DrBphP-PCM
Construct Patternthe engineered near-infrared photochromic probe derived from DrBphP
Browse the toolkit beneath workflows. The mechanism branch runs mechanism -> architecture -> component, while the technique branch runs from high-level approaches down to concrete methods.
10 items matching 1 filter
Mechanism Branch
Layer 1
Mechanisms
Top-level concepts: biophysical action modes such as heterodimerization, photocleavage, or RNA binding.
Layer 2
Architectures
Arrangements that realize or deploy mechanisms, including switches, construct patterns, and delivery strategies.
Layer 3
Components
Low-level parts and sequence-defined elements used inside architectures, including protein domains and RNA elements.
Technique Branch
Layer 1
Approaches
High-level engineering practices such as computational design, directed evolution, sequence verification, and functional assay.
Layer 2
Methods
Concrete methods used to design, build, verify, or characterize engineered systems.
Showing 1-10 of 10
the engineered near-infrared photochromic probe derived from DrBphP
The review title explicitly states "Coupling carbon nanomaterials with photochromic molecules for the generation of optically responsive materials." The supplied web research summary says the review centers on photochromic functionalization of carbon nanomaterials and related hybrids.
The supplied web research summary says the review explicitly centers on related hybrids with diarylethene motifs and carbon nanomaterials.
The supplied web research summary states that the review explicitly centers on photochromic functionalization of carbon nanomaterials including fullerene/C60.
The supplied web research summary states that the review explicitly centers on photochromic functionalization of carbon nanomaterials including graphene.
Various novel, multifunctional materials based on photochromic spiropyrans and spirooxazines have been successfully developed because of the vastly differently physiochemical properties posssed by the SP, MC and MCH forms.
Various novel, multifunctional materials based on photochromic spiropyrans and spirooxazines have been successfully developed because of the vastly differently physiochemical properties posssed by the SP, MC and MCH forms.
The supplied web research summary states that the review explicitly centers on photochromic functionalization of carbon nanomaterials and related hybrids with spiropyran/merocyanine motifs, especially involving carbon nanotubes.
The supplied web research summary identifies foundational primary studies on CNT device-level photoswitching and explicitly lists carbon nanotube field-effect transistor as a related item candidate relevant to the review's reference neighborhood.
Here we have devised a family of photoswitchable quantum dots (psQDs) in which the semiconductor core functions as a fluorescence donor in Förster resonance energy transfer (FRET), and multiple photochromic diheteroarylethene groups function as acceptors upon activation by ultraviolet light.