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Flinn, Bradley T; Rance, Graham A; Cull, William J; Cardillo-Zallo, Ian; Pitcairn, Jem; Cliffe, Matthew J; Fay, Michael W; Tyler, Ashley J; Weare, Benjamin L; Stoppiello, Craig T; Davies, E Stephen; Mather, Melissa L; Khlobystov, Andrei N
Sensing the spin state of room-temperature switchable cyanometallate frameworks with nitrogen-vacancy centers in nanodiamonds Journal Article
In: ACS Nano, vol. 18, no. 9, pp. 7148–7160, 2024.
Abstract | Links | Altmetric | Tags: metal−organic framework, nanodiamond, Nitrogen-vacancy sensing, photomagnetism, spin-crossover, transmission electron microscopy
@article{Flinn2024-yd,
title = {Sensing the spin state of room-temperature switchable cyanometallate frameworks with nitrogen-vacancy centers in nanodiamonds},
author = {Bradley T Flinn and Graham A Rance and William J Cull and Ian Cardillo-Zallo and Jem Pitcairn and Matthew J Cliffe and Michael W Fay and Ashley J Tyler and Benjamin L Weare and Craig T Stoppiello and E Stephen Davies and Melissa L Mather and Andrei N Khlobystov},
doi = {10.1021/acsnano.3c11820},
year = {2024},
date = {2024-03-01},
urldate = {2024-03-01},
journal = {ACS Nano},
volume = {18},
number = {9},
pages = {7148\textendash7160},
publisher = {American Chemical Society (ACS)},
abstract = {Room-temperature magnetically switchable materials play a vital
role in current and upcoming quantum technologies, such as
spintronics, molecular switches, and data storage devices. The
increasing miniaturization of device architectures produces a
need to develop analytical tools capable of precisely probing
spin information at the single-particle level. In this work, we
demonstrate a methodology using negatively charged nitrogen
vacancies (NV-) in fluorescent nanodiamond (FND) particles to
probe the magnetic switching of a spin crossover (SCO)
metal-organic framework (MOF),
[Fe(1,6-naphthyridine)2(Ag(CN)2)2] material (1), and a
single-molecule photomagnet [X(18-crown-6)(H2O)3]Fe(CN)6·2H2O, where X = Eu and Dy (materials 2a and 2b, respectively), in
response to heat, light, and electron beam exposure. We employ
correlative light-electron microscopy using transmission
electron microscopy (TEM) finder grids to accurately image and
sense spin-spin interacting particles down to the
single-particle level. We used surface-sensitive optically
detected magnetic resonance (ODMR) and magnetic modulation (MM)
of FND photoluminescence (PL) to sense spins to a distance of
ca. 10-30 nm. We show that ODMR and MM sensing was not sensitive
to the temperature-induced SCO of FeII in 1 as formation of
paramagnetic FeIII through surface oxidation (detected by X-ray
photoelectron spectroscopy) on heating obscured the signal of
bulk SCO switching. We found that proximal FNDs could
effectively sense the chemical transformations induced by the
200 keV electron beam in 1, namely, AgI $rightarrow$ Ag0 and
FeII $rightarrow$ FeIII. However, transformations induced by
the electron beam are irreversible as they substantially disrupt
the structure of MOF particles. Finally, we demonstrate NV-
sensing of reversible photomagnetic switching, FeIII +
(18-crown-6) ⇆ FeII + (18-crown-6)+ •, triggered in 2a and 2b by
405 nm light. The photoredox process of 2a and 2b proved to be
the best candidate for room-temperature single-particle magnetic
switching utilizing FNDs as a sensor, which could have
applications into next-generation quantum technologies.},
keywords = {metal−organic framework, nanodiamond, Nitrogen-vacancy sensing, photomagnetism, spin-crossover, transmission electron microscopy},
pubstate = {published},
tppubtype = {article}
}
Nizamundeen, Zubair Ahmed; ElSaboni, Loubna; Vetch, Grace; Karim, Jumana; Neal, Chris R; Allen, Claire L; Bates, David O; Arkill, Kenton P
Transmission electron microscopy of endothelium Book Section
In: Methods in Molecular Biology, pp. 95–103, Springer US, New York, NY, 2022.
Tags: microscopy, transmission electron microscopy
@incollection{Nizamundeen2022-xa,
title = {Transmission electron microscopy of endothelium},
author = {Zubair Ahmed Nizamundeen and Loubna ElSaboni and Grace Vetch and Jumana Karim and Chris R Neal and Claire L Allen and David O Bates and Kenton P Arkill},
year = {2022},
date = {2022-01-01},
urldate = {2022-01-01},
booktitle = {Methods in Molecular Biology},
pages = {95\textendash103},
publisher = {Springer US},
address = {New York, NY},
series = {Methods in molecular biology (Clifton, N.J.)},
keywords = {microscopy, transmission electron microscopy},
pubstate = {published},
tppubtype = {incollection}
}
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