What absorbs at 3124 cm⁻¹ in an FTIR spectrum?
A band near 3124 cm⁻¹ can point to several functional groups. Below are the most likely assignments, ranked by how much published evidence supports each — every one traceable to literature (DOI) and cross-validated against our 130,000+ reference spectra and knowledge graph.
Backed by 5 cited sources
Stutt svar
A band near 3124 cm⁻¹ is usually interpreted by checking which functional groups repeatedly co-occur there in the literature, then confirming at least one or two additional peaks in the same sample. This page ranks those assignments by accumulated evidence rather than by a single fixed textbook rule.
Mögulegar úthlutun virkra hópa
| Virkur hópur | Stuðningsstaðreyndir | Tilvitnuð heimildir | Mesta öryggi |
|---|---|---|---|
| N h | 3 | 3 | 1,0 |
| Hydroxyl (O-H) | 2 | 2 | 1,0 |
| Fluorine (C-F) | 1 | 1 | 1,0 |
| Water (H2O) | 1 | 1 | 1,0 |
Röðun endurspeglar uppsöfnuð ritrýnisgögn, ekki eina valdboðsreglu. Staðfestu alltaf í samhengi við sýnið þitt.
Möguleg efni
| Efni | Stuðningstindar | Skarast hópar | Tilvitnuð heimildir |
|---|---|---|---|
| hematite | 3124, 1030, 469 | Hydroxyl (O-H), Water (H2O) | 1 |
| goethite | 3124, 1470, 696 | Hydroxyl (O-H), N h | 1 |
Efni birtast aðeins þegar sama bókmenntasafn styður þessa band og að minnsta kosti einn viðbótar einkennandi hámark.
Rófrök
This band becomes meaningful only when read with its neighboring peaks. In practice, analysts first look at the assignments above, then check whether the same sample also shows other peaks expected for the same structural motif. A lone band near 3124 cm⁻¹ is usually not enough for material identification by itself.
Raunveruleg notkun
Þessi tegund fyrirspurna er algeng við auðkenningu fjölliða, skimun óþekktra plasttegunda, bilanaleit í gæðaeftirliti, staðfestingu endurunnins efnis og bókmenntabakkaða endurskoðun á hápunktum.
Algeng mistök
- Meðhöndla eina einangraða öldulengd sem sönnun á efni án þess að athuga að minnsta kosti einn eða tvo stuðningstoppa.
- Hunsa skörun: mörg virkir hópar geta lagt sitt af mörkum nálægt sömu bylgjutölunni.
- Að sleppa staðfestingu þegar aukefni, blöndur, oxun eða mengun geta brenglað litrófið.
Staðfestingarráðgjöf
Þegar tvíræðni er eftir, staðfestu tilgátuna með DSC, GC-MS eða TGA, sérstaklega fyrir blöndur, niðurbrotin sýni og fylltar fjölliður.
Ritlist á bak við þessar úthlutanir
-
Hydroxyl (O-H) öryggi 1,0
“560cm-1[10-11], 3According to Figure 3, there are a Sn-OH vibration peak at NO vibration peaks at 1384cm-1 1637cm-1[12] 3124cm-1, and and a -OH vibration peak of water at which demonstrates that a 3small amount of adsorbed water and NO ions”
Liu 等 - 2012 - Preparation and Properties of Gd and Sb Doped SnO2 DOI: 10.4028/www.scientific.net/AMR.528.50 -
Hydroxyl (O-H) öryggi 1,0
“FTIR spectroscopy Mössbauer spectroscopy d-OH indicated that goethite of type 1 is characterized by the presence of the band between 799 Iron ores 802cm(cid:3)1, 904cm(cid:3)1 c-OH the between 898 and and the bulk hydroxyl stretch between 3”
Spectroscopic characterization of iron ores formed in different geological environments using FTIR, XPS, Mössbauer spectroscopy and thermoanalyses DOI: 10.1016/j.saa.2014.10.090 -
öryggi 1,0
“The FTIR spectra of 5 was charactercm(cid:1)1, N-H cm(cid:1)1, C¼O C-F niosomes(without5-FU)wasshowntoexhibitincreasedCI,showingrapid ized by stretch at 3123.5 bend at 1651.2 8 O.L.”
The effect of noisome preparation methods in encapsulating 5-fluorouracil and real time cell assay against HCT-116 colon cancer cell line DOI: 10.1016/j.heliyon.2022.e12369 -
öryggi 1,0
“Moreover, the FTIR analyses showed an intensity reduction in the functional groups of Thus, optical ellipsometry analysis of non-encapsulated MAPbI samples showed a 3 decrease in the absorbance of the samples from 400 nm to 700 nm, whereas”
Characterization of a New Low Temperature Encapsulation Method with Ethylene-Vinyl Acetate under UV Irradiation for Perovskite Solar Cells DOI: 10.3390/app12105228 -
N h öryggi 0,9
“Free ligand stretching vibrations.”
Czylkowska 等 - 2020 - Synthesis, Spectroscopic, Thermal and Catalytic Pr DOI: 10.3390/ma13143217
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