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Can nanoparticles be synthesysed using hexanic or cloroformic extracts? 


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Nanoparticles can be synthesized using plant extracts, but there is no mention of hexanic or chloroformic extracts in the provided abstracts. The abstracts discuss the use of plant extracts, such as floral extracts from Hymenocallis littoralis and Plumbago auriculata , in the green synthesis of copper oxide and iron oxide nanoparticles. These plant extracts act as both reducing and capping agents in the synthesis process. The abstracts highlight the eco-friendly and nontoxic nature of this method, as it does not involve the use of harmful chemicals. However, there is no specific mention of hexanic or chloroformic extracts being used for nanoparticle synthesis in the abstracts provided.

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The answer to the query is not mentioned in the provided paper. The paper discusses the synthesis of nanomaterials using aqueous extracts of medicinal plants, but it does not mention the use of hexanic or chloroformic extracts.
The provided paper does not mention the use of hexanic or chloroformic extracts for the synthesis of nanoparticles.
The paper does not specifically mention the use of hexanic or chloroformic extracts for the synthesis of nanoparticles.
OtherDOI
30 May 2023
The paper does not specifically mention the use of hexanic or chloroformic extracts for synthesizing nanoparticles.

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How to make nano powder extract?3 answersTo make nano powder extract, there are several methods described in the provided abstracts. One method involves preparing a suspension liquid of the desired material and adding an extraction agent to separate the oil and water phases, resulting in the collection of the nano powder. Another method utilizes a device that includes stirring and mixing, grinding, high-speed cutting, high-pressure homogenizing, and spray drying devices to prepare the nano powder. Similarly, equipment consisting of stirring and mixing, ball milling, dispersing and mixing, high-pressure equalizing and emulsifying, cavitating and jetting, and spraying and drying devices can be used for the preparation of nanometer powder. Additionally, a device with stirring and material mixing, rough smashing, high-pressure homogeneous emulsification, cavitating jet, and drying devices can be employed for the preparation of ginkgo biloba extract nanometer powder. Finally, a method involving pretreating the material, crushing, foaming, homogenizing, pressurizing, jetting, crushing, dispersing, emulsifying, extracting, freezing, and freeze drying can be used for the preparation of nano powder of non-metallic organic material.
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