Results 131 to 140 of about 18,268,240 (267)
Voltage-modulated polymer nanopore field-effect transistor for multi-sized nanoparticle detection
Solid-state nanopores offer a range of distinct advantages over biological nanopores, such as structural diversity and greater stability and durability; this makes them highly promising for high-resolution nanoparticle sensing.
Feng Zhou, Lin Li, Qiannan Xue
doaj +1 more source
Multiplexed Digital Characterization of Misfolded Protein Oligomers via Solid-State Nanopores. [PDF]
Sandler SE +11 more
europepmc +1 more source
Solid-State Nanopores for Biomolecular Analysis and Detection
Advances in nanopore technology and data processing have rendered DNA sequencing highly accessible, unlocking a new realm of biotechnological opportunities.
Schlotter, Tilman +3 more
core +1 more source
Solid-state nanopores [Elektronisk resurs] : fabrication and applications
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. Among them, solid-state nanopores show obvious advantages over their biological counterparts in terms of high chemical stability and reusability as well ...
Zeng, Shuangshuang, +2 more
core
Active Solid-State Nanopores: Self-Driven Flows/Chaos at the Liquid-Gas Nanofluidic Interface. [PDF]
Johny V, Ghosh S.
europepmc +1 more source
Graphite Co‐Intercalation Chemistry in Sodium‐Ion Batteries
Traditional intercalation chemistry in lithium‐ion batteries cannot allow sodium storage in graphite. The co‐intercalation chemistry changes the situation. It enables reversible and ultrafast sodium storage in graphite. Revisiting challenges and summarizing recent advances are of significant importance to exploit the full potential of graphite in ...
Linlong Lyu, Yuyang Yi, Zheng‐Long Xu
wiley +1 more source
Zero-depth nanopores present a promising solution to the challenges associated with ultrathin membranes used in solid-state resistive pulse sensors for DNA sequencing.
Mohammad Matin Behzadi +2 more
doaj +1 more source
Artificial Cell Catalysts for Biotransformation: Design Principles and Process Integration
ABSTRACT Artificial cell catalysts are emerging as programmable biocatalytic platforms for sustainable molecular conversion. By reconstituting enzymes and functional modules within synthetic compartments, they combine the selectivity of biological catalysis with the design flexibility of synthetic materials.
Iori Kobayashi +2 more
wiley +1 more source
Discrimination of RNA fiber structures using solid-state nanopores. [PDF]
Tripathi P +8 more
europepmc +1 more source

