Results 161 to 170 of about 238 (213)

A Naphthalimide‐Based NIR‐Emissive AIE Photosensitizer for Synergistic Apoptosis/Ferroptosis‐Mediated Antitumor Therapy and Broad‐Spectrum Bacterial Inactivation With Rapid Wound Healing

open access: yesAdvanced Healthcare Materials, EarlyView.
An ionic naphthalimide AIE photosensitizer (PS), TPAPV‐NIM‐M, anchors to cellular and bacterial membranes, emits in the far‐red/near‐infrared (NIR) region, and efficiently generates reactive oxygen species (ROS) under white light. Its membrane‐localized photodynamic action drives apoptosis/ferroptosis‐mediated tumor suppression and broad‐spectrum ...
Sayed Mir Sayed   +3 more
wiley   +1 more source

The Dense Plasma Focus: A Versatile Dense Pinch for Diverse Applications

IEEE Transactions on Plasma Science, 2012
The dense plasma focus (DPF) is a Z-pinch that has been studied for 50 years. Within ten years of its discovery by Fillipov and Fillipova in Russia and Mather in the USA, this dense pinch was scaled up to 2-MA currents and neutron outputs of ~ 1012/pulse.
Mahadevan Krishnan
exaly   +2 more sources

Dense-plasma spheromak in plasma focus experiments

International Conference on Plasma Science (papers in summary form only received), 1995
Summary form only given, as follows. Experimental evidence is presented for the formation, formerly predicted, of a closed, spheromak-like magnetic configuration (SLMC) by the plasma-focus-self-transformed magnetic field. The SLMC formation is characterized by (1) self-consistent generation of a poloidal magnetic field (the dynamo effect); (2) strong ...
A.B. Kukushkin   +2 more
openaire   +1 more source

A pulse current generator for dense plasma focus

Journal of Instrumentation, 2021
Abstract A pulse current generator applied in a type of high-yield intense pulsed neutron source, the Dense Plasma Focus (DPF), is designed and developed in this paper. There are three key components in this generator. Each group of capacitors and switches is integrative to meet the DPF's requirements of low circuit inductance.
H. Xi   +4 more
openaire   +1 more source

Dense Plasma Focus Source

2010
With the emergence of EUVL as the chosen technology for next-generation lithography (NGL) systems, significant effort has been spent in developing light sources consistent with the challenging requirements of the scanner manufacturers as well as meeting the aggressive demands of the end users for high-volume manufacturing (HVM).
Igor Fomenkov   +8 more
openaire   +1 more source

Dynamics of a microscale dense plasma focus

2011 Abstracts IEEE International Conference on Plasma Science, 2011
Experimental results are presented for a sub-millimeter dense plasma focus (DPF). Reducing the DPF from cm to µm sizes allows for unique applications such as portable neutron based detectors. With smaller size efficiency is expected to increase, but total neutron emission will be lower.
W. Pollard, A. Duggleby, D. Staack
openaire   +1 more source

The nitriding of aluminium by dense plasma focus

Plasma Sources Science and Technology, 2006
High current, short length nitrogen ion beam pulses emanating from a low energy (1.8 kJ) Mather type plasma focus device are utilized for room temperature surface nitriding of aluminium specimens. X-ray diffraction (XRD), scanning electron microscopy and microhardness are used to study the surfaces of untreated and treated specimens.
Mehboob Sadiq   +3 more
openaire   +1 more source

Ion Heating in the Dense Plasma Focus

The Physics of Fluids, 1971
The collapse phase of a dense plasma focus gun operating in deuterium was studied using streak photography and time resolved x-ray and neutron measuring techniques. The streak photographs, showing the radial motion of the luminous front at various axial positions, indicate a collapsing luminous front at the time of the current collapse followed by an ...
A. J. Toepfer   +2 more
openaire   +1 more source

Characteristics of the Dense Plasma Focus Discharge

The Physics of Fluids, 1968
The dense plasma focus discharge is produced in a hydromagnetic coaxial plasma accelerator. The final heating and compression of the plasma is accomplished by a partial conversion of the stored magnetic energy residing in the region behind the current sheath to plasma energy.
Joseph W. Mather, Paul J. Bottoms
openaire   +1 more source

Neutronics of a Dense-Plasma Focus—An Investigation of a Fusion Plasma

Nuclear Science and Engineering, 1977
Experimental work on the dense-plasma focus device Julich I is presented. The main objective of this program was the development of a neutron source for controlled thermonuclear reactor application...
P. Cloth, H. Conrads
openaire   +1 more source

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