Sreejith P Nandan

About Sreejith P Nandan

Sreejith P Nandan, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of Nanomaterials, Photocatalysis, Energy applications.

His recent articles reflect a diverse array of research interests and contributions to the field:

The Emergence of 2D Building Units in Metal‐Organic Frameworks for Photocatalytic Hydrogen Evolution: A Case Study with COK‐47 (Adv. Energy Mater. 31/2023)

Functionalization of decavanadate anion by coordination to cobalt (II): Binding to proteins, cytotoxicity, and water oxidation catalysis

STABLE AND EFFICIENT PHOTOCATALYTIC H₂ EVOLUTION ENABLED BY A SUPPORTED THIOMOLYBDATE CLUSTER

IMMOBILIZATION OF POLYOXOMETALATES ON TiO₂ NANOPARTICLES FOR PHOTOCATALYTIC WATER OXIDATION REACTION

FULL SPECTRUM PHOTOCATALYTIC HYDROGEN EVOLUTION REACTION OF A NOVEL AND VERSATILE Ti (IV)-MOF

Molecular polyoxo-and thiometalate clusters as a bridge between homogeneous and heterogeneous photocatalysis

Immobilization of a [CoᴵᴵᴵCoᴵᴵ (H₂O) W₁₁O₃₉] ⁷⁻ Polyoxoanion for the Photocatalytic Oxygen Evolution Reaction

Immobilization of a [CoIIICoII(H2O)W11O39]7– Polyoxoanion for the Photocatalytic Oxygen Evolution Reaction

Sreejith P Nandan Information

University

Position

PhD candidate

Citations(all)

378

Citations(since 2020)

378

Cited By

58

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

6

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Sreejith P Nandan Skills & Research Interests

Nanomaterials

Photocatalysis

Energy applications

Top articles of Sreejith P Nandan

The Emergence of 2D Building Units in Metal‐Organic Frameworks for Photocatalytic Hydrogen Evolution: A Case Study with COK‐47 (Adv. Energy Mater. 31/2023)

Advanced Energy Materials

2023/8

Functionalization of decavanadate anion by coordination to cobalt (II): Binding to proteins, cytotoxicity, and water oxidation catalysis

Journal of Inorganic Biochemistry

2023/2/1

STABLE AND EFFICIENT PHOTOCATALYTIC H₂ EVOLUTION ENABLED BY A SUPPORTED THIOMOLYBDATE CLUSTER

2022/9/15

IMMOBILIZATION OF POLYOXOMETALATES ON TiO₂ NANOPARTICLES FOR PHOTOCATALYTIC WATER OXIDATION REACTION

2022/9/1

FULL SPECTRUM PHOTOCATALYTIC HYDROGEN EVOLUTION REACTION OF A NOVEL AND VERSATILE Ti (IV)-MOF

2022/8/31

Molecular polyoxo-and thiometalate clusters as a bridge between homogeneous and heterogeneous photocatalysis

2022/8/31

Immobilization of a [CoᴵᴵᴵCoᴵᴵ (H₂O) W₁₁O₃₉] ⁷⁻ Polyoxoanion for the Photocatalytic Oxygen Evolution Reaction

ACS Materials Au

2022/7/13

Immobilization of a [CoIIICoII(H2O)W11O39]7– Polyoxoanion for the Photocatalytic Oxygen Evolution Reaction

ACS Materials Au

2022/5/25

Surface-anchoring and modification of molecular [Mo3S13] 2-cluster co-catalysts for photocatalytic water splitting

2022/5/20

Surface Anchoring and Active Sites of [Mo3S13]2– Clusters as Co-Catalysts for Photocatalytic Hydrogen Evolution

ACS catalysis

2022/5/20

[Mo₃S₁₃] ²⁻ thiomolybdate cluster as a stable and efficient cocatalyst for photocatalytic H₂ evolution reaction

2022

Insights into enhancing photocatalytic hydrogen evolution using molecular co-catalysts on well-defined high surface area photoactive supports

2022

Photocatalytic properties of COK-47, a versatile Ti (IV)-MOF for visible light driven hydrogen evolution reaction

2022

Supported {Co₂W₁₁} polyoxometalate clusters as co-catalysts for photocatalytic water oxidation reaction

2022

Selective ligand exchange synthesis of Au16 (2-PET) 14 from Au15 (SG) 13

The Journal of Chemical Physics

2021/10/28

Photocatalysis on Thin-Films: Integration of Molecular Clusters onto Oxide Supports

2021/9/23

Molecular thiometalate clusters as co-catalysts for photocatalytic water splitting

2021/9/20

Cover Feature: Phosphate‐Templated Encapsulation of a {CoII4O4} Cubane in Germanotungstates as Carbon‐Free Homogeneous Water Oxidation …

ChemSusChem

2021/6/21

Phosphate‐Templated Encapsulation of a {CoII4O4} Cubane in Germanotungstates as Carbon‐Free Homogeneous Water Oxidation Photocatalysts

ChemSusChem

2021/6/21

Ti-based MOFs: New insights on the impact of ligand composition and hole scavengers on stability, charge separation and photocatalytic hydrogen evolution

Applied Catalysis B: Environmental

2021/4/1

See List of Professors in Sreejith P Nandan University(Technische Universität Wien)

Co-Authors

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