What absorbs at 3612 cm⁻¹ in an FTIR spectrum?
A band near 3612 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
Iespējamie funkcionālo grupu piešķīrumi
| Funkcionālā grupa | Atbalstošie fakti | Citētie avoti | Augstākā pārliecība |
|---|---|---|---|
| Hydroxyl (O-H) | 5 | 5 | 1,0 |
| Water (H2O) | 1 | 0 | 1,0 |
Rangs atspoguļo uzkrātos literatūras pierādījumus, nevis vienu autoritatīvu noteikumu. Vienmēr apstipriniet atbilstoši parauga kontekstam.
Literatūra aiz šiem piešķīrumiem
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Hydroxyl (O-H) pārliecība 1,0
“The polarizations cm-1 of the OH bands at 3612, 3578, 3566, 3551, 3477 are well constrained.”
Liu 等 - 2019 - In Situ Infrared Spectra for Hydrous Forsterite up DOI: 10.3390/min9090512 -
Hydroxyl (O-H) pārliecība 1,0
“The solubility in on absorption bands around 3700-3400 cm-1 water and the atomic radius were the main fac- [23] and hydroxyl stretching vibration at 3612 tors that result in the low levels of potassium”
Natural Clay of Pasaman Barat Enriched by CaO of Chicken Eggshells as Catalyst for Biodiesel Production DOI: 10.9767/bcrec.15.3.8097.662-673) -
Hydroxyl (O-H) pārliecība 1,0
“LLM confirmed rule peak-group candidate”
Foliar Application of Nanoclay Promotes Potato (Solanum tuberosum L.) Growth and Induces Systemic Resistance against Potato Virus Y DOI: 10.3390/v14102151 -
Hydroxyl (O-H) pārliecība 1,0
“Jung, 2009), whereas cm-1 the peak at 3612 is most likely related to OH incorporated as Mg 2[]OH 4, where [] cm-1 represents an Si vacancy (Berry et al.”
De Hoog 等 - 2014 - Titaniumand water-rich metamorphic olivine in hi DOI: 10.1007/s00410-014-0990-x -
Hydroxyl (O-H) pārliecība 1,0
“cm-1in the same vibration for the free OH groups gives rise to a narrow band at 3612 diluted cm-1 CCl solutions and to a broader component at 3617 when adsorbed on dehydroxylated”
Mino 等 - 2016 - A surface science approach to TiO2 P25 photocataly DOI: 10.1016/j.apcatb.2016.05.029
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