financially supported by the National Natural Science Foundation of China(Nos.52002294 and 52202111);the Key Research and Development Program of Hubei Province(No.2021BAA208);the Knowledge Innovation Program of Wuhan-Shuguang Project(No.2022010801020364);City University of Hong Kong Donation Research Grant(No.DON-RMG 9229021);City University of Hong Kong Donation Grant(No.9220061);City University of Hong Kong Strategic Research Grant(SRG)(No.7005505)。
Efficient electrocatalysts are vital to large-current hydrogen production in commercial water splitting for green energy generation.Herein,a novel heterophase engineering strategy is described to produce polymorphic C...
supported by the Singapore Quantum engineering program(grant no.RF2021-QEP2-03-P10);the National Research Foundation,the Prime Minister’s Office,and the government of Singapore under its Competitive Research Programme(award no.NRF-CRP23-2019-0002);its NRF Investigatorship Programme(award no.NRF-NRFI05-2019-0003).
Halide perovskites have become a hot topic in materials research due to their potential applications in a variety of fields,from optoelectronic and thermoelectric devices to solar cells.Doping of halide perovskites ca...
supported by the National Natural Science Foundation of China(nos.21673195,21722305,21703188,21973079,and 21933012);the National Key R&D Program of China(no.2017YFA0204902);supported by the FET Open project 767187-QuIET;the EU project BAC-TO-FUEL;the UK EPSRC grants EP/N017188/1 and EP/M014452/1 in Lancaster.
The emergence of molecular spintronics offers a unique chance for the design of molecular devices with different spin-states,and the control of spin-state becomes essential for molecular spin switches.However,the intr...
supported by the National Natural Science Foundation of China(nos.21871140 and 21401104).
Room-temperature switchable materials showing multiple responses toward external stimuli are highly desired.Herein,we report bidirectional spin-state switch and fluorescence modulation of an Fe(II)complex(1)based on a...
Supported by the National Key Research and Development Program of China under Grant No 2016YFA0301501;the National Natural Science Foundation of China under Grant Nos 61727819 and 91736208
Matter-wave interferometers with spin quantum states are attractive in quantum manipulation and precision measurements. Here, five spatial interference patterns corresponding to the full spin states are observed in ea...
The nature of spin-state phase transition is investigated with [Fe(C4H4N2)(Pt(CN)4}] that is" a novel 3D Hofmann-like compound. The bistability of this system is obtained by the first-principles calculation. It ...
supported by the National Key Basic Research,and the National Natural Science Foundation of China(Grant Nos.10174085&10074066);Anhui Province NSF(Grant Nos.00046115&03046201);the Fundamental Bureau,Chinese Academy of Sciences.
It is helpful to study the photo-induced effect in the perovskite manganites not only for elucidating the mechanism of colossal magnetoresistance (CMR) effect but also for potential applications in technology. The las...
A sensitivity-enhanced IPAP NMR experiment was described in this paper, whichseparates the ~1H-^(15)N doublets into two different spectra to alleviate the problem of resonanceoverlaps and achieve the accurate measurem...