Significance Of Nuclear Quantum Effects In Hydrogen Bonded Molecular Chains

被引:13
作者
Cahlik, Ales [1 ,2 ,3 ]
Hellerstedt, Jack [1 ]
Mendieta-Moreno, Jesus, I [1 ]
Svec, Martin [1 ,3 ]
Santhini, Vijai M. [1 ,3 ]
Pascal, Simon [4 ]
Soler-Polo, Diego [5 ]
Erlingsson, Sigurdur, I [6 ]
Vyborny, Karel [1 ]
Mutombo, Pingo [1 ,7 ]
Marsalek, Ondrej [8 ]
Siri, Olivier [4 ]
Jelinek, Pavel [1 ,3 ]
机构
[1] Czech Acad Sci, Inst Phys, CZ-16200 Prague 6, Czech Republic
[2] Czech Tech Univ, Fac Nucl Sci & Phys Engn, CZ-11519 Prague 1, Czech Republic
[3] Palacky Univ, Reg Ctr Adv Technol & Mat, CZ-78371 Olomouc, Czech Republic
[4] Aix Marseille Univ, CNRS, CINaM, UMR 7325, Campus Luminy, F-13288 Marseille 09, France
[5] Univ Autonoma Madrid, ES-28049 Madrid, Spain
[6] Reykjavik Univ, Sch Sci & Engn, IS-101 Reykjavik, Iceland
[7] Univ Kinshasa, Dept Petrochem & Refining, Kinshasa, DEM REP CONGO
[8] Charles Univ Prague, Fac Math & Phys, CZ-12116 Prague 2, Czech Republic
关键词
nuclear quantum effects; scanning probe microscopy; proton tunneling; hydrogen bonds; path integral molecular dynamics; in-gap electronic states; pi-electron delocalization; SINGLE MOLECULES; FORCE; TAUTOMERIZATION; SUPERCONDUCTIVITY; DELOCALIZATION; RESOLUTION; HYDRIDE; COMPLEX; STATE; WATER;
D O I
10.1021/acsnano.1c02572
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In hydrogen-bonded systems, nuclear quantum effects such as zero-point motion and tunneling can significantly affect their material properties through underlying physical and chemical processes. Presently, direct observation of the influence of nuclear quantum effects on the strength of hydrogen bonds with resulting structural and electronic implications remains elusive, leaving opportunities for deeper understanding to harness their fascinating properties. We studied hydrogen-bonded one-dimensional quinonediimine molecular networks which may adopt two isomeric electronic configurations via proton transfer. Herein, we demonstrate that concerted proton transfer promotes a delocalization of pi-electrons along the molecular chain, which enhances the cohesive energy between molecular units, increasing the mechanical stability of the chain and giving rise to distinctive electronic in-gap states localized at the ends. These findings demonstrate the identification of a class of isomeric hydrogen-bonded molecular systems where nuclear quantum effects play a dominant role in establishing their chemical and physical properties. This identification is a step toward the control of mechanical and electronic properties of low-dimensional molecular materials via concerted proton tunneling.
引用
收藏
页码:10357 / 10365
页数:9
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