Nirmal Goswami
0000-0002-8950-6459
Institute of Minerals and Materials Technology CSIR
44 papers found
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Polycationic Silver Nanoclusters Comprising Nanoreservoirs of Ag+ Ions with High Antimicrobial and Antibiofilm Activity
Ultrasmall AgNP-Impregnated Biocompatible Hydrogel with Highly Effective Biofilm Elimination Properties
Cover Feature: Ultrasmall Gold Nanocluster Based Antibacterial Nanoaggregates for Infectious Wound Healing (ChemNanoMat 9/2019)
Ultrasmall Gold Nanocluster Based Antibacterial Nanoaggregates for Infectious Wound Healing
The interplay between size and valence state on the antibacterial activity of sub-10 nm silver nanoparticles
Core-in-cage structure regulated properties of ultra-small gold nanoparticles
AIE-Type Metal Nanoclusters: Synthesis, Luminescence, Fundamentals and Applications
pH-Responsive aggregation-induced emission of Au nanoclusters and crystallization of the Au (i)–thiolate shell
Cyclodextrin–gold nanocluster decorated TiO2 enhances photocatalytic decomposition of organic pollutants
pH-Responsive aggregation-induced emission of Au nanoclusters and crystallization of the Au(i)–thiolate shell
Ligands Modulate Reaction Pathway in the Hydrogenation of 4-Nitrophenol Catalyzed by Gold Nanoclusters
In Situ Fabrication of Flexible, Thermally Stable, Large-Area, Strongly Luminescent Copper Nanocluster/Polymer Composite Films
Unraveling the molecular mechanism of photosynthetic toxicity of highly fluorescent silver nanoclusters to Scenedesmus obliquus
Engineering gold-based radiosensitizers for cancer radiotherapy
Mechanistic exploration and controlled synthesis of precise thiolate-gold nanoclusters
Probing the Microporous Structure of Silica Shell Via Aggregation-Induced Emission in Au(I)-Thiolate@SiO2Nanoparticle
Uptake and effect of highly fluorescent silver nanoclusters on Scenedesmus obliquus
Highly Luminescent Thiolated Gold Nanoclusters Impregnated in Nanogel
Luminescent Metal Nanoclusters with Aggregation-Induced Emission
Converting ultrafine silver nanoclusters to monodisperse silver sulfide nanoparticles via a reversible phase transfer protocol
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