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Fluorescence Modulation of Graphene Quantum Dots Near Structured Silver Nanofilms
Chae, Weon-Sik,Yun, Jungheum,Nam, Sang-Hyeon,Lee, Sang-Geul,Yang, Won-Geun,Yoon, Hyewon,Park, Minsu,Jeon, Seokwoo American Chemical Society 2018 ACS APPLIED MATERIALS & INTERFACES Vol.10 No.16
<P>Here, we study the plasmonic metal-enhanced fluorescence properties of blue-emitting graphene quantum dots (GQDs) and green-emitting graphene oxide quantum dots (GOQDs) using fluorescence lifetime imaging microscopy. Reactive ion sputtered silver (Ag) on zinc oxide (ZnO) thin films deposited on silicon (Si) wafers are used as the substrates. The morphology of the sputtered Ag gradually changes from nanoislands, via and elongated network and a continuous film with nanoholes, to a continuous film with increasing sputtering time. The fluorescence properties of GQD and GOQD on the Ag are modulated in terms of the intensities and lifetimes as the morphology of the Ag layers changes. Although both GQD and GOQD show similar fluorescence modulation on the Ag nanofilms, the fluorescence of GQD is enhanced, whereas that of GOQD is quenched due to the charge transfer process from GOQD to ZnO. Moreover, the GQD and GOQD exhibit different fluorescence lifetimes due to the effect of their electronic configurations. The theoretical calculation explains that the fluorescence amplification on the Ag nanofilms can largely be attributed to the enhanced absorption mechanism arising from accumulated optical fields around nanogaps and nanovoids in the Ag nanofilms.</P> [FIG OMISSION]</BR>
Sung Chun Chae,Kyung Il Min,Hyung Soo Kim,Nam-Jin Kim,Jun-Ran Kim,Bong Ki Son,Young-Joon Ahn 한국응용곤충학회 2012 한국응용곤충학회 학술대회논문집 Vol.2012 No.05
An assessment was made of the biological control potential of mud loaches, Misgurnus mizolepis, toward Culex pipiens molestus, in laboratory condition and septic tank and rainwater storage tank (RST) systems. Results were compared with those of temephos 20% emulsifiable concentrate (EC) and Bacillus thuringiensis israelensis (BTI). In the laboratory tests, all M. mizolepis survived on waters from the settling tank of aerobic septic tank (AST), sump tank of AST, and RST. However, all M. mizolepis died within 3 h after introduction in the settling tank and sump tank waters of anaerobic septic tank (AnAST). Gill or dorsal fin inflammation was detected in the dead mud loaches. M. mizolepis consumed an average of 968–1087, 901–986, and 993–1087 of 1500 third instars of Cx. p. molestus in AST settling tank, AST sump tank, and RST waters, respectively. In the AST and RST systems, predation of Cx. p. molestus by mud loaches at a release rate of 900 larvae/fish resulted in complete mosquito control from the first wk after treatment through the end of the survey period for 16 wk. The average mosquito reduction rates by temephos 20% EC and BTI treatments were 28.6 and 2.1% 2 wk post-treatment, respectively. Mud loaches merit further study as a potential biological control agent for the control of mosquito populations in light of global efforts to reduce the level of highly toxic synthetic insecticides in the aquatic environment.
Spontaneous Electrical Activity in Cerebellar Purkinje Neurons of Postnatal Rats
Nam, Sang-Chae The Korean Society of Pharmacology 1997 The Korean Journal of Physiology & Pharmacology Vol.1 No.4
Although cerebellar Purkinje cells display spontaneous electrical activity in vivo and in slice experiments, the mechanism of the spontaneous activity generation has not been clearly understood. The aim of this study was to investigate whether cerebellar Purkinje cells of postnatal rats generate spontaneous electrical activity without synaptic inputs. Dissociated cerebellar Purkinje cells were used for reducing synaptic inputs in the present study. Cerebellar Purkinje cells with dendrites were dissociated from postnatal rats using enzymatic treatment followed by mechanical trituration. Spontaneous electrical activities were recorded from dissociated cells without any stimulus using whole-cell patch clamp configuration. Two types, spontaneously firing or quiescent, of dissociated Purkinje cells were observed in postnatal rats. Both types of cells were identified as Purkinje cells using immunocytochemical staining technique with anti-calbindin after recording. Spontaneously active cells displayed two patterns of firing, repetitive and burst firings. Two thirds of dissociated Purkinje cells displayed repetitive firing and the rest of them did burst firing under same recording condition. Repetitive firing activities were maintained even after further isolation using either physical or pharmacological techniques. Neither high magnessium solution nor excitatory synaptic blockers, AP-5 and DNQX, block the spontaneous activity. These results demonstrate that spontaneous electrical activity of isolated cerebellar Purkinje cells in postnatal rats is generated by intrinsic membrane properties rather than synaptic inputs.