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Schematic illustration of the M13 bacteriophage-based colorimetric... |  Download Scientific Diagram
Schematic illustration of the M13 bacteriophage-based colorimetric... | Download Scientific Diagram

M13 Virus-Directed Synthesis of Nanostructured Metal Oxides for  Lithium–Oxygen Batteries | Nano Letters
M13 Virus-Directed Synthesis of Nanostructured Metal Oxides for Lithium–Oxygen Batteries | Nano Letters

M13 Virus Triboelectricity and Energy Harvesting | Nano Letters
M13 Virus Triboelectricity and Energy Harvesting | Nano Letters

Biologically enhanced cathode design for improved capacity and cycle life  for lithium-oxygen batteries | Nature Communications
Biologically enhanced cathode design for improved capacity and cycle life for lithium-oxygen batteries | Nature Communications

MIT Creates Battery from Genetically Engineered Virus
MIT Creates Battery from Genetically Engineered Virus

Virus-based Photo-Responsive Nanowires Formed By Linking Site-Directed  Mutagenesis and Chemical Reaction | Scientific Reports
Virus-based Photo-Responsive Nanowires Formed By Linking Site-Directed Mutagenesis and Chemical Reaction | Scientific Reports

Viruses breathe new life into batteries – Physics World
Viruses breathe new life into batteries – Physics World

Exploiting Biological Systems: Toward Eco-Friendly and High-Efficiency  Rechargeable Batteries
Exploiting Biological Systems: Toward Eco-Friendly and High-Efficiency Rechargeable Batteries

M13 virus-templated open mouth-like platinum nanostructures prepared by  electrodeposition: Influence of M13-virus on structure and electrocatalytic  activity - ScienceDirect
M13 virus-templated open mouth-like platinum nanostructures prepared by electrodeposition: Influence of M13-virus on structure and electrocatalytic activity - ScienceDirect

Stamped microbattery electrodes based on self-assembled M13 viruses | PNAS
Stamped microbattery electrodes based on self-assembled M13 viruses | PNAS

Lithium-air batteries go viral for greater durability and performance
Lithium-air batteries go viral for greater durability and performance

M13 phage: a versatile building block for a highly specific analysis  platform | SpringerLink
M13 phage: a versatile building block for a highly specific analysis platform | SpringerLink

New virus-built battery could power cars, electronic devices | MIT News |  Massachusetts Institute of Technology
New virus-built battery could power cars, electronic devices | MIT News | Massachusetts Institute of Technology

Filamentous virus-based soft materials based on controlled assembly through  liquid crystalline formation | Polymer Journal
Filamentous virus-based soft materials based on controlled assembly through liquid crystalline formation | Polymer Journal

Virus-Enabled Synthesis and Assembly of Nanowires for Lithium Ion Battery  Electrodes | Science
Virus-Enabled Synthesis and Assembly of Nanowires for Lithium Ion Battery Electrodes | Science

Fabricating Genetically Engineered High-Power Lithium-Ion Batteries Using  Multiple Virus Genes | Science
Fabricating Genetically Engineered High-Power Lithium-Ion Batteries Using Multiple Virus Genes | Science

Nanomaterials | Free Full-Text | Recent Developments and Prospects of M13-  Bacteriophage Based Piezoelectric Energy Harvesting Devices
Nanomaterials | Free Full-Text | Recent Developments and Prospects of M13- Bacteriophage Based Piezoelectric Energy Harvesting Devices

Virus-Enabled Synthesis and Assembly of Nanowires for Lithium Ion Battery  Electrodes | Science
Virus-Enabled Synthesis and Assembly of Nanowires for Lithium Ion Battery Electrodes | Science

Stamped microbattery electrodes based on self-assembled M13 viruses | PNAS
Stamped microbattery electrodes based on self-assembled M13 viruses | PNAS

Virus-Enabled Synthesis and Assembly of Nanowires for Lithium Ion Battery  Electrodes | Science
Virus-Enabled Synthesis and Assembly of Nanowires for Lithium Ion Battery Electrodes | Science

MIT Team Uses Genetically Engineered Viruses to Build Cathode Material for  Li-ion Battery - Green Car Congress
MIT Team Uses Genetically Engineered Viruses to Build Cathode Material for Li-ion Battery - Green Car Congress

Recent applications of bacteriophage-based electrodes: A mini-review -  ScienceDirect
Recent applications of bacteriophage-based electrodes: A mini-review - ScienceDirect

M13 Virus-Directed Synthesis of Nanostructured Metal Oxides for  Lithium–Oxygen Batteries | Nano Letters
M13 Virus-Directed Synthesis of Nanostructured Metal Oxides for Lithium–Oxygen Batteries | Nano Letters

PDF] Assembly of bacteriophage into functional materials. | Semantic Scholar
PDF] Assembly of bacteriophage into functional materials. | Semantic Scholar

Improvements in the production of purified M13 bacteriophage  bio-nanoparticle | Scientific Reports
Improvements in the production of purified M13 bacteriophage bio-nanoparticle | Scientific Reports