This search combines search strings from the content search (i.e. "Full Text", "Author", "Title", "Abstract", or "Keywords") with "Article Type" and "Publication Date Range" using the AND operator.
Beilstein J. Nanotechnol. 2026, 17, 872–881, doi:10.3762/bjnano.17.63
Scheme 1: Synthesis of C3-symmetric MeS-TTF-Ts.
Figure 1: AFM images of nanorods composed of C3-symmetric MeS-TTF-Ts deposited from DMF on a mica substrate. ...
Figure 2: AFM images of nanofibers composed of C3-symmetric MeS-TTF-Ts deposited from DMSO on a mica substrat...
Figure 3: AFM images of nanofibers composed of the C3-symmetric (MeS-TTF-Ts)(F4TCNQ)3 charge-transfer complex...
Figure 4: UV–vis spectra of nanofiber films on quartz substrates formed from MeS-TTF-Ts and the (MeS-TTF-Ts)(...
Figure 5: FTIR spectra of neutral F4TCNQ and the (MeS-TTF-Ts)(F4TCNQ)3 charge-transfer complex thin film depo...
Figure 6: I–V curves of nanofibers composed of the (MeS-TTF-Ts)(F4TCNQ)3 charge-transfer complex deposited on...
Beilstein J. Nanotechnol. 2026, 17, 828–838, doi:10.3762/bjnano.17.59
Figure 1: Conceptual figure showing this perspective on simultaneous metal ion detection based on self-assemb...
Figure 2: Categorization of chemosensor preparation and detection principles. (A) An indicator–spacer–recepto...
Figure 3: Chemical structures of catechols 1–4 and phenylboronic acid derivative 5.
Figure 4: Colorimetric changes of a catechol dye 1 derived from (A) association with 5 through boronate ester...
Figure 5: Conceptual scheme for pattern recognition-driven chemical sensing.
Figure 6: (A) Colorimetric patterns of a stand-alone dye array and the self-assembled chemosensor array in th...
Figure 7: (A) Schematic of device fabrication using office printers and apparatus. (B) Photograph of the 96-w...
Figure 8: (A) Color response profile of the paper-based chemosensor array device upon adding target metal ion...