نتایج جستجو برای: zns quantum dots

تعداد نتایج: 305904  

Journal: :Chemical communications 2006
Jia-Ming Hsieh Mei-Lin Ho Pei-Wen Wu Pi-Tai Chou Tsai-Tsung Tsai Yun Chi

We report the design and synthesis of Ir-complex functionalized CdSe/ZnS quantum dots (QDs), in which the QD plays a key role in imaging, while the Ir-complex acts as a sensitizer to produce singlet oxygen; this conceptual design presents a novel scheme in both bio-imaging and photodynamic therapy.

Journal: :Chemical communications 2015
Carlos M Gonzalez Wei-Chen Wu Joseph B Tracy Benjamin Martin

ZnS quantum dots were synthetized at room temperature using a simple photochemical process involving ketyl radicals. Through the simple adjustment of reagent concentration, the method allows the control of nanoparticle size. Transmission electron microscopy confirmed that the nanomaterial adopts the hexagonal structure.

Journal: :Advanced materials 2014
Yue Wang Van Duong Ta Yuan Gao Ting Chao He Rui Chen Evren Mutlugun Hilmi Volkan Demir Han Dong Sun

Three-photon pumped stimulated emission and coherent random lasing from colloidal CdSe/CdS/ZnS core-multishell quantum dots are achieved for the first time. These results can offer new possibilities in biology and photonics, as well as at their intersection of biophotonics.

2017
Chenghui Xia Johannes D. Meeldijk Hans C. Gerritsen Celso de Mello Donega

Copper indium sulfide (CIS) quantum dots (QDs) are attractive as labels for biomedical imaging, since they have large absorption coefficients across a broad spectral range, size- and composition-tunable photoluminescence from the visible to the near-infrared, and low toxicity. However, the application of NIR-emitting CIS QDs is still hindered by large size and shape dispersions and low photolum...

Journal: :RSC advances 2015
Siqi Chen Mojtaba Ahmadiantehrani Nelson G Publicover Kenneth W Hunter Xiaoshan Zhu

Cadmium-free silver-indium-sulfide (Ag-In-S or AIS) chalcopyrite quantum dots (QDs) as well as their core-shell structures (AIS/ZnS QDs) are being paid significant attention in biomedical applications because of their low toxicity and excellent optical properties. Here we report a simple and safe synthetic system to prepare high quality AIS and AIS/ZnS QDs using thermal decomposition. The synth...

Journal: :Chemical communications 2014
Lianjiang Tan Ajun Wan Xiaomin Zhu Huili Li

A new strategy toward controllable release of NO for therapeutic purpose is described. Mn(2+)-doped ZnS quantum dots with NIR-II to visible upconversion properties were encapsulated by chitosan, with which photochemical NO precursors were conjugated to generate nanostructured materials capable of releasing NO under NIR-II irradiation.

Journal: :Chemical communications 2009
Nina Gomez Blanco Carmen R Maldonado Juan C Mareque-Rivas

Irradiation of CdSe-ZnS quantum dots (QDs) with visible light in the presence of [PtCl(4)(bpy)] (1) (bpy = 2,2'-bipyridine) produced with high efficiency [PtCl(2)(bpy)] (2) by photoinduced electron transfer; a reaction and strategy which opens up new opportunities for cancer therapy.

Journal: :Nano letters 2006
Suraj K Dixit Nancy L Goicochea Marie-Christine Daniel Ayaluru Murali Lyudmila Bronstein Mrinmoy De Barry Stein Vincent M Rotello C Cheng Kao Bogdan Dragnea

Incorporation of CdSe/ZnS semiconductor quantum dots (QDs) into viral particles provides a new paradigm for the design of intracellular microscopic probes and vectors. Several strategies for the incorporation of QDs into viral capsids were explored; those functionalized with poly(ethylene glycol) (PEG) can be self-assembled into viral particles with minimal release of photoreaction products and...

Journal: :The Analyst 2012
Kuldeep V Joshi Bhoomika K Joshi Alok Pandya Pinkesh G Sutariya Shobhana K Menon

In this communication we report a p-sulfonatocalix[4]arene coated ZnS quantum dots "cup type" highly stable optical probe for the detection and determination of menadione (VK(3)) with high sensitivity and selectivity. The detection of VK(3) depends on supramolecular host-guest chemistry.

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