Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Molecular spin switches are attractive candidates for controlling the spin polarization developing at the interface between molecules and magnetic metal surfaces, which is relevant for molecular spintronics devices. However, so far, intrinsic spin switches such as spin-crossover complexes have suffered from fragmentation or loss of functionality following adsorption on metal surfaces, with rare exceptions. Robust metal-organic platforms, on the other hand, rely on external axial ligands to induce spin switching. Here we integrate a spin switching functionality into robust complexes, relying on the mechanical movement of an axial ligand strapped to the porphyrin ring. Reversible interlocked switching of spin and coordination, induced by electron injection, is demonstrated on Ag(111) for this class of compounds. The stability of the two spin and coordination states of the molecules exceeds days at 4 K. The potential applications of this switching concept go beyond the spin functionality, and may turn out to be useful for controlling the catalytic activity of surfaces.

Download full-text PDF

Source
http://dx.doi.org/10.1038/s41565-019-0594-8DOI Listing

Publication Analysis

Top Keywords

metal surfaces
12
spin
8
spin switches
8
spin switching
8
spin coordination
8
switching
5
reversible coordination-induced
4
coordination-induced spin-state
4
spin-state switching
4
switching complexes
4

Similar Publications

This study introduces a back filter installed at the end of the exhaust pipe of city buses. The impact of the metal type used in its construction on the absorption of suspended particles and the reduction of sulfides in diesel engine exhaust gases is investigated. The back filter is constructed from three metals: copper, zinc, and nickel.

View Article and Find Full Text PDF

The rapid development of industry and agriculture has led to a significant increase in the toxicity and pollution of cadmium (Cd) and lead (Pb) in soil. Consequently, soil remediation employing biochar or modified biochar has emerged as a cost-effective and environmentally sustainable approach to address the issue of heavy metal (HM) ion pollution. PEI-functionalization biochar (PBC) derived from corn straw (PBCC), wood straw (PBCW), and rice straw (PBCR) was synthesized to immobilize Cd and Pb in contaminated acidic yellow soil.

View Article and Find Full Text PDF

A key challenge in capturing CO from postcombustion gases is humidity due to competitive adsorption between CO and HO. Multivariate (MTV) metal-organic frameworks (MOFs) have been considered a promising option to address this problem, e.g.

View Article and Find Full Text PDF

Statement Of Problem: Despite high survival rates of implant-supported single crowns, retention loss remains common and decementation of crowns can compromise long-term stability, patient satisfaction, and treatment costs. Limited long-term evidence on cement type, abutment design, and materials requires further research to optimize clinical outcomes.

Purpose: The aim of this retrospective clinical study was to analyze the survival and decementation rates of zirconia and metal-ceramic implant-supported crowns in combination with different abutments (prefabricated or custom and unabraded or airborne-particle abraded).

View Article and Find Full Text PDF

An 86-year-old woman was under follow-up at the Breast Surgery Department of our hospital for postoperative treatment for right breast cancer. During this period, a 22-mm cystic mass was identified in the pancreatic head. Its size gradually increased, and she was eventually referred to our department.

View Article and Find Full Text PDF