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推薦:Carboxylated 20 nm Red FND@2024價(jià)格已更新
羧化紅色熒光納米金剛石:Carboxylated Red Fluorescent Nanodiamond
Biofunctionalized fluorescent nanodiamonds are infinitely photostable labels for fluorescent and multiphoton microscopy applicable to cellular tracking and long-term observation of biological processes in the same fields of view in live cell-imaging and fixed cells. Protein, antibody, biologically active organic molecules, and custom functionalizations are possible. We provide nanodiamonds with nitrogen-vacancy (NV) centers with red-to-near-infrared fluorescence, NVN centers with green fluorescence, and novel particles available only at Adamas with a combination of NV and NVN centers within a single particle with visual yellow fluorescence. Fluorescence from NV centers can be magnetically modulated providing a means to eliminate the fluorescent background by image subtraction and to significantly enhance the signal-to-noise ratio. This property can be very useful in future biosensing applications, for example in clinical diagnostics such as lateral flow assays (LFA). Relevant applications also include super-resolution microscopy, multiphoton microscopy, time-gated microscopy and correlative microscopy.

推薦:Carboxylated 20 nm Red FND@2024價(jià)格已更新
Fluorescent nanodiamonds are a chemically robust, infinitely photostable, and biocompatible fluorophore with a range of functional surface chemistries. Relevant applications include fiducial marking, super-resolution microscopy, multiphoton microscopy, time-gated microscopy, and correlative microscopy.
Below is our selection of nitrogen-vacancy (NV) nanodiamonds centers with red-to-near-infrared fluorescence with a variety of surface functionalities. Negatively charged nitrogen-vacancy (NV-) centers possess an electron spin with unique magneto-optical properties: the spin state can be detected optically via optically detected magnetic resonance (ODMR). In turn, the spin state is highly sensitive to the surrounding environment so that changes in the environment can be detected via changes in nitrogen-vacancy (NV) fluorescence. Based on these properties, our customers develop nanodiamond-based quantum sensors of magnetic fields, electric currents, temperature, free radicals, and other phenomena.
Design your own downstream reaction schemes, or contact us for specific custom functionalities.
Below is our selection of nitrogen-vacancy (NV) nanodiamonds centers with red-to-near-infrared fluorescence with a variety of surface functionalities. Negatively charged nitrogen-vacancy (NV-) centers possess an electron spin with unique magneto-optical properties: the spin state can be detected optically via optically detected magnetic resonance (ODMR). In turn, the spin state is highly sensitive to the surrounding environment so that changes in the environment can be detected via changes in nitrogen-vacancy (NV) fluorescence. Based on these properties, our customers develop nanodiamond-based quantum sensors of magnetic fields, electric currents, temperature, free radicals, and other phenomena.

熒光納米金剛石是一種化學(xué)穩(wěn)健、無限光穩(wěn)定性和生物相容性熒光團(tuán),具有一系列功能性表面化學(xué)物質(zhì)。相關(guān)應(yīng)用包括基準(zhǔn)標(biāo)記、超分辨率顯微鏡、多光子顯微鏡、時(shí)間門控顯微鏡和相關(guān)顯微鏡。
如圖是我們選擇的具有紅色至近紅外熒光且具有多種表面功能的氮空位 (NV) 納米金剛石中心。帶負(fù)電的氮空位 (NV-) 中心具有具有獨(dú)特磁光特性的電子自旋:可以通過光學(xué)檢測(cè)磁共振 (ODMR) 光學(xué)檢測(cè)自旋狀態(tài)。反過來,自旋態(tài)對(duì)周圍環(huán)境高度敏感,因此可以通過氮空位 (NV) 熒光的變化來檢測(cè)環(huán)境的變化。基于這些特性,我們的客戶開發(fā)了基于納米金剛石的磁場(chǎng)、電流、溫度、自由基和其他現(xiàn)象的量子傳感器。
原創(chuàng)作者:上海篤瑪生物科技有限公司