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February 21, 2026The Journal of Physical Chemistry C0 citationsOpen Access

Toward Chemical Accuracy for Chemi- and Physisorption with an Efficient Density Functional

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MKManish KothakondaAPA. K. PatraRZRuiqi Zhang

Key Points

  • This research aims to improve the accuracy and efficiency of density functional methods for molecular adsorption modeling.
  • Proposed a new density functional approximation
  • Optimized the semilocal component and long-range vdW correction
  • Tested on CO/Pt(111) and Ar2 binding energy curve
  • Achieved accurate representation of both chemical and physical adsorption
  • Demonstrated enhanced efficiency in modeling molecular interactions
  • Opened avenues for better material science applications

Abstract

Understanding molecular adsorption on surfaces underpins many problems in chemistry and materials science. Accurately and efficiently describing the adsorption has been a challenging task for first-principles methods as the process can involve both short-range chemical bond formations and long-range physical interactions, e.g., van der Waals (vdW) interaction. Density functional theory presents an appealing choice for modeling adsorption reactions, although calculations with many exchange-correlation density functional approximations struggle to accurately describe both chemical and physical molecular adsorptions. Here, we propose an efficient density functional approximation that is accurate for both chemical and physical adsorption by concurrently optimizing its semilocal component and the long-range vdW correction against the prototypical adsorption CO/Pt(111) and Ar2 binding energy curve. The resulting function opens the door to accurate and efficient modeling of general molecular adsorption.

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Cite This Study

Kothakonda et al. (2026) studied this question.

synapsesocial.com/papers/69994b01873532290d01f4dchttps://doi.org/10.1021/acs.jpcc.5c08744
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