Wayne G Wamer
Overview
Explore the profile of Wayne G Wamer including associated specialties, affiliations and a list of published articles.
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Articles
35
Citations
720
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0
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Recent Articles
1.
Chen C, Fan S, Li C, Chong Y, Tian X, Zheng J, et al.
J Mater Chem B
. 2020 Apr;
4(48):7895-7901.
PMID: 32263780
The development and application of nanomaterials as consumer products including food, drugs, and cosmetics are rapidly expanding. However, interactions between these novel materials and other chemical components of consumer products...
2.
Ge C, Fang G, Shen X, Chong Y, Wamer W, Gao X, et al.
ACS Nano
. 2016 Dec;
10(11):10436-10445.
PMID: 27934089
To develop nanomaterials as artificial enzymes, it is necessary to better understand how their physicochemical properties affect their enzyme-like activities. Although prior research has demonstrated that nanomaterials exhibit tunable enzyme-like...
3.
Chong Y, Ge C, Fang G, Tian X, Ma X, Wen T, et al.
ACS Nano
. 2016 Sep;
10(9):8690-9.
PMID: 27584033
Graphene quantum dots (GQDs), zero-dimensional carbon materials displaying excellent luminescence properties, show great promise for medical applications such as imaging, drug delivery, biosensors, and novel therapeutics. A deeper understanding of...
4.
Wen T, Wamer W, Subczynski W, Hou S, Wu X, Yin J
Sci Rep
. 2016 Apr;
6:24101.
PMID: 27071507
Electron spin resonance (ESR) spectroscopy was used to investigate the switchable, light-dependent effects of gold nanorods (GNRs) on paramagnetic properties of nitroxide spin probes. The photoexcited GNRs enhanced the spin-spin...
5.
Liu Y, Wu H, Chong Y, Wamer W, Xia Q, Cai L, et al.
ACS Appl Mater Interfaces
. 2015 Aug;
7(35):19709-17.
PMID: 26305170
Although enzyme-like nanomaterials have been extensively investigated over the past decade, most research has focused on the peroxidase-like, catalase-like, or SOD-like activity of these nanomaterials. Identifying nanomaterials having oxidase-like activities...
6.
He W, Jia H, Yang D, Xiao P, Fan X, Zheng Z, et al.
ACS Appl Mater Interfaces
. 2015 Jul;
7(30):16440-9.
PMID: 26158231
The ability of nanostructures to facilitate the generation of reactive oxygen species and charge carriers underlies many of their chemical and biological activities. Elucidating which factors are essential and how...
7.
Li M, He W, Liu Y, Wu H, Wamer W, Lo Y, et al.
J Agric Food Chem
. 2014 Nov;
62(49):12052-60.
PMID: 25393426
When exposed to light, TiO2 nanoparticles (NPs) become photoactivated and create electron/hole pairs as well as reactive oxygen species (ROS). We examined the ROS production and degradation of a widely...
8.
He W, Wu H, Wamer W, Kim H, Zheng J, Jia H, et al.
ACS Appl Mater Interfaces
. 2014 Aug;
6(17):15527-35.
PMID: 25116236
An effective way for promoting photocatalytic activity of a semiconductor is deposition of noble metal nanoparticles (NPs) onto it. In this paper, we deposited Ag and Pd onto ZnO NPs...
9.
Wu H, Yin J, Wamer W, Zeng M, Lo Y
J Food Drug Anal
. 2014 Mar;
22(1):86-94.
PMID: 24673906
Nano-iron metal and nano-iron oxides are among the most widely used engineered and naturally occurring nanostructures, and the increasing incidence of biological exposure to these nanostructures has raised concerns about...
10.
Li M, Yin J, Wamer W, Lo Y
J Food Drug Anal
. 2014 Mar;
22(1):76-85.
PMID: 24673905
Titanium dioxide nanoparticles (TiO(2) NPs) are one of the most widely used nanomaterials that have been manufactured worldwide and applied in different commercial realms. The well-recognized ability of TiO(2) to...