In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route to make new nanocomposite materials. However, developing a deeper understanding of the design rules underpinning this strategy is highly desirable. In particular, controlling the spatial distribution of the guest nanoparticles within the host crystalline matrix remains a formidable challenge. Herein, we show that the surface chemistry of the guest nanoparticles and the [Ca 2+ ] concentration play critical roles in determining the precise spatial location of the nanoparticles within calcite crystals. Moreover, in situ studies provide important mechanistic insights regarding surface‐confined nanoparticle occlusion. Overall, this study not only ...
We report a versatile ‘Trojan Horse’ strategy using highly anionic poly(methacrylic acid)-poly(benzy...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
A facile one-pot method is described for the formation of novel heterostructures in which inorganic ...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
This article describes an experimentally versatile strategy for producing inorganic/ organic nanocom...
Single crystals containing nanoparticles represent a unique class of nanocomposites whose properties...
Conspectus In principle, the incorporation of guest nanoparticles within host crystals should pro...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
We report a versatile ‘Trojan Horse’ strategy using highly anionic poly(methacrylic acid)-poly(benzy...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
A facile one-pot method is described for the formation of novel heterostructures in which inorganic ...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
This article describes an experimentally versatile strategy for producing inorganic/ organic nanocom...
Single crystals containing nanoparticles represent a unique class of nanocomposites whose properties...
Conspectus In principle, the incorporation of guest nanoparticles within host crystals should pro...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...
Polymerization-induced self-assembly (PISA) offers a highly versatile and efficient route to a wide ...
We report a versatile ‘Trojan Horse’ strategy using highly anionic poly(methacrylic acid)-poly(benzy...
Nanoparticle occlusion within growing crystals is of considerable interest because (i) it can enhanc...
A facile one-pot method is described for the formation of novel heterostructures in which inorganic ...