Martonvasar, Hungary

Laszlo J Szabo


Average Co-Inventor Count = 16.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 1983

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1 patent (USPTO):Explore Patents

Title: The Innovative Patents of Laszlo J Szabo

Introduction

Laszlo J Szabo is a notable inventor based in Martonvasar, Hungary. With a focus on chemical compounds, he has made significant contributions to the science of organic chemistry. His innovative spirit is reflected in his patent, which offers an improved method for synthesizing specific chemical compounds.

Latest Patents

Szabo holds a patent for a process concerning the preparation of a 2',6'-dialkyl-N-alkoxymethyl-2-chloro-acetanilide compound, characterized by its innovative methodology. The novel approach involves treating a dialkyl aniline with aqueous formaldehyde in an apolar solvent under controlled temperatures ranging from 30 to 80 degrees Celsius. This procedure results in the formation of an oxymethyl derivative, which is further processed to yield a chloromethyl compound through a reaction with chloroacetyl chloride.

Career Highlights

Over the course of his career, Laszlo J Szabo has contributed his expertise to reputable companies, notably Nitrokemia Ipari Telepek and Nehezvegyipari Kutato Intezet. His work in these institutions has allowed him to refine his skills and enhance his contributions to the field of chemistry.

Collaborations

Szabo has collaborated with esteemed colleagues, including Kornelia Domjan Nee Pinter and Gyorgy Huszak. These partnerships have fostered a creative academic environment, leading to advancements in their research and innovations in chemical applications.

Conclusion

Laszlo J Szabo's innovative methods and patent underscore the crucial role inventors play in the advancement of science and technology. His dedication to improving chemical synthesis methodologies paves the way for future developments in the field. As he continues to work alongside like-minded individuals, the impact of his contributions remains significant in the realm of organic chemistry.

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