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Daniel Maspoch

Researcher at Spanish National Research Council

Publications -  208
Citations -  12413

Daniel Maspoch is an academic researcher from Spanish National Research Council. The author has contributed to research in topics: Chemistry & Metal-organic framework. The author has an hindex of 47, co-authored 189 publications receiving 9719 citations. Previous affiliations of Daniel Maspoch include Catalan Institute of Nanotechnology & Ohio State University.

Papers
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An Unusually Stable Trinuclear Manganese(II) Complex Bearing Bulk Carboxylic Radical Ligands

TL;DR: A trinuclear MnII cluster based on the versatile polychlorinated triphenylmethyl carboxylic radical ligand has been characterized by X-ray crystallography and magnetic measurements, representing a rare example of a MnIItrinuclear linear structure with six open-shell ligands.
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Engineering covalent organic frameworks in the modulation of photocatalytic degradation of pollutants under visible light conditions

TL;DR: Mixtures of triphenylamine (TPA) and phenyl phenothiazine (PTH) fragments have been incorporated into a series of extended polyimine structures that have been applied in the photodegradation of pollutants of different nature under visible light irradiation.
Patent

Nanoarrays of single virus particles, methods and instrumentation for the fabrication and use thereof

TL;DR: In this paper, a novel coordination chemistry or metal ion binding approach was used to control the site isolation and orientation of virus particles, such as TMV, on a nanoarray template generated by lithography including Dip Pen Nanolithography.
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Single-molecule magnet behaviour in metal–organic nanospheres generated by simple precipitation of Mn12O12 clusters

TL;DR: Metal-organic sub-50 nm spherical particles that exhibit single-molecule magnet behaviour have been fabricated by direct precipitation of Mn(12)O( 12) clusters in a mixture of acetonitrile and toluene.
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Ultralarge Free‐Standing Imine‐Based Covalent Organic Framework Membranes Fabricated via Compression

TL;DR: A simple compression method to prepare large-scale, free-standing homogeneous and porous imine-based COF-membranes with dimensions in the centimeter range and excellent mechanical properties is reported.