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EI-FLEX Pro
EI-FLEX
Technology
Single-molecule FRET
Fluorescence Correlation Spectroscopy
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Protein-DNA interactions
Protein-RNA interactions
Protein structure and dynamics
DNA structure
RNA structure
Antibody-antigen interactions
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Home
Products
EI-FLEX Pro
EI-FLEX
Technology
Single-molecule FRET
Fluorescence Correlation Spectroscopy
Fluorescence Cross Correlation Spectroscopy
Applications
By application area
Protein-DNA interactions
Protein-RNA interactions
Protein structure and dynamics
DNA structure
RNA structure
Antibody-antigen interactions
Riboswitches
Motor proteins
Enzymes
G-quadruplexes
DNA origami
Ternary complexes
Protein aggregation
Membrane proteins
Intrinsically disordered proteins
Extracellular vesicles
By research goal
By sector
For academia
For biopharma
Resources
Resource overview
Resource library
Events
About
Careers
Home
Products
EI-FLEX Pro
EI-FLEX
Technology
Single-molecule FRET
Fluorescence Correlation Spectroscopy
Fluorescence Cross Correlation Spectroscopy
Applications
By application area
Protein-DNA interactions
Protein-RNA interactions
Protein structure and dynamics
DNA structure
RNA structure
Antibody-antigen interactions
Riboswitches
Motor proteins
Enzymes
G-quadruplexes
DNA origami
Ternary complexes
Protein aggregation
Membrane proteins
Intrinsically disordered proteins
Extracellular vesicles
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16 January 2026
Electronic actuation of surface-immobilised, pH-responsive DNA nanoswitches
Format
Paper
D’Rozario et al.
ACS Applied Materials & Interfaces
2026
18
(12), 18039-18048
DOI:
10.1021/acsami.5c23628
Download now
Tags
bioelectronic interfaces
,
Customer data
,
DNA nanoswitch
,
DNA triplex
,
dynamic DNA nanomachines
,
EI-FLEX
,
electronic actuation
,
pH-responsive DNA
,
smFRET
,
surface-immobilised DNA
Technology
smFRET
Applications
DNA structure
Quadruplexes / higher order structures
DNA origami
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