Results 151 to 160 of about 838,557 (301)
Polymorphic Superparaelectric Engineering Boosting Energy Storage Capacity in BaTiO3‐Based Ceramics
Herein, Ca2+ incorporation promotes the coexistence of CaTiO3‐/BaTiO3‐derived paraferroelectric states, stabilizing cubic‐orthorhombic‐tetragonal polymorphic superparaelectric phases. This minimizes polarization energy barriers, facilitating full polarization saturation without compromising efficiency.
Pan Liu +9 more
wiley +1 more source
A randomized Phase 1b trial evaluating the pharmacodynamics of ilofotase alfa in adults with hypophosphatasia. [PDF]
Seefried L +7 more
europepmc +1 more source
Syntese av
Stereokjemisk kontroll er svært viktig i organisk kjemi. Med spiraner som utgangspunkt er det forsøkt å syntetisere rigide ligander til asymmetrisk hydrogenering. Bakgrunnen for oppgaven er beskrevet i kapittel 1. I kapittel 2 er det beskrevet dannelse av karbaldehyder med utgansgspunkt i β-ketoesteren 34.
openaire +1 more source
A phosphorescent dye was designed to fit in a hand‐to‐glove fashion into the 1D‐pore channels of MIL‐68(In). We synthesized MIL‐68(In) as powder and thin films, loaded the dye into the pores with controlled packing, and found that the phosphorescence and quantum yield are enhanced.
Bahram Hosseini Monjezi +12 more
wiley +1 more source
Atezolizumab and motixafortide, cobimetinib or simlukafusp alfa in pretreated advanced pancreatic cancer: phase I/IIb MORPHEUS-PDAC umbrella study. [PDF]
Manji GA +15 more
europepmc +1 more source
A quasi‐1D pseudo‐layered NbS3 cathode for magnesium‐ion batteries can be created through electrochemically induced interlayer expansion. The widened ion‐transport channels enable fast magnesium ion diffusion and unlock coupled cationic‐anionic redox chemistry.
Pengcheng Jing +6 more
wiley +1 more source
Discovery and cryoEM structure of FPM13, a periplasmic metalloprotein unique to Francisella. [PDF]
Clemens DL +4 more
europepmc +1 more source
This study reports the first application of a W‐oxo bis(dithiolene) complex, (Et4N)2[WO(S2C2(C6H5)2)2], as a novel anode material for lithium‐ion batteries. This complex stores Li+ ions via multivalent W‐centered redox processes involving its oxo (WO) and dithiolene (S) sites.
Honggyu Seong +5 more
wiley +1 more source

