other optoelectronic applications. Understanding their photophysical properties, especial
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@JChemPhys
The Journal of Chemical Physics
3 months
Two-dimensional (2D) spectroscopy has applications across all the sciences β€” from a better understanding of photosynthesis in plants to analyzing how electrons move in superconductors. #scilight. Learn more πŸ‘‡ .
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Spectroscopy sensitivity is optimized through experimental setup.
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@JChemPhys
The Journal of Chemical Physics
3 months
We measured how far excitons can travel in the Photosystem II supercomplex of plants by non-linear spectroscopy and kinetic Monte Carlo simulation. The motion is sub-diffusive over 9-10 nm. @BerkeleyLab . Learn more πŸ‘‡ .
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Photosynthesis converts solar energy into chemical energy through coordinated energy transfer between light-harvesting complexes and reaction centers (RCs). Und
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@JChemPhys
The Journal of Chemical Physics
4 months
Recent developments in experimental, numerical, and theoretical approaches provide increasingly detailed information on the origins of friction and adhesion with unprecedented temporal and spatial resolution. Learn more πŸ‘‡.
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The details of the contact between two surfaces determine their interaction strength, adhesion, and the resistance against relative motion, the friction. Fricti
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@JChemPhys
The Journal of Chemical Physics
4 months
Recent advances in materials and chemistry have improved control over light-matter interaction at the nano and molecular level, and newly-developed spectroscopic tools reveal interaction mechanisms with unprecedentedly high temporal and spatial precision. Learn more πŸ‘‡.
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@JChemPhys
The Journal of Chemical Physics
4 months
πŸ“’ Call For Papers. Recent advances in linear, non-linear and near-field THz spectroscopy across disciplines, and rapid imaging now enable novel applications. Submit by September 30, 2025!. Learn more πŸ‘‡ .
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@JChemPhys
The Journal of Chemical Physics
4 months
Reminder ❗. This Special Topic is still open for submissions. Submit by August 31, 2025!. Learn more πŸ‘‡.
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@JChemPhys
The Journal of Chemical Physics
4 months
Screening of multiple dyes and 115 quenchers achieved more than 200-fold NMR signal enhancement using photo-CIDNP, revealing the importance of molecular diffusion. @Utokyo_News_en
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@JChemPhys
The Journal of Chemical Physics
4 months
Reminder ❗. This Special Topic is still open for submissions. Please submit by July 31, 2025!. Learn more πŸ‘‡.
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@JChemPhys
The Journal of Chemical Physics
4 months
Capturing and sequestering carbon dioxide (CO2), a harmful greenhouse gas, is a costly and inefficient process. #scilight . Learn more πŸ‘‡ .
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Tailored thermal properties of a microporous material can aid in trapping CO2
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@JChemPhys
The Journal of Chemical Physics
4 months
A multiscale model is developed to incorporate methylation into our nucleosome resolution model to investigate chromatin structure and gene regulation. @Schlicklab
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Histone modifications play a crucial role in regulating chromatin architecture and gene expression. Here we develop a multiscale model for incorporating methyla
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@JChemPhys
The Journal of Chemical Physics
4 months
Though widespread in use within the physical sciences, classical molecular dynamics simulations β€” which predict the motions of molecules in a system β€” are not able to capture the nuclear quantum effects inherent to the heat capacity of water. #scilight. Learn more πŸ‘‡.
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@JChemPhys
The Journal of Chemical Physics
4 months
Recent advances in materials and chemistry have improved control over light-matter interaction at the nano and molecular level, and newly developed spectroscopic tools reveal interaction mechanisms with unprecedentedly high temporal and spatial precision. Learn more πŸ‘‡.
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@JChemPhys
The Journal of Chemical Physics
4 months
Positively charged protein residues, called histones, bind like spools around DNA into tightly packed fibers known as chromatin. #scilight . Learn more πŸ‘‡ .
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@JChemPhys
The Journal of Chemical Physics
5 months
This Special Topic focuses on the advances and remaining challenges in developing in situ and operando experimental approaches that can provide fundamental insights into and accelerate the development of novel and improved functional materials. Learn more πŸ‘‡.
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