Results 171 to 180 of about 3,441,284 (367)
Liquid crystalline inverted lipid phases and reverse micelles are self‐assembled lipid nanostructures that enhance the solubility, stability, and delivery of diverse therapeutics. This review integrates their physicochemical principles, formulation strategies, drug loading mechanisms, and biomedical applications, highlighting their growing ...
Numan Eczacioglu +3 more
wiley +1 more source
Block Copolymers: Emerging Building Blocks for Additive Manufacturing
This review addresses how block copolymer (BCP) physics and rheology have led to the widespread use of BCPs in advanced additive manufacturing techniques, with particular emphasis on the untapped potential of these nanostructured materials toward achieving multi‐scale architected materials with unique, programmable material properties.
Alice S. Fergerson +3 more
wiley +1 more source
The Process and Mechanism of Preparing Nanoporous Silicon: Helium Ion Implantation. [PDF]
Wang J, Zhu K, Wu X, Cheng G, Zheng R.
europepmc +1 more source
Surface Layer Modification of Materials by Ion Implantation
Masaya Iwaki
openalex +2 more sources
Real‐Time, Label‐Free Monitoring of Cell Behavior on a Bioelectronic Scaffold
A bioelectronic nanofibrous scaffold is introduced that supports cell growth while enabling real‐time, label‐free monitoring of cellular behavior through impedance measurements. The system correlates electrical signals with cell viability and surface coverage, offering an integrated platform for studying dynamic biological processes and advancing next ...
Dana Cohen‐Gerassi +10 more
wiley +1 more source
Understanding the Microstructure Evolution of 8Cr4Mo4V Steel under High-Dose-Rate Ion Implantation. [PDF]
Miao B +5 more
europepmc +1 more source
Suppression of self-interstitials in silicon during ion implantation via in-situ photoexcitation
J. Ravi +5 more
openalex +2 more sources
Electrical Properties of Ion Implanted Layers in Silicon and Gallium Arsenide
R. Pashley
openalex +1 more source
This study demonstrates coherent control of 15N nuclear spins coupled to VB−${\text{V}}_{\text{B}}^{-}$ centers in isotope‐enriched hexagonal boron nitride. Selective addressing via spin‐state mixing enables Rabi driving, quantum gates, and coherence times exceeding 10 μs$\umu{\rm s}$.
Adalbert Tibiássy +6 more
wiley +1 more source

