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PDF) TiO2 Nanoparticles Co-Doped with Nitrogen and Fluorine as Visible  Light-Activated Antifungal Agents
PDF) TiO2 Nanoparticles Co-Doped with Nitrogen and Fluorine as Visible Light-Activated Antifungal Agents

Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at  Low Doses but Induces Oxidative Stress and Cell Death at High Doses. |  Semantic Scholar
Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at Low Doses but Induces Oxidative Stress and Cell Death at High Doses. | Semantic Scholar

Efficient Subcellular Targeting to the Cell Nucleus of Quantum Dots Densely  Decorated with a Nuclear Localization Sequence Peptide | ACS Applied  Materials & Interfaces
Efficient Subcellular Targeting to the Cell Nucleus of Quantum Dots Densely Decorated with a Nuclear Localization Sequence Peptide | ACS Applied Materials & Interfaces

Surface Modification of Gold Nanoparticles with Small Molecules for  Biochemical Analysis | Accounts of Chemical Research
Surface Modification of Gold Nanoparticles with Small Molecules for Biochemical Analysis | Accounts of Chemical Research

ZnSnO3 Nanoparticle-Based Piezocatalysts for Ultrasound-Assisted  Degradation of Organic Pollutants | ACS Applied Nano Materials
ZnSnO3 Nanoparticle-Based Piezocatalysts for Ultrasound-Assisted Degradation of Organic Pollutants | ACS Applied Nano Materials

PDF) Poly(trehalose) Nanoparticle Prevents Amyloid Aggregation and Suppress  Polyglutamine Aggregation in Huntington's Disease Model Mouse
PDF) Poly(trehalose) Nanoparticle Prevents Amyloid Aggregation and Suppress Polyglutamine Aggregation in Huntington's Disease Model Mouse

Antimicrobial Cluster Bombs: Silver Nanoclusters Packed with Daptomycin |  ACS Nano
Antimicrobial Cluster Bombs: Silver Nanoclusters Packed with Daptomycin | ACS Nano

Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at  Low Doses but Induces Oxidative Stress and Cell Death at High Doses. |  Semantic Scholar
Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at Low Doses but Induces Oxidative Stress and Cell Death at High Doses. | Semantic Scholar

ACS Applied Materials & Interfaces | Vol 9, No 48
ACS Applied Materials & Interfaces | Vol 9, No 48

Design and Synthesis of Triphenylphosphonium Functionalized Nanoparticle  Probe for Mitochondria Targeting and Imaging | The Journal of Physical  Chemistry C
Design and Synthesis of Triphenylphosphonium Functionalized Nanoparticle Probe for Mitochondria Targeting and Imaging | The Journal of Physical Chemistry C

Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at  Low Doses but Induces Oxidative Stress and Cell Death at High Doses | ACS  Applied Materials & Interfaces
Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at Low Doses but Induces Oxidative Stress and Cell Death at High Doses | ACS Applied Materials & Interfaces

PDF) Supramolecular Host–Guest Chemistry-Based Folate/Riboflavin  Functionalization and Cancer Cell Labeling of Nanoparticles
PDF) Supramolecular Host–Guest Chemistry-Based Folate/Riboflavin Functionalization and Cancer Cell Labeling of Nanoparticles

Poly(trehalose) Nanoparticles Prevent Amyloid Aggregation and Suppress  Polyglutamine Aggregation in a Huntington's Disease Model Mouse | ACS  Applied Materials & Interfaces
Poly(trehalose) Nanoparticles Prevent Amyloid Aggregation and Suppress Polyglutamine Aggregation in a Huntington's Disease Model Mouse | ACS Applied Materials & Interfaces

Indian Association for the Cultivation of science
Indian Association for the Cultivation of science

Multifunctional Mesoporous Silica Nanocomposite Nanoparticles for  Theranostic Applications | Accounts of Chemical Research
Multifunctional Mesoporous Silica Nanocomposite Nanoparticles for Theranostic Applications | Accounts of Chemical Research

Nanoparticle Multivalency Directed Shifting of Cellular Uptake Mechanism |  The Journal of Physical Chemistry C
Nanoparticle Multivalency Directed Shifting of Cellular Uptake Mechanism | The Journal of Physical Chemistry C

Indian Association for the Cultivation of science
Indian Association for the Cultivation of science

PDF) Poly(trehalose) Nanoparticle Prevents Amyloid Aggregation and Suppress  Polyglutamine Aggregation in Huntington's Disease Model Mouse
PDF) Poly(trehalose) Nanoparticle Prevents Amyloid Aggregation and Suppress Polyglutamine Aggregation in Huntington's Disease Model Mouse

Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at  Low Doses but Induces Oxidative Stress and Cell Death at High Doses. |  Semantic Scholar
Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at Low Doses but Induces Oxidative Stress and Cell Death at High Doses. | Semantic Scholar

PDF) Dopamine Functionalized Polymeric Nanoparticle for Targeted Drug  Delivery
PDF) Dopamine Functionalized Polymeric Nanoparticle for Targeted Drug Delivery

ACS Applied Materials & Interfaces | Vol 9, No 48
ACS Applied Materials & Interfaces | Vol 9, No 48

Peroxidase-Like Activity of Fe3O4@Carbon Nanoparticles Enhances Ascorbic  Acid-Induced Oxidative Stress and Selective Damage to PC-3 Prostate Cancer  Cells | ACS Applied Materials & Interfaces
Peroxidase-Like Activity of Fe3O4@Carbon Nanoparticles Enhances Ascorbic Acid-Induced Oxidative Stress and Selective Damage to PC-3 Prostate Cancer Cells | ACS Applied Materials & Interfaces

Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at  Low Doses but Induces Oxidative Stress and Cell Death at High Doses. |  Semantic Scholar
Vitamin C-Conjugated Nanoparticle Protects Cells from Oxidative Stress at Low Doses but Induces Oxidative Stress and Cell Death at High Doses. | Semantic Scholar

Indian Association for the Cultivation of science
Indian Association for the Cultivation of science

Dextran-Gated, Multifunctional Mesoporous Nanoparticle for  Glucose-Responsive and Targeted Drug Delivery | ACS Applied Materials &  Interfaces
Dextran-Gated, Multifunctional Mesoporous Nanoparticle for Glucose-Responsive and Targeted Drug Delivery | ACS Applied Materials & Interfaces