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Merck
CN

900172

Fluorescent nanodiamond

Nitrogen vacancy ≤4 NV/particle, 35 nm avg. part. size (DLS), 1 mg/mL in deionized water, carboxylated

Synonym(s):

Nanodiamond

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About This Item

NACRES:
NA.23
UNSPSC Code:
12352302
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Product Name

Fluorescent nanodiamond, Nitrogen vacancy ≤4 NV/particle, 35 nm avg. part. size (DLS), 1 mg/mL in deionized water, carboxylated

description

Zeta potential +65.1 mV ±20%

form

dispersion
nanoparticles

composition

Nitrogen vacancy, ≤4 NV/particle

concentration

1 mg/mL in deionized water

avg. part. size

35 nm (DLS)

Quality Level

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Application

Nanodiamonds containing nitrogen-vacancy (NV) centers can be prepared using irradiation with high energy electrons. Nanodiamonds with low numbers of NV centers (ideally, single defect centers) are suitable for quantum signaling, optics, and computing applications because their fluorescence allows for observation of single quantum systems. These particles have approximately 1-4 NV centers per particle as measured using AFM confocal microscopy with subsequent derivation of the correlation function using a Hanbury-Brown-Twiss setup.

Storage Class

10 - Combustible liquids

wgk

nwg

flash_point_f

Not applicable

flash_point_c

Not applicable

Regulatory Information

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High yield fabrication of fluorescent nanodiamonds.
Boudou, J.P, et al.
Nanotechnology, 20 (2009)
Scanning Confocal Optical Microscopy and Magnetic Resonance on Single Defect Centers.
Gruber A. et al.
Science, 276, 2012-2014 (1997)
Single defect centres in diamond: A review.
Jelezko F, et al.
Physica Status Solidi, 203(13), 3207-3225 (2006)
In Commercial quantities of ultrasmall fluorescent nanodiamonds containing color centers.
Shenderova O, et al.
Advances in Photonics of Quantum Computing, Memory, and Communication X, San Francisco, SPIE: San Francisco (2017)

Articles

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荧光纳米金刚石颗粒(FND)- 发现纳米金刚石颗粒的属性和应用。

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