Contents list
文献情報
The first page of this article is displayed as the abstract.
関連文献
IF 6.367
Co-production of pure hydrogen, carbon dioxide and nitrogen in a 10 kW fixed-bed chemical looping systemIF 6.367
Interfacial engineering of a polymer–MOF composite by in situ vitrificationIF 6.222
Sensitive and specific detection of tumour cells based on a multivalent DNA nanocreeper and a multiplexed fluorescence supersandwichIF 6.222
Increasing efficiency of perovskite solar cells using low concentrating photovoltaic systemsIF 6.367
Catalogue of self-targeting nano-medical inventions to accelerate clinical trialsIF 6.843
Near infrared light activation of an injectable whole-cell cancer vaccine for cancer immunoprophylaxis and immunotherapyIF 6.843
Three-terminal III–V/Si tandem solar cells enabled by a transparent conductive adhesiveIF 6.367
Nickel-containing N-doped carbon as effective electrocatalysts for the reduction of CO2 to CO in a continuous-flow electrolyzerIF 6.367
Visible light-driven cross-coupling reactions of alkyl halides with phenylacetylene derivatives for C(sp3)–C(sp) bond formation catalyzed by a B12 complexIF 6.222
掲載誌
Biomaterials Science

Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions. Papers do not necessarily need to report a new biomaterial but should provide novel insight into the biological applications of the biomaterial. Articles that primarily focus on demonstrating novel materials chemistry and bring a molecular picture to bear on a given material’s suitability as a biomaterial are more suited to our companion journal, Journal of Materials Chemistry B. Biomaterials Science publishes primary research and review-type articles in the following areas: molecular design of biomaterials, including translation of emerging chemistries to biomaterials science of cells and materials at the nanoscale and microscale materials as model systems for stem cell and human biology materials for tissue engineering and regenerative medicine (Nano)materials and (nano)systems for therapeutic delivery interactions at the biointerface biologically inspired and biomimetic materials, including bio-inspired self-assembly systems and cell-inspired synthetic tools next-generation biomaterials tools and methods