Accurate Quantum-Mechanically Derived Force-Fields through a Fragment-Based Approach: Balancing Specificity and Transferability in the Prediction of Self-Assembly in Soft Matter

Research article (Journal of Chemical Theory and Computation, 2022) · cited 12× · AI/ML
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Accurate Quantum-Mechanically Derived Force-Fields through a Fragment-Based Approach: Balancing Specificity and Transferability in the Prediction of Self-Assembly in Soft Matter

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Accurate Quantum-Mechanically Derived Force-Fields through a Fragment-Based Approach: Balancing Specificity and Transferability in the Prediction of Self-Assembly in Soft Matter is a scholarly article[1].

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APA 4ort.xyz Knowledge Graph. (2026). Accurate Quantum-Mechanically Derived Force-Fields through a Fragment-Based Approach: Balancing Specificity and Transferability in the Prediction of Self-Assembly in Soft Matter. Retrieved May 24, 2026, from https://4ort.xyz/entity/accurate-quantum-mechanically-derived-force-fields-through-a-fragment-based-approach-balancing-specificity-and-transfera
MLA “Accurate Quantum-Mechanically Derived Force-Fields through a Fragment-Based Approach: Balancing Specificity and Transferability in the Prediction of Self-Assembly in Soft Matter.” 4ort.xyz Knowledge Graph, 4ort.xyz, 24 May. 2026, https://4ort.xyz/entity/accurate-quantum-mechanically-derived-force-fields-through-a-fragment-based-approach-balancing-specificity-and-transfera.
BibTeX @misc{4ortxyz_accurate-quantum-mechanically-derived-force-fields-through-a-fragment-based-approach-balancing-specificity-and-transfera_2026, author = {{4ort.xyz Knowledge Graph}}, title = {{Accurate Quantum-Mechanically Derived Force-Fields through a Fragment-Based Approach: Balancing Specificity and Transferability in the Prediction of Self-Assembly in Soft Matter}}, year = {2026}, url = {https://4ort.xyz/entity/accurate-quantum-mechanically-derived-force-fields-through-a-fragment-based-approach-balancing-specificity-and-transfera}, note = {Accessed: 2026-05-24}}
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