Results 141 to 150 of about 4,482,554 (293)
Surface plasmons interference nanogratings: wafer-scale laser direct structuring in seconds. [PDF]
Geng J, Yan W, Shi L, Qiu M.
europepmc +1 more source
Chiral plasmonic printing uses CPL as a chiral stimulus to guide asymmetric Ag deposition on chiral Au NRs seeds. Under CPL, hot carriers reduce Ag+, and the process is controlled by both the CPL handedness and the chiral SPR. L‐dc Au generates more hot electrons under LCP than RCP, while D‐dc Au shows the opposite, revealing chiral photon‐selective ...
Yaxin Cao +6 more
wiley +1 more source
Reconfigurable Parametric Amplifications of Spoof Surface Plasmons. [PDF]
Gao X +6 more
europepmc +1 more source
Aberrant GALNT7‐mediated O‐GalNAcylation stabilizes TAZ to drive gallbladder cancer progression through a feed‐forward transcriptional loop. Structure‐based screening identifies Olaparib as a potent GALNT7 antagonist that disrupts this oncogenic axis, providing an immediate therapeutic strategy for this aggressive malignancy.
Peng Qiu +11 more
wiley +1 more source
Enhancement of Terahertz Radiation by Surface Plasmons Based on CdTe Thin Films. [PDF]
Kong H, Huang L, Li M, Zhang L, Zeng H.
europepmc +1 more source
Combining template stripping with a graphene‐inspired transfer yields continuous, transferable gold films at 6‐inch wafer scale with thicknesses approaching the atomic limit. The atomically smooth, near‐bulk‐quality films offer above 86% transmittance and sub‐20 Ω/square sheet resistance, serving as a universal platform for flexible optoelectronics ...
Dmitry Yakubovsky +24 more
wiley +1 more source
Strong Coupling between Localized Surface Plasmons and Molecules by Coupled Cluster Theory. [PDF]
Fregoni J +5 more
europepmc +1 more source
Cell‐Selective Delivery of RIBOTACs via an Anti‐EGFR Nanobody for Pancreatic Cancer Treatment
This study introduces an innovative strategy for the tumor‐selective catalytic degradation of oncogenic non‐coding RNA by interfacing a ribonuclease‐recruiting small molecule (RIBOTAC) with an EGFR‐targeting nanobody via a CTSB (Cathepsin B)‐responsive linker.
Tianli Luo +15 more
wiley +1 more source
Plasmon-exciton coupling effect plays a crucial role in light emission and quantum control, which, however, has not been reported in nonmetallic systems until now.
Hua Lu +7 more
doaj +1 more source
GCs reduce Parkin, leading to ACSL4 accumulation and PUFA‐phospholipid‐driven ferroptosis in BMSCs, which impairs osteogenesis and promotes adipogenesis, causing GIOP. Parkin restoration (via OE‐Parkin or Parkin‐LNP@DSS6) ubiquitinates and degrades ACSL4, inhibiting ferroptosis, rescuing bone formation, and rescues GIOP bone loss.
Li‐jiang Han +16 more
wiley +1 more source

