most citedUnexpectedly super strong paramagnetism of aromatic peptides due to cations of divalent metals

2 citations · 4 across the 4 of their papers we have counts for

collaborators

5 papers

cond-mat.soft20211 cited

Super strong paramagnetism induced by polar functional groups and water

Jihong Wang, Yizhou Yang, Jie Jiang +6

We experimentally demonstrate that some commonly used materials such as cellulose acetate and chitin which are traditionally considered to be non-magnetic show super strong paramag…

physics.bio-ph20201 cited

Super strong paramagnetism of aromatic peptides adsorbed with monovalent cations

Shiqi Sheng, Haijun Yang, Liuhua Mu +7

We experimentally demonstrated that the AYFFF self-assemblies adsorbed with various monovalent cations (Na+, K+, and Li+) show unexpectedly super strong paramagnetism. The key to t…

cond-mat.soft20202 cited

Unexpectedly super strong paramagnetism of aromatic peptides due to cations of divalent metals

Haijun Yang, Liuhua Mu, Lei Zhang +10

The magnetism of most biological systems has not been characterized, which directly impedes our understanding of many magnetic field-related phenomena, including magnetoreception a…

physics.bio-ph2020

Unexpectedly super strong paramagnetism of aromatic peptides due to cations

Haijun Yang, Liuhua Mu, Lei Zhang +8

We found that the AYFFF self-assemblies in the chloride solution of some divalent cations ( and ) display super strong paramagnetism, which may approach…

physics.bio-ph2020

Unexpectedly strong diamagnetism and superparamagnetism of aromatic peptides due to self-assembling and cations

Haijun Yang, Liuhua Mu, Yongshun Song +5

There is a considerable amount of work that shows the biomagnetism of organic components without ferromagnetic components at the molecular level, but it is of great challenge to co…