Molecular beacon-functionalized gold nanoparticles as probes in dry-reagent strip biosensor for DNA analysis
Literature Information
Hui Xu, Qingxiang Zeng, Lingwen Zeng, Guodong Liu
The highly specific molecule recognition properties of molecular beacons (MB) are combined with the unique optical properties of gold nanoparticles (Au-NPs) for the development of a dry-reagent strip-type nucleic acidbiosensor (DSNAB) that enables sensitive and low-cost detection of nucleic acid samples within 15 min.
Related Literature
Electric-field induced mutation of DNA: a theoretical investigation of the GC base pair
José P. Cerón-Carrasco
DOI: 10.1039/C2CP44066K
Effects of backbone rigidity on the local structure and dynamics in polymer melts and glasses
Rajeev Kumar, Monojoy Goswami, Bobby G. Sumpter
DOI: 10.1039/C3CP43737J
Protonated triplet-excited flavin resolved by step-scan FTIR spectroscopy: implications for photosensory LOV domains
Christian Thöing, Anna Pfeifer, Sergej Kakorin, Tilman Kottke
DOI: 10.1039/C3CP43881C
TiO2nanowire electron transport pathways inside organic photovoltaics
Pinyi Yang, Diane K. Zhong, Mingjian Yuan, Andrew H. Rice, Daniel R. Gamelin, Christine K. Luscombe
DOI: 10.1039/C3CP50325A
Microporous organic polymers for gas storage and separation applications
Ze Chang, Da-Shuai Zhang, Qiang Chen, Xian-He Bu
DOI: 10.1039/C3CP50517K
Screening of transition and post-transition metals to incorporate into copper oxide and copper bismuth oxide for photoelectrochemical hydrogen evolution
Sean P. Berglund, Heung Chan Lee, Paul D. Núñez, Allen J. Bard
DOI: 10.1039/C3CP50540E
CCSD(T) level interaction energy for halogen bond between pyridine and substituted iodobenzenes: origin and additivity of substituent effects
Seiji Tsuzuki, Tadafumi Uchimaru, Akihiro Wakisaka, Taizo Ono, Takaaki Sonoda
DOI: 10.1039/C3CP43693D
Impact of long-range van der Waals forces on chiral recognition in a Cinchona alkaloid chiral selector system
Petr Milko, Jana Roithová, Kevin A. Schug, Karel Lemr
DOI: 10.1039/C3CP44444A
Single-molecule surface-enhanced Raman spectroscopy: a perspective on the current status
Hae Mi Lee, Seung Min Jin, Hyung Min Kim, Yung Doug Suh
DOI: 10.1039/C3CP44463E
You might also like
How should waste containing (6-Bromo-2-naphthyl)oxy](dimethyl)(2-methyl-2-propanyl)silane be handled?
Waste containing (6-Bromo-2-naphthyl)oxy](dimethyl)(2-methyl-2-propanyl)silane (...
How is 7-Fluoro-4-isoquinolinecarboxylic acid (CAS: 1841081-40-0) typically synthesized?
7-Fluoro-4-isoquinolinecarboxylic acid can be synthesized via a multi-step proce...
What are the physical and chemical properties of 2,3,5,6-Tetrabromothieno[3,2-b]thiophene (CAS: 124638-53-5)?
2,3,5,6-Tetrabromothieno[3,2-b]thiophene is a crystalline compound with a high m...
Is 1-[4-(Benzylamino)-7,8-dihydro-5H-pyrano[4,3-d]pyrimidin-2-yl]-2-methyl-1H-indole-4-carboxamide (CAS: 1542705-92-9) safe?
1-[4-(Benzylamino)-7,8-dihydro-5H-pyrano[4,3-d]pyrimidin-2-yl]-2-methyl-1H-indol...
What is the market or research trend for imidazo[5,1-d]-1,2,3,5-tetrazine-8-carboxylic acid, 3,4-dihydro-3-methyl-4-oxo- (CAS: 113942-30-6)?
The market for imidazo[5,1-d]-1,2,3,5-tetrazine-8-carboxylic acid, 3,4-dihydro-3...
What is 3-(Triisopropylsilyl)propiolaldehyde (CAS: 163271-80-5)?
3-(Triisopropylsilyl)propiolaldehyde is a synthetic organic compound with the CA...
What regulatory guidelines apply to 6-Nitro-2H-1,4-benzoxazin-3(4H)-one (CAS: 81721-87-1)?
6-Nitro-2H-1,4-benzoxazin-3(4H)-one (CAS: 81721-87-1) is subject to various regu...
How should waste containing (3-Fluorophenyl)(4-{[(2-methyl-2-propanyl)oxy]carbonyl}-1-piperazinyl)acetic acid (CAS: 885272-91-3) be handled?
Waste containing (3-Fluorophenyl)(4-{[(2-methyl-2-propanyl)oxy]carbonyl}-1-piper...
What are the physical and chemical properties of N,N'-4,4'-Biphenyldiyldiisonicotinamide (CAS: 55119-40-9)?
N,N'-4,4'-Biphenyldiyldiisonicotinamide is a white crystalline solid with a mole...
What industries use 6-Bromo-8-fluoro-2-quinazolinol (CAS: 1036756-15-6)?
6-Bromo-8-fluoro-2-quinazolinol is primarily used in the pharmaceutical industry...
Source Journal
Chemical Communications

ChemComm publishes urgent research which is of outstanding significance and interest to experts in the field, while also appealing to the journal’s broad chemistry readership. Our communication format is ideally suited to short, urgent studies that are of such importance that they require accelerated publication. Our scope covers all topics in chemistry, and research at the interface of chemistry and other disciplines (such as materials science, nanoscience, physics, engineering and biology) where there is a significant novelty in the chemistry aspects. Major topic areas covered include: Analytical Chemistry Catalysis Chemical Biology and medicinal chemistry Computational Chemistry and Machine Learning Energy and sustainable chemistry Environmental Chemistry Green Chemistry Inorganic Chemistry Materials Chemistry Nanoscience Organic Chemistry Physical Chemistry Polymer Chemistry Supramolecular Chemistry










![(2S)-2-({[(2-Methyl-2-propanyl)oxy]carbonyl}amino)-4-pentynoic acid structure (2S)-2-({[(2-Methyl-2-propanyl)oxy]carbonyl}amino)-4-pentynoic acid structure](https://static.chemtradehub.com/structs/630/63039-48-5-b66d.webp)



![N-[(E)-Phenylmethylene]benzenesulfonamide structure N-[(E)-Phenylmethylene]benzenesulfonamide structure](https://static.chemtradehub.com/structs/139/13909-34-7-8167.webp)