SKU: 79464765741

NiFe-LDO bisetal composite oxides

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Description

NiFe-LDO bisetal composite oxidesProduct Name Name: NiFe LDO bisetal composite oxides Product Overview LDOs (bimetallic oxides) are obtained from LDHs by roasting at a specific temperature. With the increase of temperature, the phase transition occurs through dehydration, dehydroxylation, and interlayer anion gasification to metal oxides. XFL06 is derived from XFL01 NiFe LDH. Layered double hydroxides (LDHs) are 2D hydrotalcite materials consisting of a positively charged main layer

Product Name

Name: NiFe-LDO bisetal composite oxides


Product Overview

LDOs (bimetallic oxides) are obtained from LDHs by roasting at a specific temperature. With the increase of temperature, the phase transition occurs through dehydration, dehydroxylation, and interlayer anion gasification to metal oxides. XFL06 is derived from XFL01 NiFe-LDH. Layered double hydroxides (LDHs) are 2D hydrotalcite materials consisting of a positively charged main layer and exchangeable interlayer anions. Generally, it can be expressed as [M2+1-xM3+x(OH)2]x+[(An-)x/n]x-·mH2O (M2+ and M3+ are bivalent Ni2+, Co2+, Fe2+ and trivalent metal ions Al3+, V3+ and Cr3+, respectively, and An- is an interlayer anion (carbonate and nitrate). x is the molar ratio of M3+/(M2++M3+). For the preparation of LDHs, the main preparation methods include chemical precipitation, hydrothermal method, solvothermal method and so on. 1. The chemical precipitation method uses homogeneous chemical precursors as the substrate material, in which two or more metal ions are intricately mixed together and produce synergies to form the desired material. The main preparation process is to dissolve the bivalent and trivalent metal nitrate chemicals in deionized water with a certain molar ratio, and stir for a period of time at the appropriate temperature (generally 60 ° C), and then add the NaOH solution drop by drop and maintain the pH of the solution at about 10 ~ 11, stir for a period of time, and place it at the appropriate temperature after aging. 2. Hydrothermal method is usually used to enhance the crystallinity of layered double hydroxides. Hydrothermal method can obtain well-crystallized and evenly layered double hydroxides. The main preparation process is to mix the bivalent and trivalent metal nitrate chemicals and urea in aqueous solution to form a homogeneous solution in a certain ratio, and then add it to the reaction kettle for the corresponding time to prepare. 3. Solvothermal method is a simple and environmentally friendly method. Similar to the hydrothermal method, the difference is that hydrothermal is to mix two metals in an aqueous solution to form a homogeneous solution, while solvothermal is to mix two metals in an organic solution to form a homogeneous solution, and then put it into the reactor at a higher temperature reaction preparation.


Technical Parameter

Status:Brown powder

Diameter:0-30 nm

 

Product Features

 

Layered structure reconfiguration ability: Under the right conditions, LDO can reabsorb water molecules and anions and return to the original layered structure.

High specific surface area: The calcination process results in structural changes, usually resulting in a large specific surface area.

Abundant alkaline sites: there are more alkaline active sites.

Improved adsorption performance: It has stronger adsorption capacity for various pollutants, such as heavy metal ions and organic pollutants.

Enhanced catalytic activity: showed better catalytic performance in some catalytic reactions. Good thermal stability: After calcination treatment, thermal stability is usually improved.

 

Application Fields

 

Contaminant removal: used to remove heavy metal ions from water, such as lead and cadmium. The alkaline site and large specific surface area on the surface of LDO can effectively adsorb these ions and reduce the content of heavy metals in water.

Catalytic field: Used as catalyst or catalyst carrier for organic synthesis reactions. For example, in some hydrogenation reactions, LDO can improve the selectivity and conversion rate of the reaction.

Gas adsorption and separation: used for adsorption and separation of carbon dioxide and other gases.

Organic synthesis: LDO was used as a carrier supported precious metal catalyst to catalyze the olefin hydrogenation reaction, which significantly improved the efficiency and selectivity of the reaction.


Related Information

Please e-mail for the detailed characterization data.

E-mail:[email protected]

 

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SKU: 79464765741

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Got through TSA. Perfect for traveling. I like the fact that it has a spray top. Perks is it smells really good while also protecting you. Overall enjoyed the product
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Whiting, US
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Perfect for people who take carry on bags flying to beach vacation!
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THE only spray on sunscreen, that is NOT a 200 SPF, thats less than 3.5 ounces so TSA doesnt confiscate it from bag en route to Cancun. I keep a few in the drawer and take the partially used one from last trip to finish off plus a new sealed one as backup. Smells great and sprays a fine lovely mist so you dont fry. LOVE this product. A GREAT purchase. We dont check bags and its hard to find ANY product in under 3.5 ounce packaging. Sure you can pour sunscreen into bottles that mfg says do not leak, but youll learn the hard way that they DO leak all over the inside of your suitcase. Skip that learning experience and buy COOLA.
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I've been using this sunscreen for a couple of years now and this is the one! The lotion and the spray are both great, smell good and are reef friendly and organic. They are pricey but my skin appreciates the extra!
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Whiting, US
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Worked well near the equator
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I bought this product because I was going to be in the field for a month, outside, every day, all day, in Tanzania at high altitude. A severe sunburn would be hard to treat in the remote area we were in, but also I am very careful about protecting my skin from aging. I had to have mineral based sunscreen because as a whitewater kayaker I know it’s the only truly water resistant kind and it was going to be sweaty. And since I knew I was going to be putting it on every day, and we didn’t have running water in the field (bucket showers only) I didn’t want it to feel gross. (I really wanted to try the spray but I didn’t want to put anything pressurized in my luggage.) And I had already discovered the Coola face sunscreen (30spf version) which had impressed me with how silky smooth and not greasy it is. Now this IS greasier because it is a higher SPF. BUT I think this product is as good as you’re going to get with the protection you’re getting. Like I said, I’m a white water tiger, so I have used a LOT of mineral sunscreens. This was hands down the most comfortable one I’ve used. And it was effective. I didn’t burn once—only time I did burn was when I forgot to put it on one day toward the end of the trip, when we were out for just a couple hours—and I got the first 2nd degree burn I’ve ever had in my life. That was what this stuff had protected me from, all day every day, the entire trip. I did tan a little but I think that was mostly from the few times I was not covered during short bouts or it was cloudy. For my face I used the Coola 50spf face product.
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