Ram R. R. Prasad
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View article: Programmable 2D Metal‐Organic Framework Nanosheets for Enzyme‐Like Hydrolysis of Large Proteins
Programmable 2D Metal‐Organic Framework Nanosheets for Enzyme‐Like Hydrolysis of Large Proteins Open
The development of materials that mimic the catalytic activity of natural enzymes, so called nanozymes, are of crucial importance in biochemical and biotechnological fields. A Zr‐pyridine tribenzoate metal‐organic framework nanosheet (MON)…
View article: Phage Display Against 2D Metal–Organic Nanosheets as a New Route to Highly Selective Biomolecular Recognition Surfaces
Phage Display Against 2D Metal–Organic Nanosheets as a New Route to Highly Selective Biomolecular Recognition Surfaces Open
Peptides are important biomarkers for various diseases, however distinguishing specific amino‐acid sequences using artificial receptors remains a major challenge in biomedical sensing. This study introduces a new approach for creating high…
View article: Modulated Self-Assembly of Catalytically Active Metal–Organic Nanosheets Containing Zr<sub>6</sub> Clusters and Dicarboxylate Ligands
Modulated Self-Assembly of Catalytically Active Metal–Organic Nanosheets Containing Zr<sub>6</sub> Clusters and Dicarboxylate Ligands Open
Two-dimensional metal-organic nanosheets (MONs) have emerged as attractive alternatives to their three-dimensional metal-organic framework (MOF) counterparts for heterogeneous catalysis due to their greater external surface areas and highe…
View article: Phage display against two-dimensional metal-organic nanosheets as a new route to highly selective biomolecular recognition surfaces
Phage display against two-dimensional metal-organic nanosheets as a new route to highly selective biomolecular recognition surfaces Open
Peptides are important biomarkers for a range of diseases, however distinguishing different amino-acid sequences using artificial receptors remains a major challenge in biomedical sensing. Here we present a new approach to creating highly …
View article: Scalable and sustainable manufacturing of ultrathin metal–organic framework nanosheets (MONs) for solar cell applications
Scalable and sustainable manufacturing of ultrathin metal–organic framework nanosheets (MONs) for solar cell applications Open
Metal-organic framework nanosheets (MONs) are an emerging class of 2D materials whose tunable chemistry make them ideal for a wide range of sensing, catalytic, electronics and separation applications. However, creating scalable routes to t…
View article: Metal–Organic Framework Nanosheets: Programmable 2D Materials for Catalysis, Sensing, Electronics, and Separation Applications
Metal–Organic Framework Nanosheets: Programmable 2D Materials for Catalysis, Sensing, Electronics, and Separation Applications Open
Metal–organic framework nanosheets (MONs) have recently emerged as a distinct class of 2D materials with programmable structures that make them useful in diverse applications. In this review, the breadth of applications that have so far be…
View article: Isoreticular chemistry of scandium analogues of the multicomponent metal–organic framework MIL-142
Isoreticular chemistry of scandium analogues of the multicomponent metal–organic framework MIL-142 Open
MIL-142(Sc) is prepared and the limits of the isoreticular substitution of each linker type are explored and characterised by single-crystal XRD.
View article: CCDC 1875995: Experimental Crystal Structure Determination
CCDC 1875995: Experimental Crystal Structure Determination Open
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available …
View article: CCDC 1875994: Experimental Crystal Structure Determination
CCDC 1875994: Experimental Crystal Structure Determination Open
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available …
View article: CCDC 1875996: Experimental Crystal Structure Determination
CCDC 1875996: Experimental Crystal Structure Determination Open
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available …
View article: STA-27, a porous Lewis acidic scandium MOF with an unexpected topology type prepared with 2,3,5,6-tetrakis(4-carboxyphenyl)pyrazine
STA-27, a porous Lewis acidic scandium MOF with an unexpected topology type prepared with 2,3,5,6-tetrakis(4-carboxyphenyl)pyrazine Open
The scandium-based tetracarboxylate MOF STA-27, which contains a 1D rod SBU comprised of Sc2O11 dimers, is an effective Lewis acid catalyst.
View article: A Bifunctional MOF Catalyst Containing Metal–Phosphine and Lewis Acidic Active Sites
A Bifunctional MOF Catalyst Containing Metal–Phosphine and Lewis Acidic Active Sites Open
Post‐synthetic modification of the hafnium metal–organic framework MOF‐808(Hf) to include triarylphosphine ligands is reported. Sulfonated phenylphosphines are incorporated without oxidation to give a “MOF ligand” that can complex late tra…
View article: CCDC 1571655: Experimental Crystal Structure Determination
CCDC 1571655: Experimental Crystal Structure Determination Open
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available …
View article: CCDC 1571656: Experimental Crystal Structure Determination
CCDC 1571656: Experimental Crystal Structure Determination Open
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available …