Concept · chemistry
Nanomaterials
Follow Nanomaterials — see important new research and changes in evidence.Change log
What changed
Dated edits to this page's evidence: studies added or removed from a claim, claims added or withdrawn, and new explanations tagged here. Rewordings are not listed.
- Concept page published
Nanomaterials are solids whose function depends on size, shape, surface or porosity at the nanometre scale — particles, sheets, frameworks or aerogels.
Undergraduate inorganic and materials chemistry now lives here: catalysis, sensing and energy storage are surface chemistry.
Evidence
What the evidence shows
Drawn from 12 studies in this library. Each finding starts with a plain-language takeaway, then the denser detail. Supports means evidence for a finding; Challenges means evidence against a stated position; Qualifies marks scope with a short note on each study’s contribution. Challenged positions are labeled — they are not findings.
This library holds 12 empirical chemistry papers on nanomaterials with isolated findings, rates or spectra rather than reviews.
- XPS and SIMS map thioglucose SAMs on gold
- Gold chloride cluster anions grow as zigzag chains
- Microwave phage carbons glow and sense Fe3+
Study Role Design N Population Outcome XPS and SIMS map thioglucose SAMs on gold Supports OtherXPS/ToF-SIMS of thio-glucose on AuNPs and Au films before/after maltose-binding protein Surface-chemistry analysis of ~15 nm AuNPs — no sample N Thio-glucose–functionalized gold nanoparticles and films Bound vs unbound thiol fractions and protein uptake differences Gold chloride cluster anions grow as zigzag chains Supports Computational / modellingLDI-TOF of HAuCl4 with global-search structures of Au_nCl_{n+3}– clusters Gas-phase cluster mass spectrometry plus DFT — no sample N Gold chloride cluster anions Au_nCl_{n+3}– Lowest-energy structures and exergonic growth pathway R1 Microwave phage carbons glow and sense Fe3+ Supports OtherMicrowave conversion of denatured M13 phage into fluorescent nanoparticles for Fe3+ sensing Materials/analytical probe study — no sample N M13 phage–derived fluorescent nanoparticles Fluorescence quantum yield and Fe3+ LOD Thio-glucose binds gold through Au–S; flat films pack better than citrate AuNPs, and ToF-SIMS sees TG–MBP pocket fragments.
LDI-MS detects Au_nCl_{n+3}– anions whose lowest isomers are zigzag chains starting from AuCl4–, growing exergonically by about 41–44 kcal mol–1.
M13 bacteriophage carbonized in a 700 W microwave gives fluorescent nanoparticles (QY 14.8%) that quench with Fe3+ down to an 8.0 μM LOD.
Anatase TiO2 grown in silica aerogels, then Ag@Au nanoshells, adsorbs and photocatalyzes rhodamine B far better than TiO2 powder.
Open questions
Tensions and limits
Some items are genuine disagreements on the same question. Others mark different assays, populations, or outcomes — limits on how far one study travels — not a forced fight between papers.
Size and support change activity as much as composition; a TEM image is not a mechanism.
Study Role Design N Population Outcome XPS and SIMS map thioglucose SAMs on gold Supports OtherXPS/ToF-SIMS of thio-glucose on AuNPs and Au films before/after maltose-binding protein Surface-chemistry analysis of ~15 nm AuNPs — no sample N Thio-glucose–functionalized gold nanoparticles and films Bound vs unbound thiol fractions and protein uptake differences Gold chloride cluster anions grow as zigzag chains Supports Computational / modellingLDI-TOF of HAuCl4 with global-search structures of Au_nCl_{n+3}– clusters Gas-phase cluster mass spectrometry plus DFT — no sample N Gold chloride cluster anions Au_nCl_{n+3}– Lowest-energy structures and exergonic growth pathway R1
Common misconceptions
Smaller nanoparticles are always better catalysts.
Surface structure, poisoning and mass transport often dominate size.
Exam-style questions
Short-answer questions that ask you to explain or compare, not recall.
What does nanomaterials mean in this chemistry library?
Nanomaterials are solids whose function depends on size, shape, surface or porosity at the nanometre scale — particles, sheets, frameworks or aerogels.
Name one empirical finding from the nanomaterials papers.
Thio-glucose binds gold through Au–S; flat films pack better than citrate AuNPs, and ToF-SIMS sees TG–MBP pocket fragments.
What is a limit of nanomaterials evidence here?
Size and support change activity as much as composition; a TEM image is not a mechanism.
The studies
12 studies in this library bear on Nanomaterials, ordered by citations. The first 8 are shown.
- XPS and SIMS map thioglucose SAMs on gold
Thio-glucose binds gold through Au–S; flat films pack better than citrate AuNPs, and ToF-SIMS sees TG–MBP pocket fragments.
- Stirring time sets GSH-capped silver nanoparticle size
Glutathione reduces AgNO3 at 60 °C; longer stirring grows spherical Ag nanoparticles from about 3 to 6 nm.
- Gamma-made Ag–Se nanoparticles carrying cefotaxime
Radiolytic Ag, Se, and Ag–Se nanoparticles (about 11–21 nm) are characterized and loaded with cefotaxime for synergistic antimicrobial tests.
- NH4OH tunes silica dots from 20 to 500 nm
Varying ammonia in a Stöber synthesis sizes silica nanoparticles from 20 to 200 nm (then 500 nm with extra TEOS), enabling core–shell TAMRA–BHQ2 quenching studies over unusually long distances.
- Microwave phage carbons glow and sense Fe3+
M13 bacteriophage carbonized in a 700 W microwave gives fluorescent nanoparticles (QY 14.8%) that quench with Fe3+ down to an 8.0 μM LOD.
- Glycerol tunes silver nanoparticle size
Silver nitrate reduced in 10–100% glycerol with PVP at room temperature gives plasmonic Ag nanoparticles from ultra-small (~1.8 nm) up to ~160 nm.
- Blackberry-leaf silver nanoparticles against plant pathogens
Rubus fruticosus extract reduces Ag+ to 50–120 nm AgNPs (SPR 449 nm) that fully inhibit two phytopathogens at the highest dose.
- Janus micromotors as tiny nanoparticle factories
Self-propelled Janus particles loaded with Cd2+ or citrate make CdS quantum dots or gold nanoparticles in microliter volumes within 15 minutes.
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- Plasmonic SiO2/TiO2 aerogels degrade RhB
Anatase TiO2 grown in silica aerogels, then Ag@Au nanoshells, adsorbs and photocatalyzes rhodamine B far better than TiO2 powder.
- Sputtering Pt onto PEG to make fuel-cell catalysts
Pt sputtered onto liquid PEG, then heat-transferred onto carbon, gives bimodal nanoparticles whose larger population drives ORR activity.
- Gold chloride cluster anions grow as zigzag chains
LDI-MS detects Au_nCl_{n+3}– anions whose lowest isomers are zigzag chains starting from AuCl4–, growing exergonically by about 41–44 kcal mol–1.
- Many silicatein mutants together make better nanoceria
Evolving silicatein for ceria biomineralization never yielded one champion sequence; mixed truncated mutants and intact catalytic-triad knockouts still mineralize, implying synergistic mosaicism.
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