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Nickel-Electrocatalytic Decarboxylative Arylation to Access Quaternary Centers

There is a pressing need, particularly in the field of drug discovery, for general methods that will enable direct coupling of tertiary alkyl fragments to (hetero)aryl halides. Herein a uniquely powerful and simple set of conditions for achieving this transformation with unparalleled generality and chemoselectivity is disclosed. This new protocol is placed in context with other recently report

Simulating Magnetized Plasma using an Accelerated Finite Element-Boundary Integral Code

This paper describes an accelerated finite element-boundary integral code with support for complex media. The code is implemented in Python using several open source packages, and uses Numba just-in-time compilation for improved performance. To accelerate the boundary integral part of the code, a multilevel implementation of the adaptive cross approximation is used. As a numerical example, scatter

Sverre Spoelstra

Professor Kontaktinformation E-post: sverre [dot] spoelstra [at] fek [dot] lu [dot] seOrganisation Organisation Rumsnummer: Alfa 1, vån 3, rum 3030 Hämtställe: 10 WebbplatsSverre Spoelstras profil i Lunds universitets forskningsportal Publikationer Visar av publikationer. Sorterade efter år och sen titel. Filtrera efter typ AllaArtikel i tidskriftBokBokrecensionDel av eller Kapitel i bokKonferensb

https://www.ehl.lu.se/sverre-spoelstra - 2026-05-04

Mia Liinason

Ämnesansvarig | Professor Kontaktinformation E-post: mia [dot] liinason [at] genus [dot] lu [dot] se Telefon: +46 46 222 97 74Organisation Genusvetenskap Hämtställe: 31 WebbplatsMia Liinasons profil i Lunds universitets forskningsportalAndra roller Medlem i Strategiskt forskningsområde eSSENCE: The e-Science Collaboration Biträdande koordinator LU profilområde: Mänskliga rättigheterBakgrund:Jag di

https://www.genus.lu.se/mia-liinason - 2026-05-04

Surface structure and catalytic activity of Pd and Fe oxide surfaces and thin films

The present work is devoted to atomic scale structural studies of the surfaces of model heterogeneous catalysts relevant to oxidation reactions. A novel approach using high-energy surface X-ray diffraction combined with mass-spectrometry measurements is employed to perform in situ structural characterization of Pd(100) and Pd(553) single crystal surfaces acting as catalysts in the process of CO ox