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期刊名:Nature materials

缩写:NAT MATER

ISSN:1476-1122

e-ISSN:1476-4660

IF/分区:38.5/Q1

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共收录本刊相关文章索引4848
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
N W Hendrickx,L Massai,M Mergenthaler et al. N W Hendrickx et al.
Spin qubits defined by valence band hole states are attractive for quantum information processing due to their inherent coupling to electric fields, enabling fast and scalable qubit control. Heavy holes in germanium are particularly promisi...
Somnath Biswas,Ruyan Zhao,Fatimah Alowa et al. Somnath Biswas et al.
The efficiency of two-dimensional Dion-Jacobson-type materials relies on the complex interplay between electronic and lattice dynamics; however, questions remain about the functional role of exciton-phonon interactions. Here we establish th...
Kit McColl,Samuel W Coles,Pezhman Zarabadi-Poor et al. Kit McColl et al.
Lithium-rich oxide cathodes lose energy density during cycling due to atomic disordering and nanoscale structural rearrangements, which are both challenging to characterize. Here we resolve the kinetics and thermodynamics of these processes...
Laisi Chen,Amy X Wu,Naol Tulu et al. Laisi Chen et al.
Confining materials to two-dimensional forms changes the behaviour of the electrons and enables the creation of new devices. However, most materials are challenging to produce as uniform, thin crystals. Here we present a synthesis approach ...
Bowen Li,Idris O Raji,Akiva G R Gordon et al. Bowen Li et al.
To unlock the full promise of messenger (mRNA) therapies, expanding the toolkit of lipid nanoparticles is paramount. However, a pivotal component of lipid nanoparticle development that remains a bottleneck is identifying new ionizable lipid...
Arthur Chaudron,Zixin Li,Aurore Finco et al. Arthur Chaudron et al.
Topologically protected spin whirls in ferromagnets are foreseen as the cart-horse of solitonic information technologies. Nevertheless, the future of skyrmionics may rely on antiferromagnets due to their immunity to dipolar fields, straight...