What absorbs at 994 cm⁻¹ in an FTIR spectrum?
A band near 994 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 8 cited sources
クイックアンサー
A band near 994 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.
可能性のある官能基アサイン
| 官能基 | 裏付け事実 | 引用元 | 最高信頼度 |
|---|---|---|---|
| Alkyl C-H | 3 | 3 | 1.0 |
| Methoxy (OCH3) | 2 | 2 | 1.0 |
| Methacrylate | 2 | 2 | 1.0 |
| C-O single bond | 2 | 2 | 1.0 |
| Acetate | 2 | 2 | 1.0 |
| Alkene (C=C) | 1 | 1 | 1.0 |
| Metal hydroxyl | 1 | 1 | 0.7 |
| C n single bond | 1 | 1 | 0.7 |
| N n bond | 1 | 0 | 1.0 |
ランキングは蓄積された文献証拠を反映しており、単一の権威あるルールではありません。常にサンプルのコンテキストと照合して確認してください。
可能性のある材料
| 素材 | 補助ピーク | 重複グループ | 引用元 |
|---|---|---|---|
| chitosan | 994, 1650, 1655 | Alkyl C-H, Methacrylate, C-O single bond | 1 |
| CeO2 | 994, 1554, 1630 | Methacrylate, Methoxy (OCH3), C-O single bond | 1 |
| silver nanoparticles | 994, 1636, 1631 | Alkyl C-H, Methacrylate, C-O single bond | 1 |
同じ文献プールがこのバンドと少なくとも1つの追加の特性ピークをサポートする場合にのみ、材料が表示されます。
スペクトルロジック
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 994 cm⁻¹ is usually not enough for material identification by itself.
実使用例
この種のクエリは、ポリマー識別、未知のプラスチックスクリーニング、QCトラブルシューティング、リサイクル材料の検証、および文献に基づいたピーク帰属のレビューで一般的です。
よくある間違い
- 少なくとも1~2つの支持ピークを確認せずに、1つの孤立したバンドを材料の証拠として扱うこと。
- 重複を無視: 複数の官能基が同じ波数付近に寄与することがあります。
- 添加剤、ブレンド、酸化、または汚染がスペクトルを歪める可能性がある場合に検証を省略すること。
検証アドバイス
曖昧さが残る場合は、特にブレンド、劣化サンプル、充填ポリマーについて、DSC、GC-MS、またはTGAで仮説を検証してください。
これらのアサインの根拠となる文献
-
Alkene (C=C) 信頼度 1.0
“The pure V 2O shows single high intense 5 cm(cid:1)1, peak at 994 which is ascribed to the A symmetric g VMO vibrations of the double bond [26].”
Vijayakumar 等 - 2004 - Li-7 MAS-NMR and vibrational spectroscopic investi DOI: 10.1016/j.ssi.2003.12.008 -
信頼度 1.0
“ν(CS)δ(CNS) vibrational mode in complex 1”
Ni-thiosaccharinate complexes: synthesis, characterization and DFT studies. Biological properties as superoxide dismutase mimetics and as anti-carcinogenic agents DOI: 10.1016/j.ica.2019.04.040 -
Acetate 信頼度 1.0
“Peaks at 994 and 1319 are attributed to C-O stretching and CH 2”
Classification of Amazonian fast-growing tree species and wood chemical determination by FTIR and multivariate analysis (PLS-DA, PLS) DOI: 10.1038/s41598-023-35107-6 -
Alkyl C-H 信頼度 1.0
“cm-1 1680 Further, the peak at 994 may indicate the existence of CH bending vibration, which suggests products31.”
Kasar 和 Ahmaruzzaman - 2022 - Characterization of liquid products obtained from DOI: 10.1038/s41598-022-15371-8 -
Acetate 信頼度 1.0
“stretching 1456 1450 C-H bending vibration 1078 1030 C-O stretching vibration C=C PO2C-N stretching vibration, asymmetric 994 961 bending vibration 1224”
Microbial Mediated Synthesis of Silver Nanoparticles by Lactobacillus plantarum TA4 and Its Antibacterial and Antioxidant Activity DOI: 10.3390/app10196973 -
Alkyl C-H 信頼度 1.0
“cm-1, departed.38XRDanalysisof5-FUloadedLMWCH-NPsshowed 1644 C-H in-plane stretching at 1242 C-F stretchcm-1, cm-1, ing at 1222 different peak fashion than the XRD pattern of pure components N-H and C-H wagging vibration at 994 vibration32”
Sethi 等 - 2021 - Evaluation of Low Molecular Weight Cross Linked Ch DOI: 10.1177/15593258211025353 -
信頼度 0.7
“Same context as 945.”
Electrical and structural studies of a LiBOB-based gel polymer electrolyte DOI: 10.1007/s11581-016-1834-7 -
C n single bond 信頼度 0.7
“From table 1”
Antioxidant and antidiabetic properties of biocompatible ceria oxide (CeO2) nanoparticles in mouse fibroblast NIH3T3 and insulin resistant HepG2 cells DOI: 10.1016/j.ceramint.2020.11.230
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