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High‐performance microwave absorption (MA) materials have attracted more and more attention because they can effectively prevent microwave radiation and interference from electronic devices. Herein, a new type of MA composite is constructed by introducing carbon nanotubes (CNTs)‐anchored metal–organic framework derivatives (MOFDs) into a conductive carbon nanocoil (CNC) network, denoted as CNC/CNT‐MOFD...
Nanomaterials with enzyme mimetic activity have attracted extensive attention, especially in the regulation of their catalytic activities by biomolecules or other polymers. Here, a covalent organic framework (Tph‐BT COF) with excellent photocatalytic activity is constructed by Schiff base reaction, and its mimetic oxidase activity and peroxidase activity is inversely regulated via single‐stranded...
Chiral organic−inorganic hybrid metal halide materials have shown great potential for circularly polarized luminescence (CPL) related applications for their tunable structures and efficient emissions. Here, this work combines the highly emissive Cu4I4 cubane cluster with chiral organic ligand R/S‐3‐quinuclidinol, to construct a new type of 1D Cu‐I chains, namely Cu4I4(R/S‐3‐quinuclidinol)3, crystallizing...
Solid‐state alkaline metal batteries are highly sought out for their improved energy density and security over the current lithium‐ion batteries. However, their practical application is heavily hindered by the interfacial issues originating from the solid electrolyte/electrode mismatch. This work demonstrates that a CuO coating layer as an active interphase can thoroughly promote the intimate contact...
Improving the precise accumulation and retention of nanomedicines in tumor cells is one of the keys to effective therapy of tumors. Herein, supramolecular peptides capped Au nanocages (AuNCs) that may self‐aggregate into micron‐sized clusters intracellularly in response to spermine (SPM), leading to specific accumulation and retention of AuNCs in SPM‐overexpressed tumor cells, are developed. In this...
Breast Cancer Therapy
In article number 2201971, Ruibing Wang and co‐workers develop supramolecular peptide (based upon the host–guest interaction between cucurbit[7]uril and Phe‐Phe‐Val‐Leu‐Lys) capped Au nanocages, to allow self‐aggregation into micron‐sized clusters inside spermine‐overexpressed tumor cells, leading to specific accumulation and retention of Au nanocages in breast tumor for synergistic...
Solid‐state metal batteries are attracting unprecedented concern because of their high energy density and safety. However, their service life, especially at high specific density, is hindered by the undesirable reversibility of metal anodes, owing to the inhomogeneous ion distribution and awkward charge transfer dynamics at the electrode/electrolyte interface. In this work, it is well demonstrated...
Inorganic nanomedicine has attracted increasing attentions in biomedical sciences due to their excellent biocompatibility and tunable, versatile functionality. However, the relatively poor accumulation and retention of these nanomedicines in targeted tissues have often hindered their clinical translation. Herein, highly efficient, targeted delivery, and in situ aggregation of ferrocene (Fc)‐capped...
The precise accumulation and extended retention of nanomedicines in the tumor tissue has been highly desired for cancer therapy. Here a novel supramolecular‐peptide derived nanodrug (SPN) that can be transformed to microfibers in response to intracellular polyamine in cancer cells for significantly enhanced tumor specific accumulation and retention is developed. The supramolecular‐peptide is constructed...
Advanced inorganic solid electrolytes (SEs) are critical for all‐solid‐state alkaline metal batteries with high safety and high energy densities. A new interphase design to address the urgent interfacial stability issues against all‐solid‐state sodium metal batteries (ASSMBs) is proposed. The grain boundary phase of a Mg2+‐doped Na3Zr2Si2PO12 conductor (denoted as NZSP‐xMg) is manipulated to introduce...
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