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Sukhen Bala

Researcher at Sun Yat-sen University

Publications -  29
Citations -  718

Sukhen Bala is an academic researcher from Sun Yat-sen University. The author has contributed to research in topics: Ligand & Chemistry. The author has an hindex of 14, co-authored 25 publications receiving 559 citations. Previous affiliations of Sukhen Bala include Indian National Association & Indian Association for the Cultivation of Science.

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Co-MOF as a sacrificial template: manifesting a new Co3O4/TiO2 system with a p–n heterojunction for photocatalytic hydrogen evolution

TL;DR: In this paper, a method for preparing an elusive Co3O4/TiO2 p-n heterojunction using Co-based metal organic frameworks (Co-MOFs) as a TiO2-absorbent cum sacrificial template for nanocomposite formation was reported.
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Construction of polynuclear lanthanide (Ln = DyIII, TbIII, and NdIII) cage complexes using pyridine–pyrazole-based ligands: versatile molecular topologies and SMM behavior

TL;DR: Employment of two different pyridyl-pyrazolyl-based ligands afforded three octanuclear lanthanide( III) (Ln = Dy, Tb) cage compounds and one hexanuclear neodymium(III) coordination cage, exhibiting versatile molecular architectures including a butterfly core.
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Designing Functional Metal–Organic Frameworks by Imparting a Hexanuclear Copper-Based Secondary Building Unit Specific Properties: Structural Correlation With Magnetic and Photocatalytic Activity

TL;DR: In this paper, the main theme of interest is to design functional MOFs by imparting a multinuclear metal center as a secondary building unit (SBU), and three MOFs are synthesized based on a hexanuclear Cu-pyrazolate unit as the SBU with some intriguing structural networks like (4,4) type herringbone grid or an archetypal Kagome topology.
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A square antiprism dysprosium single-ion magnet with an energy barrier over 900 K

TL;DR: A stable and high-performance Dy(iii) single-ion magnet (SIM) showing an energy barrier of 944 K under zero dc field, with an open hysteresis loop up to 6 K is reported.
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Hysteretic four-step spin-crossover in a 3D Hofmann-type metal–organic framework with aromatic guest

TL;DR: A new Hofmann-type metal-organic framework with bent pillar ligand, [Fe(dpoda){Ag(CN)2}2] (dpoda = 2,5-di-(pyridyl)-1,3,4-oxadiazole), was synthesized and hysteretic four-step SCO behaviour with the sequence of LS ↔ HS is observed for the first time.